Finn von Eyben | oncology | Best Researcher Award

Dr. Finn von Eyben | oncology | Best Researcher Award

chief, Center of Tobacco Control Reearch, Denmark.

Dr. Finn Edler von Eyben is a renowned specialist in internal medicine and oncology, with significant expertise across Denmark, Norway, and Sweden. He previously served as an administrative consultant at the Department of Internal Medicine, Queen Ingrid’s Hospital, Nuuk, Greenland. Dr. von Eyben is the author of multiple pivotal publications on testis cancer and prostate cancer, particularly in the field of radioligand therapy using PSMA. With a remarkable 12,914 reads and 2,788 citations of his work, he has made substantial contributions to oncological research. He has been invited to present at major international conferences, including those hosted at Innsbruck University, Austria. A prolific researcher, he also edited a theme issue on PSMA and prostate cancer for the International Journal of Molecular Sciences. His work spans over 164 publications, making him a leading figure in modern cancer research.

Profile:

Scopus

Education:

Dr. Finn Edler von Eyben completed his Doctor of Medicine at Southern Sweden in 1985, specializing in tumor markers for testicular cancer. Later, in 2005, he furthered his education at Southern Denmark, continuing his work on tumor markers for testis cancer. His educational foundation has been instrumental in shaping his deep understanding of cancer research, specifically in oncology and internal medicine. The combination of clinical and research-based education has allowed him to make lasting contributions to the medical field, focusing on advanced therapeutic techniques, radioligand therapy, and cancer biomarkers. Throughout his career, Dr. von Eyben has remained committed to advancing medical education through his research, aiming to provide a strong scientific basis for improving clinical outcomes in cancer care.

Experience:

Dr. Finn Edler von Eyben has built an extensive career in internal medicine and oncology across several countries, including Denmark, Norway, and Sweden. His administrative consultant role at the Department of Internal Medicine, Queen Ingrid’s Hospital in Nuuk, Greenland, showcased his leadership abilities in healthcare administration. With over three decades of clinical experience, Dr. von Eyben has been involved in groundbreaking cancer research and therapy, particularly concerning testis and prostate cancers. As a recognized authority, he has been a frequent speaker at international conferences, contributing his insights on PSMA and its role in prostate cancer treatment. His research focus on serum tumor markers and PSMA-based radioligand therapy has been widely influential, with his work being referenced globally. His expertise also extends to serving as the editor of journals and collaborating with fellow researchers, solidifying his position as a thought leader in oncology.

Awards and Honors:

Dr. Finn Edler von Eyben has earned widespread recognition for his outstanding contributions to oncology and internal medicine. His groundbreaking research on testis cancer and prostate cancer therapies has garnered over 2,788 citations, reflecting the high regard in which he is held by the scientific community. He was invited to serve as an editor for the International Journal of Molecular Sciences, where he contributed significantly to the PSMA and prostate cancer theme issue. His career has been marked by numerous invitations to deliver oral presentations at prestigious international conferences on nuclear medicine in oncology, including at Innsbruck University, Austria. Additionally, Dr. von Eyben’s research on radioligand therapy has positioned him at the forefront of the treatment of metastatic prostate cancer. While he has not publicly listed specific formal awards, the high citation index and frequent invitations to speak at conferences underscore the esteem he commands within the field.

Research Focus:

Dr. Finn Edler von Eyben is primarily focused on the treatment and diagnostic aspects of prostate cancer and testicular cancer. His research has greatly contributed to understanding tumor markers, especially in testis cancer, and has advanced the field of PSMA (Prostate-Specific Membrane Antigen)-based radioligand therapy. His notable work includes studies on 177Lu-PSMA-617 radioligand therapy for metastatic prostate cancer, which has revolutionized treatment strategies for castration-resistant prostate cancer. Dr. von Eyben has authored influential systematic reviews on the use of PSMA PET/CT scans in prostate cancer management, offering critical insights into optimal treatment regimens and early detection. Furthermore, his meta-analyses of choline PET/CT imaging for prostate cancer have solidified his role as a leader in nuclear medicine oncology. His work continues to shape clinical practices, focusing on personalized cancer treatments and improving patient outcomes through precision medicine.

Publication Titles:

  • 177Lu-PSMA-617 radioligand therapy for a patient with lymph node metastatic prostate cancer 🏥🔬
  • Third-line treatment and (177)Lu-PSMA radioligand therapy of metastatic castration-resistant prostate cancer: a systematic review 📚🧪
  • (177)Lu-PSMA radioligand therapy of predominant lymph node metastatic prostate cancer 🧬⚙️
  • Metastatic extent predicts survival as patients with metastatic castration-resistant prostate cancer are treated with (177)Lu-PSMA radioligand therapy ⏳🎯
  • (68)Ga-Labeled Prostate-specific Membrane Antigen Ligand Positron Emission Tomography/Computed Tomography for Prostate Cancer: A Systematic Review and Meta-analysis 📊🧠
  • Meta-analysis of (11)C-choline and (18)F-choline PET/CT for management of patients with prostate cancer 💡💊
  • Prostate-Specific Antigen as an Ultrasensitive Biomarker for Patients with Early Recurrent Prostate Cancer: How Low Shall We Go? A Systematic Review 🧪💉
  • Review on the Increasing Role for PSMA-Based Radioligand Therapy in Prostate Cancer 🏆📈

 

 

Mashrura Musharraf | Maritime transportation | Best Researcher Award

Prof. Mashrura Musharraf | Maritime transportation | Best Researcher Award

Assistant Professor, Aalto University, Finland.

Dr. Mashrura Musharraf is an Assistant Professor at Aalto University, Finland, specializing in Marine and Arctic Technology. With dual citizenship from Canada and Bangladesh, she holds a PhD in Computer Engineering from Memorial University of Newfoundland, Canada. Her research integrates human-centered automation, marine systems, AI, and decision support for marine operations. She has made significant contributions to the advancement of winter navigation, emergency evacuation simulations, and human reliability analysis, primarily in harsh maritime environments. Over the years, she has established herself as a thought leader, publishing extensively in peer-reviewed journals, receiving multiple research grants, and leading international projects. Dr. Musharraf is committed to promoting women in STEM and has mentored aspiring researchers and students globally. With a strong pedagogical background, she is also responsible for teaching several MSc courses at Aalto University.

