Professor of Neurology and Neurosurgery, Maarten Lansberg, MD, PhD The Collins biomechatronics lab develops wearable robots and exoskeletons that improve mobility for individuals whose strength and coordination have been affected by stroke, amputation, or aging. Non-invasive PET imaging of these biochemical processes in living, intact, subjects may lead to an enhanced understanding of a range of brain disorders (including Alzheimer’s disease, multiple sclerosis, and brain injury), ultimately generating effective diagnostic techniques and treatment strategies. Dr. Henderson is Professor in the Departments of Health Research & Policy (Epidemiology) and Neurology & Neurological Sciences.  He directs the graduate program in epidemiology and clinical research.  Dr. Henderson is principal investigator for the NIH Stanford Alzheimer’s Disease Research Center, whose focus is neurodegenerative processes implicated in Alzheimer’s disease and Parkinson’s disease, innovative tools for diagnosis, and new approaches to therapy.  His research interests in the areas of geriatric neurology and neuroepidemiology emphasize risk factors for cognitive aging and Alzheimer’s disease, and therapeutic strategies to maintain and improve cognitive abilities affected by age. To do this, he combines external perturbation of brain circuitry using transcranial magnetic stimulation (TMS) while imaging the consequences with concurrent fMRI or EEG. As the Associate Director of the NIRS Lab at CIBSR, one of his interests is to employ NIRS as a potential cost-effective biomarker for monitoring functional stroke recovery.Â. Photo by L.A. Cicero: Dr. Gary Steinberg. The Stanford Stroke Recovery Program is dedicated to improving the function and quality of life of stroke survivors.  With grant funding from the Stanford Neurosciences Institute, the Program has brought together world-renowned scientists from a wide variety of disciplines, including stroke neurology, neurosurgery, neuroscience, mechanical, electrical, and bio-engineering, systems and molecular neuroscience, imaging/radiology, neuroimmunology, and genetics. Doctors, Clinics & Locations, Conditions & Treatments, View All Information for Patients & Visitors », Physicians such as a neurologist (a physician who treats conditions of the nervous system such as stroke) and physiatrist (a physician who specializes in physical medicine and rehabilitation), Psychologists, neuropsychologists, and psychiatrists. Dr. Delp and his collaborators in the Neuromuscular Biomechanics lab (NMBL) use their expertise in biomechanics, computer science, imaging, robotics, and neuroscience to analyze muscle function, study human movement, design medical technologies, and optimize human performance.  His team has measured the movement dynamics of thousands of individuals with movement disorders, and has developed realistic computer simulations to gain insight into the causes of abnormal movement and design methods to improve movement through surgery or robotic assistance. Get the iPhone MyHealth app » Treatment for stroke is very limited, and potential new therapies are focusing on promoting brain repair and plasticity, as they offer a longer therapeutic time window than the current U.S. Food and Drug Administration approved drug. COVID-19 Updates:      What We're Doing to Keep You Safe »      COVID-19 Resources »       Updated Visitor Policy ». Phone: 650-723-6469.  The outpatient neurological rehabilitation program is based at Stanford Healthcare's state-of-the-art Neuroscience Health Center. Join Study. The Zhao lab studies the protective effects of ischemic postconditioning and the underlying protective mechanisms against stroke. and Ph.D. from Stanford, and trained at Johns Hopkins where he remained as faculty. The Steinberg laboratory investigates the pathophysiology of cerebral ischemia, develops neuroprotective agents, and employs novel approaches such as stem cell transplantation and optogenetic stimulation to enhance post-stroke functional recovery.  Â, Our multi-disciplinary team of scientists is constantly innovating to develop new treatments that will improve gait, arm function and cognition after stroke.  The medical innovations developed in our laboratories span a wide array, including immune-modulating therapies, stem-cell therapies, non-invasive brain stimulation (TMS), and medical devices developed by Stanford engineers.  Being located in the center of Silicon Valley, the worlds most well-known hub for technological innovation, the Program has also established ties with multiple start-up companies that have developed innovative technologies to help patients recover from stroke. Paralysis (inability to move some parts of the body), weakness, or both on one side of the body. Ischemic strokes are the most common type of strokes and occur when a clot blocks the flow of blood to the brain. Brain stimulation strategies are particularly promising … Department of Neurosurgery and Stanford Stroke Center, Stanford University School of Medicine, Stanford, California 94305, United . The Etkin Lab strives to understand the neural basis of emotional disorders and their treatment, and to leverage this knowledge to develop novel treatment interventions. His early papers in 1990 were the first to suggest that DWI and contrast-enhanced PWI are useful for detection of early cerebral ischemia and in tumor depiction. Get a Free Rehab Exercise Ebook (14 page … The high kinetic and energetic stability of the