Foteini Mourkioti is an Associate Professor at the University of Pennsylvania's Perelman School of Medicine , with a joint appointment in the Graduate Groups of Cell and Molecular Biology and Bioengineering . She co-directs the Musculoskeletal Regeneration Program at the Penn Institute of Regenerative Medicine and leads the McKay Orthopaedic Research Laboratory . Research Interests : Muscle Stem Cell Biology Mechanobiology Muscle Regeneration Telomere Biology in Muscular Diseases Fibrodysplasia Ossificans Progressiva (FOP) Cardiomyopathy and Aging Key Research Contributions : Developed the Pax7EGFP mouse model for real-time muscle stem cell tracking Discovered telomere shortening as a critical factor in Duchenne Muscular Dystrophy Elucidated the role of NF-κB in muscle stem cell dysfunction Identified Piezo1's role in stem cell morphological states Characterized fibro-adipogenic progenitor dynamics in FOP Scientific Awards : NIH/NHLBI R01 grant recipient (2019) NASA grant awardee (2020, 2017) American Heart Association grant (2017) Muscular Dystrophy Association grant (2019) University Research Foundation grant (2018) Publications & Collaborations : Over 25 publications in high-impact journals like Science Advances , Nature Protocols , and Cell Reports . Collaborates with Penn Cardiovascular Institute and Pennsylvania Muscle Institute.
Gustavo Nader, Ph.D., is a Professor of Kinesiology at The Pennsylvania State University's College of Health and Human Development, where he holds the Dorothy Foehr Huck and J. Loyd Huck Endowed Chair in Molecular, Cellular and Integrative Physiology. His research laboratory at 101 Noll Lab focuses on molecular mechanisms of skeletal muscle adaptation, employing human, animal, and cellular models to investigate ribosome biogenesis, transcriptional regulation, and muscle growth control in contexts ranging from exercise hypertrophy to cancer cachexia. Dr. Nader's research examines fundamental processes including: Ribosome biogenesis and its role in muscle growth regulation Epigenetic control of RNA Polymerase I activity Molecular pathways in mechanical overload-induced hypertrophy Tumor-induced muscle wasting mechanisms Biomimicry approaches inspired by hibernator physiology His work spans exercise physiology, cancer biology, and environmental stress responses. Analysis of his 15 most recent publications (2015-2025) reveals predominant themes in muscle hypertrophy mechanisms, cancer cachexia pathophysiology, ribosomal function analysis, and environmental stress impacts on muscle. His work consistently integrates molecular techniques with physiological models across species. Notable scientific recognitions include: Dorothy Foehr Huck and J. Loyd Huck Chair appointment (2024) Huck Institutes Leadership Fellowship (2025-2026) Dr. Nader leads an active research team investigating muscle plasticity, with current projects funded through the Huck Institutes of the Life Sciences. He collaborates extensively through Penn State's Integrative and Biomedical Physiology graduate program and Center for Cellular Dynamics.