Profile:

ORCID 

Scopus

Google Scholar 

Education:

Dr. Mashrura Musharraf completed her PhD in Computer Engineering from Memorial University of Newfoundland, Canada, in May 2018. Her doctoral research focused on human reliability assessment and its application in offshore emergency situations. Prior to her PhD, she earned a Master of Engineering (M.Eng.) in Computer Engineering from the same institution in May 2014, where she contributed to marine simulation research. Dr. Musharraf began her academic journey at the Bangladesh University of Engineering and Technology (BUET), where she earned a B.Sc. in Computer Science and Engineering in October 2009. She continuously builds on her educational background by engaging in pedagogical training at Aalto University, having completed 20 ECTs in various courses related to higher education teaching, supervision, and course design. Her educational journey and expertise have led her to become a recognized scholar in marine technology, AI, and human-centered automation.

Experience:

Dr. Mashrura Musharraf is an Assistant Professor in the Marine and Arctic Technology Research Group at Aalto University, Finland, where she leads research on human-centered automation and decision support in marine systems. Her previous academic experience includes postdoctoral fellowships at Memorial University of Newfoundland, Canada, where she also served as a per-course instructor. Additionally, Dr. Musharraf was a teaching assistant from 2012 to 2017 and held part-time research assistant roles in marine technology and simulation research. Her industry experience includes working as a Human Factor Researcher and Software Engineer at Virtual Marine and Dohatec New Media, respectively. Dr. Musharraf’s leadership extends to supervising multiple MSc and DSc students, co-supervising doctoral research, and managing research teams. She has also contributed to various international multidisciplinary research projects, working with organizations such as the National Research Council of Canada and the National Sciences & Engineering Research Council of Canada.

Awards and Honors:

Dr. Mashrura Musharraf has been recognized for her academic and research excellence throughout her career. In 2023, she received the Best Paper Award at the Applied Human Factors and Ergonomics (AHFE) 2023 for her research on mining students’ digital footprints to enhance simulator training. Her intern, Sitaram Rathi, won the Best Poster Award for the Winter Navigation Database Creation project at the AScI poster exhibition in 2023. She was also a Fellow of the School of Graduate Studies at Memorial University of Newfoundland in 2014 and 2018, an honor given for outstanding academic achievement. In 2017, she was awarded the Outstanding Teaching Assistant Award from the Faculty of Engineering & Applied Science at Memorial University of Newfoundland. These accolades reflect Dr. Musharraf’s dedication to advancing knowledge, enhancing student learning, and contributing to critical research in marine technology and AI.

Research Focus:

Dr. Mashrura Musharraf’s research focuses on human-centered automation, marine systems, and AI in ship design and operation. Her expertise lies in applying decision support systems, AI, and data-driven methods to improve safety, efficiency, and sustainability in marine operations. Dr. Musharraf has made significant contributions to the development of winter navigation tools, maritime cybersecurity, and human reliability analysis in offshore environments. Her research interests span across modeling human behavior in emergency situations, optimizing vessel route planning in ice-covered waters, and enhancing marine simulation and training. She leads several international, multidisciplinary projects involving AI applications in logistics, marine operations during digital transformation, and strategic voyage routing. Additionally, Dr. Musharraf is focused on integrating human factors and machine learning to develop more resilient and adaptive marine systems. Her research aims to improve decision-making in harsh and unpredictable maritime environments, ensuring safer and more effective operational practices.

Publications:

  • Human reliability assessment during offshore emergency conditions 🛥️⛑️
  • Developments and research directions in maritime cybersecurity 🛡️🔐
  • Assessing offshore emergency evacuation behavior in a virtual environment using a Bayesian Network approach 🚢💻
  • A machine learning method for the prediction of ship motion trajectories in real operational conditions 🤖⚓
  • A virtual experimental technique for data collection for a Bayesian network approach to human reliability analysis 🧠🧑‍🔬
  • Measuring and improving adaptive capacity in resilient systems by means of an integrated DEA-Machine learning approach 💡📊
  • Incorporating individual differences in human reliability analysis: an extension to the virtual experimental technique 🌐🧑‍💼
  • Identifying route selection strategies in offshore emergency situations using decision trees 🌲🚢
  • A data mining method for automatic identification and analysis of icebreaker assistance operation in ice-covered waters 🧊❄️
  • Modeling and simulation of offshore personnel during emergency situations 🎮👥
  • Human factor risk assessment during emergency condition in harsh environment 🚨🏔️
  • Capturing expert knowledge to inform decision support technology for marine operations 🧑‍🏫💡
  • On the data-driven investigation of factors affecting the need for icebreaker assistance in ice-covered waters 🚢❄️
  • Using simulator data to facilitate human reliability analysis 🎮📉
  • Using Bayesian methods and simulator data to model lifeboat coxswain performance 🚤👩‍✈️
  • Simulation tool for winter navigation decision support in the Baltic Sea 🌨️🚢
  • Pathfinding and optimization for vessels in ice: A literature review 🧭🧊
  • Validating human behavior representation model of general personnel during offshore emergency situations 🧑‍🔬🌊
  • Route optimization for vessels in ice: Investigating operational implications of the carbon intensity indicator regulation 🌱🚢
  • Decarbonizing shipping in ice by intelligent icebreaking assistance 🧊⚡

Conclusion:

Dr. Mashrura Musharraf has made significant contributions to the field of marine technology and AI, with a strong focus on improving safety and efficiency in maritime operations. Her expertise in human-centered automation, marine systems, and data-driven methods has earned her a prominent place in academic and research circles. With numerous prestigious awards and publications to her name, she continues to advance her field while mentoring the next generation of researchers. Dr. Musharraf’s passion for scientific and societal impact is reflected in her work, which has practical applications in improving the safety and sustainability of marine systems in harsh environments.

You said:

Tarek Ahasan | Photocatalytic Water Splitting for Hydrogen Production | Best Researcher Award

Mr Tarek Ahasan | Photocatalytic Water Splitting for Hydrogen Production | Best Researcher Award

Graduate Research Assistant, New Mexico State University, United States

Tarek Ahasan is an accomplished Ph.D. candidate in Environmental Engineering at New Mexico State University, specializing in sustainable energy and water treatment technologies. With a strong academic foundation, including dual master’s degrees in Environmental Engineering and Environmental Science, Tarek focuses on innovative solutions for green hydrogen production and advanced water desalination. His research integrates photocatalysis and electromagnetic field applications to address global energy and water security challenges. Recognized for his contributions, Tarek has received prestigious awards, published in high-impact journals, and filed a patent for his groundbreaking work in photocatalytic systems. He is an active member of professional organizations and a leader in academic communities, dedicated to advancing sustainable technologies for a decarbonized future.

Professional Profile

Orcid

Scopus

Education 🎓

Tarek Ahasan is pursuing a Ph.D. in Environmental Engineering at New Mexico State University (NMSU), expected to graduate in Fall 2025, with a concurrent Master of Science in Environmental Engineering (CGPA: 4.00/4.00). He holds a Master of Science in Environmental Science (CGPA: 3.92/4.00) and a Bachelor of Science in Soil, Water, and Environment (CGPA: 3.57/4.00) from the University of Dhaka, Bangladesh. His academic journey reflects a strong focus on sustainable energy, water treatment, and environmental systems, equipping him with the expertise to drive innovative research in green technologies.

Experience 🔬

As a Graduate Research Assistant at NMSU, Tarek has led groundbreaking projects on photocatalytic hydrogen production and electromagnetic field-enhanced desalination. He developed a novel Ag-G-TiO2 nanocomposite photocatalyst, achieving 97% dye degradation efficiency and 191 μmoles g⁻¹ h⁻¹ hydrogen production. Additionally, he optimized electromagnetic field pretreatment for membrane scaling control, achieving 51.3% water recovery. Previously, at the University of Dhaka, he advanced sustainable coagulation techniques for dye effluent treatment and conducted nationwide soil health assessments to address climate change impacts on agriculture. His work bridges research and practical applications, contributing to global sustainability goals.

Awards and Honors 🏆

Tarek has been recognized with multiple awards, including the 2023-2024 New Mexico Water Resources Research Institute (NM WRRI) student grant and the National Science and Technology Fellowship (2019-20) from the Government of Bangladesh. He earned Second Place for Outstanding Poster Presentation at the 20th Annual RMSAWWA/RMWEA Student Conference (2024) and the Texas Desal Annual Conference (2023). His research has been featured in the NMWRRI Online Newsletter, highlighting his contributions to sustainable energy and water technologies.

Research Focus 🔍

Tarek’s research centers on developing sustainable alternatives to fossil fuels, focusing on green hydrogen production through advanced photocatalysis and innovative water treatment technologies. His work includes synthesizing nanocomposite photocatalysts for visible light-driven hydrogen production and optimizing electromagnetic field applications for membrane scaling control in desalination. By integrating renewable energy systems with water security solutions, Tarek aims to address global decarbonization and resource sustainability challenges, contributing to a cleaner, more resilient future.

Publication Top Notes 📚

  1. Ahasan, T., Xu, P., & Wang, H. (2024). Dual-Function Photocatalysis in the Visible Spectrum: Ag-G-TiO2 for Simultaneous Dye Wastewater Degradation and Hydrogen Production. Catalysts, 14(8), 530.
  2. Ahasan, T., Edirisooriya, E. M. N. T., Senanayake, P. S., Xu, P., & Wang, H. (2025). Advanced TiO2-Based Photocatalytic Systems for Water Splitting: Comprehensive Review from Fundamentals to Manufacturing. Molecules, 30(5), 1127.
  3. Du, X., Perera, H., Ahasan, T., Wang, Y., Shu, F., Wang, H., Yuan, K., Anovitz, L. M., Ben Ishai, P., & Xu, P. (2025). Mechanisms of Electromagnetic Field Control on Mineral Scaling in Brackish Water Reverse Osmosis: Combined Homogenous and Heterogeneous Nucleation. Separation and Purification Technology, 355(B), 129630.

Conclusion 🌍

Tarek Ahasan is a visionary researcher dedicated to advancing sustainable energy and water treatment technologies. Through his innovative work in photocatalysis and desalination, he is paving the way for a greener, more sustainable future. His achievements in research, publications, and professional recognition underscore his commitment to addressing global energy and water challenges. Tarek’s contributions exemplify the transformative potential of environmental engineering in achieving decarbonization and resource security.

 

Fatma Kassem | Measurements |Excellence in Research

Dr Fatma  Kassem |  Measurements | Excellence in Research 

Researcher at National Institute of Standards, Egypt.

Fatma Abd El-Mordy Kassem Awwad is a dedicated mechanical power engineer with a strong background in fluid mechanics, metrology, and airflow studies. She has demonstrated exceptional research capabilities, academic excellence, and professional expertise in calibration, quality management, and experimental studies related to fluid flow and air distribution. With multiple Scopus-indexed publications, international conference presentations, and extensive technical training, she continues to contribute significantly to scientific advancements in her field.

Professional Profile

Orcid

Scopus

Education 🎓

  • Fatma earned her Bachelor of Engineering (2015) in Mechanical Power Engineering from Zagazig University, graduating first in her class with honors (87.91%). She pursued a Master’s degree (2019), focusing on performance analysis of a sonic nozzle under different conditions, and later obtained her Ph.D. (2023) with a dissertation on airflow metrology and its applications in buildings, both from Zagazig University with excellent honors.

Experience 💼

  • Fatma has held various research and leadership roles at the National Institute of Standards (NIS), Egypt, where she has been a Researcher, Assistant Researcher, and Activity Manager for Fluid Flow Lab. Her expertise includes calibration of fluid flow meters, volume measurement, and ISO/IEC 17025 accreditation. She has also served as Deputy Quality Manager, ensuring accuracy in metrology standards. Her experience extends to training engineers and professionals in calibration techniques, measurement uncertainty, and quality control.

Awards and Honors 🏆

  • Dr. Awwad has been recognized for her academic excellence and research contributions, consistently achieving top rankings throughout her education. She has also been invited as a speaker and participant in high-profile conferences and workshops related to decarbonization, climate change, and metrology.

Research Focus 🔍

Her research primarily revolves around fluid mechanics, airflow dynamics, and metrology applications. She has conducted extensive studies on airflow control, ventilation efficiency, and airborne infection prevention. Her work also extends to calibration techniques for gas and liquid flow meters, nozzle performance, and measurement uncertainty, which are vital for industrial and environmental applications.