Patrick J. Cahill, MD, is a pediatric spine specialist and the Robert M. Campbell Jr. Endowed Chair in Thoracic Insufficiency Syndrome at Children's Hospital of Philadelphia (CHOP). His clinical expertise spans disorders of the pediatric spine, scoliosis, cervical spine conditions, and minimally invasive surgical techniques. He leads the Center for Thoracic Insufficiency Syndrome, collaborating with pulmonology, anesthesia, and physical therapy teams. Academic Role: Physician Scientist Leadership: Director of the Center for Thoracic Insufficiency Syndrome Research Focus: Spinal growth modulation, 3D surgical planning, and reducing anesthesia exposure in young patients His work emphasizes fusionless treatments like magnetically expandable growing rods and Mehta casting, alongside innovations in dynamic MRI for preoperative assessment. Recent publications highlight comparative studies on spinal fusion techniques, surgical complication classifications, and multidisciplinary approaches to complex cases. Awards: Philadelphia Magazine's Top Doctors (2022), SRS Travelling Fellowship (2015) Professional Memberships: Scoliosis Research Society, North American Spine Society, Pediatric Orthopaedic Society of North America
Martin Jastroch is a Professor at Stockholm University's Department of Molecular Biosciences, The Wenner-Gren Institute. His research focuses on the physiology and molecular mechanisms of energy metabolism from organism to molecule level. His primary research interests include: Energy metabolism physiology and molecular mechanisms Obesity and metabolic aspects Adipose tissue biology Mitochondrial mechanisms Thermogenesis and brown fat function Metabolic regulation in health and disease Professor Jastroch's research spans multiple disciplines, connecting molecular mechanisms with whole-organism physiology. His work on mitochondrial bioenergetics and thermogenesis has contributed significantly to understanding how energy metabolism is regulated across different biological scales. Recent publications show a growing interest in the evolutionary aspects of thermogenesis and the role of brown adipose tissue in metabolic diseases, with particular focus on UCP1 function, mitochondrial adaptations, and metabolic reprogramming in disease states. His scientific contributions include important findings on: UCP1 (Uncoupling Protein 1) function and regulation Mitochondrial bioenergetics in different tissue types Evolutionary aspects of mammalian thermogenesis Metabolic regulation in obesity and related disorders Links between mitochondrial dysfunction and neurodegenerative diseases Professor Jastroch leads 'Group Jastroch' at Stockholm University, where his team investigates the complex interplay between cellular energy metabolism and whole-body physiology, with implications for understanding and treating metabolic disorders.
Woojin Han is an Assistant Professor in the Departments of Orthopedics and Cell, Developmental & Regenerative Biology at the Icahn School of Medicine at Mount Sinai. His research program focuses on the mechanobiology of skeletal muscle stem and progenitor cells, with applications in disease modeling and the development of advanced therapeutics for muscle injuries and degenerative diseases. Dr. Han earned his BS in Biomedical Engineering from the University of Rochester and his MS and PhD in Bioengineering from the University of Pennsylvania. He completed his postdoctoral training at the Georgia Institute of Technology, where he received awards from the American Federation for Aging Research (AFAR) and the NIH. Dr. Han's research integrates biomaterials, bioengineering, and in vivo genetic approaches to investigate cell-matrix interactions and mechanobiological signaling, aiming to uncover the mechanisms driving muscle regeneration and pathology. His work is supported by the National Institutes of Health (NIH) and the Department of Defense (DoD). Analysis of Dr. Han's recent publications reveals a strong focus on muscle regeneration mechanisms, particularly examining the role of extracellular matrix proteins, mechanical confinement, and signaling pathways in muscle stem cell behavior. His research spans from fundamental mechanobiology to translational applications using biomaterials for tissue regeneration. 2025 NEBEC Emerging Investigator Award 2024 Mount Sinai Faculty Council Award for Junior Faculty 2023 Popular Science's The Brilliant 10 2022 Stephen I. Katz Early Stage Investigator Grant Awardee American Federation for Aging Research (AFAR) award NIH award Dr. Han's research is supported by significant funding from the National Institutes of Health (NIH) and the Department of Defense (DoD). His work bridges basic science and clinical applications, with particular emphasis on developing advanced therapeutics for muscle injuries and degenerative diseases. Through his lab, he mentors junior researchers in the fields of biomechanics, bioengineering, and regenerative medicine. Dr. Han leads the Han Lab, which focuses on skeletal muscle regeneration research. The lab employs a multidisciplinary approach combining biomaterials engineering, molecular biology, and advanced imaging techniques to develop novel strategies for enhancing muscle repair and preventing pathological changes following injury.