Publication Top Notes 📚

  1. 📌 Title: Design and Performance Evaluation of an Open Loop Wind Tunnel at NIS
  2. 👩‍🔬 Author(s): Kassem, Fatma Abdel Mordy; AbdelGawad, Ahmed Farouk; Nassief, Mofreh Melad; Abu El-Ezz, A. E.; Adel, Mohamed
  3. 📅 Year of Publication: 2025
  4. 📑 Indexed in: Mapan – Journal of Metrology Society of India (Scopus Indexed)
  5. 🔗 Citations: 0 (as of now )

Conclusion 🌟

Dr. Fatma Abd El-Mordy Kassem Awwad is a distinguished researcher whose contributions to fluid dynamics, metrology, and environmental engineering continue to shape industry standards and public health solutions. With a robust academic background, extensive research portfolio, and leadership in national and international projects, she stands as a prominent figure in her field, driving innovation and excellence in engineering sciences. 🚀✨Dr. Fatma Abd El-Mordy Kassem Awwad is a distinguished researcher whose contributions to fluid dynamics, metrology, and environmental engineering continue to shape industry standards and public health solutions. With a robust academic background, extensive research portfolio, and leadership in national and international projects, she stands as a prominent figure in her field, driving innovation and excellence in engineering sciences. 🚀✨

Yonghong Zhou | River Microbiology | Best Paper Award

Mr Yonghong Zhou | River Microbiology | Best Paper Award

Professor, Tibet University, China

Dr. Yonghong Zhou is a distinguished professor at Tibet University, specializing in biodiversity and environmental studies on the Qinghai-Tibet Plateau. With a Ph.D. in Biochemistry and Molecular Biology from Southwest University, he has extensive research experience in microbiology, molecular biology, and ecological conservation. Dr. Zhou has held key positions, including Managing Deputy Director of the Key Laboratory of Biodiversity and Environment on the Qinghai-Tibet Plateau and Chairman of the Microbiology Branch of the Plateau Biology Society of Tibet Autonomous Region. His work focuses on the functional genomics of plateau organisms, microbial resource utilization, and germplasm conservation. Dr. Zhou has received numerous awards, including the Florida University High-Impact Research Achievement Award and the Tibet Autonomous Region Science and Technology Award. He is also an active reviewer for several scientific journals and holds multiple patents related to ecological and biological innovations.

Professional Profile

Orcid

Scopus

Education🎓

  • Ph.D. in Biochemistry and Molecular Biology (2005–2011), Biotechnology Center, Southwest University, China.
  • M.Sc. in Microbiology (2003–2005), Biotechnology Center, Southwest Agricultural University, China.
  • B.Sc. in Biology Science (1999–2003), College of Agronomy and Life Sciences, Southwest Agricultural University, China.
    Dr. Zhou’s academic journey laid the foundation for his expertise in molecular biology, microbiology, and ecological studies. His doctoral research focused on gene targeting efficiency in Beauveria bassiana, while his master’s and bachelor’s studies emphasized microbial applications and biological sciences. His educational background has equipped him with the skills to lead cutting-edge research on the Qinghai-Tibet Plateau’s unique biodiversity and environmental challenges.

Experience 💼

  • Professor (2021–Present), School of Science & School of Ecology and Environment, Tibet University.
  • Distinguished Research Fellow (2019–2021), School of Science, Tibet University.
  • Postdoctoral Fellow (2016–2019), Department of Microbiology and Cell Science, University of Florida, USA.
  • Visiting Scholar (2015–2016), University of Florida, USA.
  • Postdoctoral Fellow (2011–2016), Biotechnology Center, Southwest University, China.
    Dr. Zhou’s professional experience spans over a decade, focusing on microbial genomics, insect-fungal interactions, and biodiversity conservation. His international postdoctoral work at the University of Florida enhanced his expertise in fungal pathology and metabolic profiling. At Tibet University, he has led numerous platform construction and research projects, significantly contributing to the understanding of plateau ecosystems.

Awards and Honors  🏆

  • 2023: Fourth “Professor Zhong Yang of Fudan University Fund” Award, Fudan University.
  • 2023: Title of “Excellent Science and Technology Workers,” Tibet Autonomous Region.
  • 2022: First Prize, Tibet Autonomous Region Science and Technology Award.
  • 2022: “Top Ten Excellent Teachers” Award, Tibet University.
  • 2019: High-Impact Research Achievement Award, University of Florida.
  • 2021: Excellent Undergraduate Thesis Supervisor Award, Tibet University.
  • 2022: Silver Award, 8th China International “Internet +” College Students’ Innovation and Entrepreneurship Competition.
  • 2022: Second Prize, National College Students’ Technological Innovation and Entrepreneurship Competition.
    Dr. Zhou’s accolades reflect his contributions to scientific research, education, and innovation, particularly in the fields of microbiology and biodiversity conservation.

Research Focus 🔬

Dr. Zhou’s research focuses on the functional genomics of characteristic organisms on the Qinghai-Tibet Plateau, microbial resource utilization, and germplasm conservation. He investigates the molecular mechanisms of fungal virulence, insect-fungal interactions, and the application of microbial resources in agriculture. His work also includes the systematic collection and conservation of crop germplasm resources in Tibet. Dr. Zhou explores the ecological and environmental interactions of microorganisms in extreme alpine conditions, aiming to develop sustainable solutions for biodiversity conservation and agricultural innovation. His research has significant implications for understanding plateau ecosystems and addressing global environmental challenges.

Publication Tp Notes 📚

  1. Jincheng Ma et al., Applied Microbiology and Biotechnology, 2008.
  2. Xinggang Liao et al., World Journal of Microbiology & Biotechnology, 2009.
  3. Kai Jin et al., Applied and Environmental Microbiology, 2010.
  4. Kai Jin et al., Journal of Invertebrate Pathology, 2011.
  5. Yonghong Zhou et al., Applied Microbiology and Biotechnology, 2012.
  6. Yonghong Zhou et al., Microbiology, 2014.
  7. Yonghong Zhou et al., Environmental Microbiology, 2016.
  8. Drion G. Boucias et al., Applied Microbiology and Biotechnology, 2018.
  9. Yonghong Zhou et al., Applied Microbiology and Biotechnology, 2018.
  10. Yonghong Zhou et al., Applied Microbiology and Biotechnology, 2020.
  11. Ross Joseph et al., Pathogens, 2021.
  12. Yibo Zhu et al., Sci. China Life Sci., 2024.
  13. Shuaishuai Huang et al., Microbiology Spectrum, 2023.
  14. Yujie Li et al., eLife, 2023.
  15. Qingshuai Chu et al., Ecological Indicators, 2024.
  16. Chen Enyong et al., Entomol Insights, 2024.

Conclusion 🌟

Dr. Yonghong Zhou is a leading figure in biodiversity and environmental research on the Qinghai-Tibet Plateau. His extensive education, research experience, and numerous awards highlight his dedication to advancing scientific knowledge and addressing ecological challenges. Through his innovative research, platform construction projects, and mentorship, Dr. Zhou continues to make significant contributions to microbiology, biodiversity conservation, and sustainable development in extreme environments. His work not only enhances our understanding of plateau ecosystems but also paves the way for future scientific breakthroughs.

 

Gaurav Priyadarshi | Environmental Engineering | Best Researcher Award

Mr Gaurav Priyadarshi | Environmental Engineering | Best Researcher Award

Research Scholar, NIT ROURKELA, India

Gaurav Priyadarshi is a dedicated researcher and Ph.D. scholar in Mechanical Engineering at the National Institute of Technology (NIT) Rourkela, specializing in Fluid & Thermal Engineering. With a strong academic foundation, including an M.E. from BIT Mesra and a B.E. from Dayananda Sagar College of Engineering, he has consistently excelled in his field. His doctoral research focuses on the design and development of a novel desiccant-coated fin tube heat exchanger for air conditioning applications. Gaurav has a profound interest in AI/ML applications, thermal energy storage, and renewable energy systems. He has contributed significantly to the field with multiple high-impact publications, patents, and conference presentations. Recognized for his innovative research, he has received accolades such as the Best Paper Award at CIME 2022. Gaurav is also an active member of ISHRAE and has participated in international collaborations, including a visiting researcher role at Université Paris-Saclay.

Professional Profile

Google Scholar

Orcid

Scopus

Education 🎓

  • Ph.D. in Mechanical Engineering (2024, NIT Rourkela): Specialization in Fluid & Thermal Engineering, focusing on desiccant-coated heat exchangers for air conditioning. CGPA: 9.17.
  • M.E. in Mechanical Engineering (2018, BIT Mesra): Specialization in Fluid & Thermal Engineering. Percentage: 81.9%.
  • B.E. in Mechanical Engineering (2015, Dayananda Sagar College of Engineering): Percentage: 66.2%.
  • XII (HSC) (2011, Surendranath Centenary School): Subjects: Physics, Chemistry, Mathematics. Percentage: 71.2%.
  • X (SSC) (2009, DAV Public School): Major Subjects: Mathematics, Science, Social Studies. Percentage: 84.6%.
    Gaurav’s academic journey reflects a strong foundation in engineering, with a focus on thermal systems, AI/ML, and renewable energy technologies.

Experience 💼

  • R&D Engineer and Project In-charge (Oct 2024 – Present): New Leaf Dynamic Technologies, Greater Noida, India. Leading innovative projects in thermal energy systems.
  • Visiting Doctoral Researcher (Jan-Feb 2024): Université Paris-Saclay, France. Worked on AI/ML models for refrigeration systems.
  • Teaching Assistant (2016-2018): Conducted labs for I.C. Engines, Strength of Materials, Heat Transfer, and Fluid Mechanics during M.E. and Ph.D.
  • Research Assistant (2019-2024): MHRD-funded research at NIT Rourkela, focusing on desiccant-coated heat exchangers and AI/ML applications.
    Gaurav’s professional experience spans research, teaching, and industry, with a strong emphasis on thermal systems, AI/ML, and sustainable energy solutions.

Awards and Honors 🏆

  • Best Paper Award at CIME 2022 for research on desiccant-coated heat exchangers.
  • Visiting Researcher at Université Paris-Saclay, France (2024).
  • GATE Qualified (2016): 94.51 percentile with a score of 513.
  • Research Assistantship from MHRD, Govt. of India (2019-2024).
  • Teaching Assistantship from MHRD, Govt. of India (2016-2018).
  • K-12 Student Activity Chair at ISHRAE Bhubaneswar (2022-2023).
    Gaurav’s achievements highlight his excellence in research, innovation, and leadership in the field of thermal engineering and AI/ML applications.

Research Focus 🔍

Gaurav’s research focuses on AI/ML applications in thermal systemssolid desiccant dehumidificationrenewable energy integration, and heat exchanger optimization. His work includes:

  • Designing novel desiccant-coated fin tube heat exchangers for air conditioning.
  • Thermal energy storage using phase change materials (PCMs).
  • AI/ML-driven performance prediction and optimization of thermal systems.
  • Solar-driven thermal systems and indoor air quality enhancement.
  • Carbon capture and heat pump technologies.
    His interdisciplinary approach combines experimental, numerical, and AI/ML techniques to advance sustainable energy solutions.

Publication Top Notes 📚

  1. Experimental Study of Novel Desiccant Coated Energy Exchanger Employing PCM – Silica Gel Working Pair for Air Conditioning and Thermal Energy Storage Application.
  2. Experimental and Numerical Studies on Moisture Adsorption/Desorption Characteristics Across the Circular Fin Tube Desiccant Coated Heat Exchanger.
  3. Parametric Investigation and Optimization of Phase Change Material-Based Thermal Energy Storage Integrated Desiccant Coated Energy Exchanger Through Physics Informed Neural Networks.
  4. Desiccant Coated Fin Tube Energy Exchanger Design Optimization Implementing KNN-ML Tool and Adsorption/Desorption Kinetics Analysis Using Finite Difference Based Transient Model.
  5. Performance Potentiality Analysis of Desiccant Coated Energy Exchanger for M− Cooler Based Air Conditioning and Solar Driven Drying Systems.
  6. Design and Performance Prediction of Desiccant Coated Heat Exchanger Using ANFIS–AI Tool and Dynamic Model.
  7. Implementation of Adaptive Neuro-Fuzzy Inference System in Design and Process Optimization of Latent Heat Storage System.
  8. Performance Characteristics Assessment of Hollow Fiber Membrane-Based Liquid Desiccant Dehumidifier for Drying Application.
  9. A Novel Similarity Solution Approach Based Thermal Performance Prediction and Environmental Analysis of Evacuated U-Tube Solar Collector Employing Different Mono/Hybrid Nanofluids.
  10. Evaluation of Thermal Kinetics of Microencapsulated PCM for Low-Temperature Thermal Energy Storage Application.
  11. Application of Artificial Intelligence Models for Assessing the Performance of Closed Vertical Refrigerated Display Cabinet.
  12. Heat Exchanger Design (Indian Patent).