Brian M. Barnes is a Professor of Zoophysiology at the University of Alaska Fairbanks (UAF), affiliated with the Institute of Arctic Biology and the Department of Biology and Wildlife. He has held roles including INBRE Director, Toolik Field Station Co-PI, and Interim Director of the Institute of Arctic Biology. His research focuses on physiological ecology, endocrinology of hibernation, and biological rhythms in Arctic animals. Education: BS in Biology (UC Riverside, 1977); PhD in Zoology (University of Washington, 1983). Postdoctoral training at UC Berkeley and international collaborations in Norway and the Netherlands. Awards include NSF grants and leadership in Arctic research networks. Research Interests: Hibernation physiology and mechanisms Circadian rhythms in polar vertebrates Overwintering strategies of Arctic mammals and insects Climate change impacts on animal phenology Notable Contributions: Discovered freeze-avoidance mechanisms in Arctic ground squirrels Pioneered studies on hibernation energy conservation and metabolic suppression Co-developed tools for field studies at the Toolik Field Station Lab/Teams: Leads research groups studying Arctic hibernators, including collaborations on black bear hibernation genomics and insect antifreeze proteins. Advises students in physiology, ecology, and comparative biology.
David S. Cafiso is a Professor in the Department of Molecular Physiology and Biological Physics at the University of Virginia. His research focuses on the molecular mechanisms of membrane transport and cell signaling, utilizing advanced techniques such as EPR spectroscopy, high-resolution NMR, and solid-state NMR. He has made significant contributions to understanding membrane protein structure and function, particularly in relation to synaptic vesicle exocytosis and bacterial nutrient transport. Education: AB, PhD in Biophysics from the University of California, Berkeley; Postdoctoral training at UC Berkeley and Stanford University His research interests span Biochemistry, Biophysics, Structural Biology, Neuroscience, and Microbiology. Recent work highlights conformational dynamics in membrane proteins, lipid-protein interactions, and the role of electrostatics in signaling. Publications emphasize PIP2 regulation, C2 domain function, and TonB-dependent transport systems, with applications in both bacterial physiology and neurosecretion. Professor Cafiso's laboratory investigates two primary areas: (1) Membrane protein attachment mechanisms critical for cell signaling, and (2) Solute transport across lipid bilayers in gram-negative bacteria. His studies often integrate biochemical, structural, and biophysical approaches to probe dynamic processes in membrane biology.
Jinhong Meng is a Senior Research Fellow at the Department of Genetics & Genomic Medicine, University College London (UCL), focusing on neuromuscular disorders and gene therapy. He earned his PhD and Bachelor’s degrees from the Fourth Military Medical University. Education: Doctor of Philosophy, Fourth Military Medical University (2000) Bachelor, Fourth Military Medical University (1995) Research Interests: Jinhong Meng’s work centers on Duchenne Muscular Dystrophy (DMD), Spinal Muscular Atrophy (SMA), and gene therapy techniques including CRISPR, lentiviral vectors, and antisense oligonucleotides. His studies explore immune responses to dystrophin, vascular defects in SMA, and dystrophin correction via viral and non-viral delivery systems. Publication Trends: Over the past eight years, Jinhong Meng has published extensively on DMD and SMA, with a focus on gene editing, dystrophin restoration, and cellular therapies. His collaborative work spans lentiviral vectors, foamy virus transduction, and necroptosis mechanisms in muscle degeneration. Labs & Collaborations: He works within UCL’s Genetics & Genomic Medicine Department, collaborating on projects involving dystrophic muscle engraftment, circadian signaling, and RNA editing for genetic mutations.