Conclusion 🌟

Gaurav Priyadarshi is a highly accomplished researcher with expertise in thermal systems, AI/ML, and renewable energy. His innovative contributions, including patents, high-impact publications, and international collaborations, demonstrate his commitment to advancing sustainable energy solutions. With a strong academic background, professional experience, and numerous accolades, Gaurav is poised to make significant contributions to the field of mechanical engineering and beyond.

Xuemei Wei | Materials Science and Engineering | Best Paper Award

Dr Xuemei Wei | Materials Science and Engineering | Best Paper Award


Assistant Researcher, Shaoxing University, China

Dr. Xuemei Wei is an accomplished researcher specializing in metal-organic chemistry and catalysis. She holds a Ph.D. in Physical Chemistry from the Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences. Her expertise lies in the development of nano-catalytic materials for environmental and energy applications. With over 12 SCI publications in high-impact journals, she has made significant contributions to catalyst design and chemical transformations. Currently, she serves as an Assistant Researcher at Shaoxing University, where she advances research in pharmaceutical and chemical sciences. Her work integrates innovative nanomaterials to address environmental challenges and sustainable energy solutions.

PROFESSIONAL PROFILE

Scopus

EDUCATION

🎓 Ph.D. in Physical Chemistry – Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences (2018-2021)
📝 Thesis: Design and Mechanism of Efficient Carbonylation Catalysts under Ambient Conditions.
🎓 M.Sc. in Inorganic Chemistry – Inner Mongolia University (2013-2016)
🎓 B.Sc. in Chemistry – Jilin Normal University (2009-2013)

PROFESSIONAL EXPERIENCE

🔬 Assistant Researcher – Shaoxing University, College of Chemistry and Chemical Engineering (2021-Present)
🔍 Focus: Development of nano-catalytic materials for industrial and environmental applications.
🧪 R&D Specialist – Changchun Zhongke Haorong New Materials Research Co., Ltd. (2016-2018)
🚀 Developed and optimized catalytic materials for large-scale industrial use.

AWARDS & HONORS

🏆 Recognized for research contributions in metal-organic chemistry.
📜 Multiple SCI-indexed publications in top-tier journals.
🌍 Acknowledged for innovative approaches in environmental catalysis.

RESEARCH FOCUS

🧪 Catalysis Under Ambient Conditions: Development of carbonylation catalysts for industrial applications.
🌱 Environmental Nanomaterials: Engineering nanomaterials for pollutant degradation and remediation.
Sustainable Energy Catalysis: Exploring hydrodeoxygenation reactions for green chemistry solutions.

PUBLICATION TOP NOTES

📄 Turning on Ambient Conditions Hydrodeoxygenation of Biobased Aromatic Alcohols – Energy Conversion and Management (2025)
📄 Construction of MXene-loaded Nanoscale Zero-Valent Iron for ReO4-/TcO4- Sequestration – Separation and Purification Technology (2024)
📄 Deciphering the Facet-Dependent Scavenging Potential of α-Fe2O3 Nanocrystals – Applied Surface Science (2024)
📄 Crucial Size Effect on Dicarbonylation of Acetylene Over Pd/CsHPMo Catalysts – Dalton Transactions (2024)
📄 Targeting Phosphodiesterase 4 as a Therapeutic Strategy for Cognitive Improvement – Bioorganic Chemistry (2023)
📄 Vesicular BiVO4 Nanostructures Modified by g-C3N4 Quantum Dots – Materials Science in Semiconductor Processing (2024)
📄 Synergistic Effect of Hematite Facet and Pd Nanocluster for Acetylene Dicarbonylation – Molecular Catalysis (2021)
📄 Strong Metal-Support Interactions Between Palladium Nanoclusters and Hematite – New Journal of Chemistry (2020)
📄 Highly Efficient Selective Dicarbonylation of Acetylene Catalyzed by Palladium Nanosheets – New Journal of Chemistry (2020)
📄 Catalyst in Acetylene Carbonylation: From Homogeneous to Heterogeneous – Progress in Chemistry (2020)
📄 Advances in Research on Structure-Activity Relationship in Hydrogenation Catalysts – Chemical Industry and Engineering Progress (2020)
📄 Support Morphology-Dependent Catalytic Activity of Co/CeO2 for Phenol Hydrogenation – New Journal of Chemistry (2020)

CONCLUSION

Dr. Xuemei Wei is a leading researcher in catalysis and nanomaterials, making significant strides in environmental and sustainable chemistry. Her contributions to metal-organic chemistry and catalytic performance have earned her recognition in top scientific journals. As an Assistant Researcher at Shaoxing University, she continues to develop innovative solutions for industrial and environmental challenges. 🚀🔬

Hang Xu | Mechanical Metamaterials | Best Researcher Award

Assist. Prof. Dr Hang Xu | Mechanical Metamaterials | Best Researcher Award

Assistant Professor, Concordia University, Canada

Dr. Hang Xu is an Assistant Professor in the Department of Mechanical, Industrial, and Aerospace Engineering at Concordia University, Montreal, Canada. With a Ph.D. in Mechanical Engineering from McGill University and an MSc in Aircraft Design from Beijing University of Aeronautics and Astronautics, Dr. Xu specializes in mechanical metamaterials, smart structures, and additive manufacturing. His research focuses on developing advanced materials with programmable morphing and motion for aerospace, medical, and robotic applications. Prior to joining Concordia, he held research positions at Imperial College London and Siemens, contributing to innovations in multi-stable structures, soft robotics, and medical devices. Dr. Xu is recognized for his teaching excellence and has received awards for his contributions to research during the COVID-19 pandemic.

Professional Profile

Orcid

Scopus

Education 🎓

  • Doctorate in Mechanical Engineering, McGill University (2013–2018)
    Supervisor: Damiano Pasini
  • Master’s Thesis in Aircraft Design, Beijing University of Aeronautics and Astronautics (2011–2013)
    Supervisor: Yuanming Xu
  • Bachelor’s in Aircraft Design and Engineering, Shenyang Aerospace University (2007–2011)
    Supervisor: Weiping Zhang

Experience 💼

  • Assistant Professor, Concordia University (2022–Present)
    Research on functional/smart metamaterials for aerospace, nautical, and medical applications.
  • Research Associate, Imperial College London (2020–2022)
    Developed multi-stable structures, soft robots, and medical devices.
  • Postdoctoral Researcher, McGill University (2018–2020)
    Worked on thermally actuated deployable mechanisms and additive manufacturing processes.
  • Internships: Chinese Aircraft Design Institute of Aviation Medicine (2012–2013) and Shenyang Aircraft Design Institute (2010–2011).

Awards and Honors 🏆

  • Teaching Excellence Award, Concordia University (2023)
  • Associate Fellowship of the Higher Education Academy (AFHEA), UK (2022)
  • Excellent Contribution to Research in COVID-19 Pandemic, Imperial College London (2021)
  • Winner of 3D-Printing Workshop Design Challenge, McGill University (2019)

Research Focus 🔬

Dr. Xu’s research focuses on mechanical metamaterialssmart materials and structures, and additive manufacturing. His work aims to develop materials with programmable morphing and motion for applications in aerospace structuressoft roboticsmedical devices, and composite materials. Key areas include multiscale mechanics, finite element analysis, and the design of multi-stable structures for innovative functionalities.

Publication Top Notes 📚

  1. Embedded pressure sensing metamaterials using TPU-graphene composites and additive manufacturing
  2. Generalized tessellations of superellipitcal voids in low porosity architected materials for stress mitigation
  3. Thermally actuated hierarchical lattices with large linear and rotational expansion
  4. Routes to program thermal expansion in three-dimensional lattice metamaterials built from tetrahedral building blocks
  5. ABAQUS user subroutine UMAT for elastoplastic nonlinear kinematic hardening material (Mróz model) with anisotropic plasticity
  6. Digitally Programmable Architected Materials with Static and Dynamic Reconfiguration
  7. Multi-stable meta-materials with programmable reconfigurations for soft robots
  8. 3D printed soft metamaterial force sensors for gait monitoring using TPU-graphene composites
  9. Overcoming the strength-modulus tradeoff using double network metamaterial lattices
  10. Multi-stable architectured materials with high-mobility morphing

Conclusion 🌟

Dr. Hang Xu is a leading researcher in mechanical metamaterials and smart structures, with a strong focus on innovative applications in aerospace, robotics, and medical devices. His contributions to teaching, research, and industry collaborations highlight his commitment to advancing materials science and engineering. Through his work, Dr. Xu continues to push the boundaries of programmable materials, paving the way for future technological advancements. 🚀

 

Muhammad Aqeel | Structural Analysis | Best Researcher Award

Dr Muhammad Aqeel | Structural analysis | Best Researcher Award

Associate Profeesor, Jiangsu Maritime Institute, China

Dr. Muhammad Aqeel is an accomplished Associate Professor at Jiangsu Maritime Institute, Nanjing, China, specializing in Naval Architecture and Intelligent Manufacturing. With a Ph.D. in Mechanical Engineering (Thermal Engineering) from North China Electric Power University, Beijing, he has extensive expertise in wind turbine blade optimization, fluid-structure interaction, and renewable energy systems. Previously, he served as an Assistant Professor at the Institute of Space Technology, Islamabad, Pakistan, where he contributed to teaching, research, and lab development. His industrial experience includes roles as an O&M Engineer at Ecopack Limited, focusing on thermal power plant operations. Dr. Aqeel has published numerous high-impact journal articles, secured a patent, and received accolades for his teaching and research excellence. His work bridges theoretical innovation and practical applications in energy systems, fluid dynamics, and structural health monitoring.

Professional Profile

Google Scholar

Scopus

Education  🎓

  • Ph.D. in Mechanical Engineering (Thermal Engineering), North China Electric Power University, Beijing, China (2016–2020). Dissertation: The Interaction Theory of Flowing Air and Wind Turbine Blade and Its Application.
  • Master of Sciences in Energy Management, COMSATS Institute of Information Technology, Islamabad, Pakistan (2013–2015). Dissertation: Synthetic Natural Gas: An Alternative Energy Option for Natural Gas.
  • Bachelor’s in Mechanical Engineering Technology (Honors), Preston University, Islamabad, Pakistan (2007–2011). Final Project: Design and Fabrication of a Vertical-Axis Wind Turbine.
  • Recipient of the Chinese Government Scholarship (2016–2020) and Merit Scholarship during MS studies.

Experience 💼

  • Associate Professor, Jiangsu Maritime Institute, Nanjing, China (2023–Present). Teaching mechanical engineering courses and conducting research in naval architecture and intelligent manufacturing.
  • Assistant Professor, Institute of Space Technology, Islamabad, Pakistan (2016–2023). Taught mechanical engineering courses, supervised thesis projects, and developed labs (e.g., Fluid Mechanics, Statics, and Dynamics).
  • Lecturer, Swedish College of Engineering and Technology, Pakistan (2015–2016). Delivered courses and assisted in research proposal development.
  • O&M Engineer, Ecopack Limited, Pakistan (2009–2014). Managed operations and maintenance of thermal power plant equipment, including steam turbines, boilers, and heat exchangers.

Awards and Honors 🏆

  • Best Teaching Award, Institute of Space Technology, Islamabad, Pakistan.
  • Study Excellence Certificate, North China Electric Power University, Beijing, China.
  • Chinese Government Scholarship (4 years) for Ph.D. studies.
  • Merit Scholarship during MS studies at COMSATS Institute of Information Technology.
  • Secured Technology Development Fund (TDF) worth 14 million PKR from the Higher Education Commission, Pakistan.
  • Recognized for organizing international conferences on Robotics, Artificial Intelligence, and Applied Science & Engineering.

Research Focus 🔬

Dr. Aqeel’s research focuses on thermal engineering, fluid-structure interaction, and renewable energy systems. His work includes:

  • Optimizing wind turbine blade design for improved aerodynamic performance and energy conversion.
  • Developing theoretical models for blade chord and twist angle optimization.
  • Investigating fluid dynamics in wind turbines and heat exchangers.
  • Exploring structural health monitoring using flexible strain sensors.
  • Analyzing soil erosion on steep hills and its environmental impact.
  • Contributing to chaos theory and synchronization in dynamical systems.