Steven Livingstone is an Associate Professor in the Department of Computer Science at Ontario Tech University, Faculty of Science. His research focuses on affective data science, applying machine learning and statistical modeling to understand emotion and its disorders. He leads the Affective Data Science Lab (ADSL), specializing in emotion recognition technologies using physiological data like EEG and motion capture. Livingstone holds a PhD from The University of Queensland (2008) and has published over 70 peer-reviewed papers, with over 2,400 citations. His RAVDESS dataset is widely used in speech emotion recognition research. His research interests span data science, affective computing, and music's role in emotion. Recent work emphasizes data provisioning for deep learning applications. Livingstone teaches courses including Scientific Data Analysis and Information Visualization. He actively mentors undergraduate and graduate students in his lab, focusing on research assistantships in emotion technology development. Key contributions include studies on musical tempo’s physiological effects, Parkinson’s disease facial mimicry deficits, and ensemble performance dynamics. His work has been featured in The Atlantic, NBC Today, and on the cover of Informatik Spektrum. The ADSL lab collaborates on projects combining data analytics with human-computer interaction to advance emotion-aware systems.
Dr. Elliot L. Dimberg is a neurologist specializing in neuromuscular disorders at Mayo Clinic Hospital in Jacksonville, Florida. He serves as faculty at Mayo Clinic Alix School of Medicine within the Department of Neurology, holding leadership roles including Vice Chair of the Curriculum Committee and Clerkship Sub Committee. Dr. Dimberg actively contributes to medical education through multiple committees related to student promotions, academic affairs, and residency program evaluation, while maintaining a clinical practice focused on complex neuromuscular conditions. Dr. Dimberg earned his MD from Tulane University in 2001. He completed his Neurology residency and served as Chief Resident at the University of Virginia, followed by fellowships in Clinical Neurophysiology at the University of Virginia (2006) and Neuromuscular Disease at Mayo Clinic Rochester (2008). He maintains board certification in Neurology, Clinical Neurophysiology, and Neuromuscular Medicine through the American Board of Psychiatry and Neurology. His clinical expertise spans neuromuscular junction disorders including myasthenia gravis and Lambert-Eaton Myasthenic Syndrome, peripheral neuropathies, brachial and lumbosacral plexus disorders, polyradiculopathies, motor neuron diseases, and myopathies. Dr. Dimberg integrates clinical evaluation with electrodiagnostic medicine to diagnose and manage these complex conditions. His research focuses on advancing diagnostic methodologies through electromyography techniques, genetic testing, and clinical trial participation for rare neuromuscular disorders. Dr. Dimberg's publication record demonstrates consistent contributions to neuromuscular medicine, with emphasis on diagnostic precision, genetic underpinnings of muscle disorders, and therapeutic innovations. His recent work includes clinical trials for hereditary transthyretin amyloidosis, studies on spinal muscular atrophy treatments, and investigations into immune-mediated necrotizing myopathy, reflecting his commitment to advancing both clinical practice and scientific understanding in his field. Multiple Above and Beyond Awards from Mayo Clinic in Florida (2008-2024) A.B. Baker Teacher Recognition Award from American Academy of Neurology (2013, 2021) Commitment to Education Award from Mayo Clinic Alix School of Medicine (2019) Alpha Omega Alpha Honor Society membership (2000) As an educator, Dr. Dimberg has coordinated the Residency Neuroanatomy Course and Clinical Pathological Correlation Conference for over a decade. He previously chaired the Curriculum Committee for the Adult Neurology Residency Program and currently serves in leadership roles for Mayo Clinic Alix School of Medicine's educational committees. His dedication to teaching has been recognized through numerous awards including the prestigious A.B. Baker Teacher Recognition Award. Professionally, Dr. Dimberg serves as Co-Chair of the American Association of Neuromuscular and Electrodiagnostic Medicine's EDX Lab Accreditation Committee and holds leadership positions in the American Clinical Neurophysiology Society. He contributes to developing certification exams, educational programming, and clinical guidelines for these organizations, maintaining active engagement with the broader neuromuscular medicine community.