Publication Top Notes 📚

  1. Soil erosion on steep hills with varying vegetation patterns [J] Physics of Fluids (2025).
  2. Development of AgNPs-PVP/TPU based flexible strain sensors for structural health monitoring [J] Results in Engineering (2024).
  3. Integer and fractional order analysis of a 3D system and generalization of synchronization [J] Chaos, Solitons & Fractals (2022).
  4. Generation of Multidirectional Mirror Symmetric Multiscroll Chaotic Attractors [J] Chaos, Solitons & Fractals (2022).
  5. Theoretical prediction of wear of disc cutters in tunnel boring machines [J] Journal of Rock Mechanics and Geotechnical Engineering (2018).
  6. Dynamical and fractal properties in periodically forced stretch-twist-fold flow [J] Chinese Journal of Physics (2017).
  7. Analogy Theory and application of pressure difference of wind turbine blade profile [J] Journal of Harbin Institute of Technology (2020).
  8. Study on characteristics of the interaction between flowing air and wind turbine blade [J] Journal of China Institute of Water Resources and Hydropower Research (2017).
  9. New Theory and Method for Improving Utilization and Conversion Rate of Wind Turbine [J] Journal of Basic Science and Engineering (2017).
  10. Force analysis of fan blade surface based on Wilson method [C] 14th Annual Academic Exchange Conference of North China Electric Power University (2017).
  11. SNG and N2 comparison and Alternative energy option [C] 1st International Conference on Energy Systems for Sustainable Development (2015).

Conclusion 🌟

Dr. Muhammad Aqeel is a distinguished academic and researcher with a strong background in mechanical engineering, thermal systems, and renewable energy. His contributions to wind turbine optimization, fluid dynamics, and structural health monitoring have been widely recognized through high-impact publications, patents, and awards. With a blend of industrial and academic experience, he continues to drive innovation in energy systems and engineering education, making significant strides in sustainable technology development.

Haiteng Jiang | Mental Health | Best Researcher Award

Dr. Haiteng Jiang | Mental Health | Best Researcher Award

Assistant professor, Zhejiang University, China

Dr. Haiteng Jiang is a Principal Investigator at the National Key Laboratory of Brain-Machine Intelligence, Zhejiang University, and an Assistant Professor at the Ministry of Education Frontier Science Center for Brain and Brain-Machine Integration, Zhejiang University. He specializes in the integration of brain functional imaging, genetic data, and speech signals to understand cognition and brain disorders. Dr. Jiang has significantly contributed to neuroscience research and clinical psychiatry with expertise in mental health screening, precision subtyping of psychiatric disorders, and novel neuromodulation techniques. His work spans across psychiatric and neurological diseases, combining computational modeling, neural modulation, and artificial intelligence to advance mental health care.

Profile

Education

Dr. Haiteng Jiang completed his PhD in Cognitive Artificial Intelligence at the Donders Institute for Brain, Cognition and Behaviour, Radboud University, The Netherlands (2011-2016). Prior to this, he obtained a Master’s degree in Biomedical Engineering from Southeast University, Nanjing, China (2008-2011). He earned his Bachelor’s degree in Electrical Engineering and Automation from Nanjing University of Posts and Telecommunication, Nanjing, China (2004-2008). His educational journey laid the foundation for his expertise in cognitive neuroscience and brain-machine integration, which he continues to advance through interdisciplinary research.

Experience

Dr. Haiteng Jiang is a Principal Investigator at Zhejiang University, where he leads several key projects in brain-machine intelligence, mental health screening, and neuromodulation techniques. He is also a faculty member at the Ministry of Education Frontier Science Center for Brain and Brain-Machine Integration. His postdoctoral experiences at Carnegie Mellon University (2018-2021) and the University of Minnesota (2016-2018) enhanced his research in biomedical engineering. Additionally, Dr. Jiang worked as an Assistant Researcher at Nanjing Brain Hospital (2016-2020). His research has been instrumental in integrating multimodal brain imaging and AI to advance the understanding and treatment of psychiatric and neurological disorders.

Awards and Honors

Dr. Haiteng Jiang has received numerous prestigious awards for his contributions to neuroscience and mental health research. Notably, he was awarded the Zhejiang University School of Medicine Li Zao Neuroscience Award in December 2022. He was also a recipient of the Excellent Young Scientists Fund (Overseas) from the National Natural Science Foundation of China in October 2022. Other significant honors include the Neuroscience Society Hot Topic Award (Top 1%) in 2018 and the Emerging Country Travel Scholar Award at the 21st International Biomagnetism Conference in 2018. Dr. Jiang’s work has been further supported through multiple overseas research fellowships and scholarships, such as those from Nijmegen University and the China Scholarship Council. His continued excellence in neuroscience and mental health has earned him widespread recognition in the scientific community.

Research Focus

Dr. Haiteng Jiang’s research is centered on systems neuroscience, with a focus on advancing mental health care through the integration of multimodal brain imaging, genetic information, and speech signals. He explores innovative ways to screen for psychiatric and psychological disorders using wearable devices and large language models. A key aspect of his research involves precision subtyping of psychiatric disorders by combining diverse types of data for accurate diagnosis. Additionally, Dr. Jiang investigates novel neuromodulation techniques to develop integrated therapeutic strategies for treating mental health disorders. His interdisciplinary approach combines experimental techniques, computational modeling, neural modulation, and artificial intelligence to address complex cognitive and brain disorders, including depression, epilepsy, and other neurological conditions.

Publication Top Notes

  • Measuring directionality between neuronal oscillations of different frequencies 🧠📊 Neuroimage 118, 359-367 (2015)
  • Predictability of depression severity based on posterior alpha oscillations 😞📉 Clinical Neurophysiology 127 (4), 2108-2114 (2016)
  • Noninvasive high-frequency oscillations riding spikes delineates epileptogenic sources ⚡🧠 PNAS 118 (17), e2011130118 (2021)
  • Interictal SEEG resting‐state connectivity localizes the seizure onset zone 🧠⚡ Advanced Science 9 (18), 2200887 (2022)
  • Mindfulness improves brain–computer interface performance by increasing control over neural activity in the alpha band 🧘‍♂️📊 Cerebral Cortex 31 (1), 426-438 (2021)
  • Formation of visual memories controlled by gamma power phase-locked to alpha oscillations 🧠🎯 Scientific Reports 6 (1), 28092 (2016)
  • Structural–functional decoupling predicts suicide attempts in bipolar disorder patients 🧠💔 Neuropsychopharmacology 45 (10), 1735-1742 (2020)
  • Brain–heart interactions underlying traditional Tibetan Buddhist meditation 🧘❤️ Cerebral Cortex 30 (2), 439-450 (2020)
  • Discriminating suicide attempters and predicting suicide risk 😞🔍 Frontiers in Psychiatry 11, 597770 (2020)
  • Hyperactive frontolimbic and frontocentral resting-state gamma connectivity in major depressive disorder 🧠💥 Journal of Affective Disorders 257, 74-82 (2019)