Malin Malmsjö is a Professor and Consultant at Lund University's Ophthalmology Department , affiliated with the Faculty of Engineering (LTH) . She leads the Ophthalmology Imaging Research Group and contributes to Photon Science and Technology and Light and Materials profile areas. Key Research Focus: Development of laser speckle contrast imaging , diffuse reflectance spectroscopy , and photoacoustic imaging for periorbital tumor margin analysis and reconstructive surgery optimization. Clinical Applications: Non-invasive diagnostics for giant cell arteritis , diabetic retinopathy , and breast cancer through interdisciplinary collaborations. Infrastructure: Manager of Vevo-LAZR-X , a laser-based imaging system for tissue analysis. Her work intersects ophthalmology , biophotonics , and medical imaging , addressing challenges in tumor excision, flap survival, and ocular reconstruction. She actively supervises PhD students and contributes to technology implementation in clinical settings.
Tommy Lundberg is a Senior Lecturer and Docent in Physiology at Karolinska Institutet. He works at the Department of Laboratory Medicine, Division of Clinical Physiology. His email address is tommy.lundberg@ki.se, and his postal address is H5 Laboratoriomedicin, H5 Klinisk Fysiologi Gustafsson, 141 52 Huddinge. Lundberg is affiliated with the university library and has held positions since 2022. Research Interests: Lundberg's research focuses on skeletal muscle mass and function adaptation, particularly in athletic performance, disease contexts, aging, and transgender individuals undergoing hormone therapy. He investigates molecular, metabolic, morphological, and functional responses to resistance and aerobic exercises. His work also explores biological maturity selection biases in youth sports, bio-banding applications in soccer and ice hockey, and the impact of anti-inflammatory drugs on muscle hypertrophy. Article Trends: Lundberg's recent publications (2025–2024) cover topics like sex differences in disc golf, muscle atrophy in space exposome, longitudinal hormone therapy effects in transgender individuals, and bio-banding in youth sports. Earlier works delve into molecular pathways in muscle hypertrophy, concurrent training effects, mitochondrial function, and imaging techniques (CT/MRI) for muscle assessment. Scientific Recognition: Most prominent young researcher in Sport Science, Swedish Central Association for Sport Promotion (SCIF), 2017 Teaching and Editorial Roles: Lundberg teaches human physiology and sports science in nursing, physiotherapy, and biomedical analytics programs. He leads a contract education course in advanced exercise physiology and contributes to a PhD course on scientific writing. He is an Associate Editor for Frontiers in Physiology - Exercise Physiology (2022) and a member of the editorial board for Translational Exercise Biomedicine (2024). Collaborations and Expertise: He collaborates with the Swedish Football Association and Swedish Ice Hockey Association on bio-banding studies. Lundberg served as an invited speaker at the ACSM Annual Meeting (2024) on transgender athletes and as an expert panelist for World Rugby's transgender workshop (2020). His supervision includes Andrea Tryfonos (2021) and thesis evaluations at Mid Sweden University and Linköping University.
David A. Hood is a Full Professor and former Canada Research Chair in Cell Physiology (2003–2024) at York University, affiliated with the School of Kinesiology and Health Science. He is the Founding Director of the Muscle Health Research Centre (MHRC) and supervises graduate students in the Biology Graduate Program. Research Interests: His research focuses on mitochondrial biogenesis, turnover, and function in skeletal muscle. He investigates how exercise, aging, and muscle disuse affect mitochondrial health, with a particular interest in mitophagy, lysosomal function, and cellular signaling. His work spans human, animal, and cellular models, integrating physiological, biochemical, and molecular biology approaches. Recent Publication Trends: Recent publications emphasize transcriptional regulation (e.g., TFEB, TFE3, ATF4, p53), organelle crosstalk (mitochondria-lysosome interactions), and the role of exercise as 'mitochondrial medicine.' His lab explores therapeutic interventions like mitochondrial transplantation and nutrient signaling in muscle health. Scientific Awards: Canada Research Chair in Cell Physiology (2003–2024) Finalist for a prestigious national award Advising and Grants: Dr. Hood actively mentors graduate students and postdoctoral fellows. He has secured significant funding, including a $1 million CIHR grant to study mitochondria and lysosomes in muscle. His lab fosters interdisciplinary collaboration and contributes to major reviews in the field. Labs and Teams: He leads the Hood Lab at York University and co-founded the Muscle Health Research Centre (MHRC), a multidisciplinary hub promoting research on muscle function, exercise, and aging. The MHRC facilitates collaboration across departments and institutions.
Professor Mary M. Reilly is a distinguished academic and clinician serving as Professor of Neurology in the Department of Neuromuscular Diseases at University College London's Queen Square Institute of Neurology. She is also a consultant neurologist at the National Hospital for Neurology and Neurosurgery, Queen Square, London. Her academic appointments include: Professor of Neurology, University College London, Department of Neuromuscular Diseases Head of the Division of Clinical Neurology, UCL Queen Square Institute of Neurology Lead of the peripheral nerve clinical and research group Professor Reilly's research focuses on inherited neuropathies, with particular emphasis on Charcot-Marie-Tooth disease (CMT) and hereditary transthyretin amyloidosis (hTTRA). Her work spans the entire translational pipeline, from gene identification and pathogenetic studies through natural history studies and outcome measure development to clinical trials. She approaches her research with a patient-centered perspective, with questions arising directly from clinical encounters. Her extensive publication record demonstrates consistent contributions to understanding various forms of Charcot-Marie-Tooth disease, amyloid neuropathies, and other inherited peripheral nerve disorders. Her research employs diverse methodologies including genomic analysis, biomarker development, imaging techniques, and international collaborative studies to advance understanding and treatment of these conditions. Professor Reilly has received significant recognition for her work: Elected Fellow of the Academy of Medical Sciences (2020) Awarded Fellow of the European Academy of Neurology (2023) Past President of the Association of British Neurologists (ABN) Past President of the British Peripheral Nerve Society (BPNS) Past President of the international Peripheral Nerve Society (PNS) Current chair of the Guarantors of Brain Professor Reilly has made substantial contributions to education and mentorship in the field. As Director of Training in the inherited neuropathy consortium (INC), she developed and runs an international inherited neuropathy fellowship scheme since 2009, with 14 fellows completed. She established and directed an international fellowship program through the International Centre for Genomic Medicine in Neuromuscular Diseases (ICGNDM) between 2019-2024, connecting institutions across UK, Brazil, India, South Africa, Zambia and Turkey. She also successfully ran the MRC Neuromuscular PhD programme between 2008 and 2018, mentoring 39 students. She leads the MRC Centre for Neuromuscular Diseases Biobank London, which plays a crucial role in advancing research on rare and neuromuscular diseases through the collection and analysis of biological samples.
Russell Richardson is a tenured Professor at the University of Utah , holding joint appointments in the Department of Internal Medicine (Division of Geriatrics) and the Department of Exercise and Sport Science . He directs the Utah Vascular Research Laboratory (UVRL) at the Salt Lake VA Medical Center. Education: Fellowship (University of California San Diego), Doctoral Training (University of Utah), PhD (Colorado State University), MS (Loughborough University), PGCE (West London Institute of Higher Education) His research focuses on oxygen transport from air to tissue , with a current emphasis on the link between vascular and skeletal muscle function , particularly how oxidative stress regulates skeletal muscle metabolism and vascular control. He has authored numerous studies on aging, vascular dysfunction, and exercise hemodynamics. Recent publications highlight work on mitochondrial respiration, passive limb movement techniques, antioxidant interventions, and age-related vascular decline. His lab employs both in vivo and ex vivo methodologies to investigate these mechanisms. Collaborations span clinical and physiological domains, including studies in chronic obstructive pulmonary disease (COPD), heart failure, and breast cancer. His work integrates gerontology , exercise physiology , and vascular biology . Notable affiliations include the Salt Lake VA Medical Center and contributions to understanding the interplay between physical activity, aging, and vascular plasticity.