post-recovery stroke conformation favors preferential binding of the detached head to a forward site 72 nm away. Researchers like Buckwalter and her colleague Maarten Lansberg, MD, PhD, an associate professor of neurology and neurological sciences, are working on how to prevent dementia in stroke survivors, nearly half of whom develop the condition in the first decade after a stroke. I am the co-principal investigator of the Stanford Regional Coordinating Center (RCC) for StrokeNet, an NINDS-funded network of 25 RCCs that is responsible for conducting all major NINDS-funded stroke trials. Based at Stanford University, the Program is uniquely positioned to bridge the barriers between neuroscience, engineering, and clinical research, to develop new therapies for stroke survivors. Main Content. Since TSPO expression reflects microglial activation and neuroinflammation, radioligands for this protein may act as valuable tools for detecting regions of active brain disease before clinical signs manifest. In 2015, the pair launched what is now the Stanford Stroke Recovery Program to remove barriers between engineering, medicine and basic science researchers to improve long-term stroke recovery. Support teaching, research, and patient care. So the Stanford researchers intend to test the drug in other animal models, as well as to experiment with different dose sizes and timing, before proceeding to clinical trials. Stanford Medicine News Center - December 18th, 2015 - by Bruce Goldman Mice that had strokes rebounded significantly faster if they received low doses of a popular sleeping aid, according to researchers at the Stanford University School of Medicine. Conditions Treated. Services available at the Stanford Stroke Center include: Non-surgical treatments for stroke prevention Stanford StrokeNet: Regional Stroke Trials Coordinating Center . Dr. Greicius is an Associate Professor in the Department of Neurology and Neurological Sciences at the Stanford University School of Medicine. Functional recovery can occur after stroke, and strategies such as direct brain stimulations that promote recovery are promising. He has published numerous articles and books about epilepsy. Program, gHoward Hughes Medical Institute, and bStanford Stroke Center, Stanford University School of Medicine, Stanford, CA 94305 Edited by Anders Bjorklund, Lund University, Lund, Sweden, and approved July 17, 2014 (received for review March 3, 2014) Clinical and research efforts have focused on promoting functional recovery after stroke. The Stanford Stroke Center is a pioneer in using the latest surgical techniques and innovative therapies to rapidly treat individuals experiencing a stroke. Importantly, focal brain damage can affect neural functioning within and between distinct brain networks implicated in the damage. He has had a leading role in the testing of devices that can detect or treat seizures, including deep brain stimulation, focal drug infusion, seizure notification accelerometers and biosensor. stroke treatment, Types In 2015, the pair launched what is now the Stanford Stroke Recovery Program to remove barriers between engineering, medicine and basic science researchers to improve long-term stroke recovery. Stanford Health Care cut half an hour off its stroke treatment time, helping patients. Dr. Matthew Smuck is the Chief of PM&R, Associate Professor in the Department of Orthopaedic Surgery and Medical Director of Rehabilitation Services for Stanford Healthcare. Dr. Lee completed her pediatric neurology residency at Stanford in 2015 then joined the Stanford Stroke Center as a vascular neurology fellow.  Following her fellowship she began a faculty position at Stroke Center as an Assistant Professor.  Dr. Lee is board-certified in neurology with special qualification in child neurology, and attends on both the adult stroke service as well as the pediatric neurology service.  Dr. Lee is the Associate Director of the Stroke Center’s Telestroke Program. P… He also helped publish the first papers on blood pool contrast agents in 1985 and was the first to show in 1989 that mapping white matter fiber orientation using diffusion MR imaging is a novel measure of neuroimaging and now later as a means of mapping clinical cognitive performance in events such as stroke. The George lab applies bioengineering approaches to explore neurological disorders with a particular focus in utilizing interactive biomaterials to promote neural recovery. So the Stanford researchers intend to test the drug in other animal models, as well as to experiment with different dose sizes and timing, before proceeding to clinical trials. Meyerson, who has aphasia — a side effect of a stroke that can affect the ability to speak or comprehend language — had to give up her position as a tenured professor, but she still works at Stanford as an adjunct professor, conducting research on the experience of stroke survivors in the rehabilitation process. Dr. Fisher received his M.D. We use combinations of electrophysiological, anatomical and pharmacological approaches. Based on these results, we entered into a clinical trial and successfully translated our earlier findings to high-performance neural prostheses with human participants. Their interests include minimally invasive surgery/ percutaneous interventions and robots to enable neuroscience research/rehabilitation. Some stroke survivors, particularly young ones, do recover well, and we believe Stanford is the right institution to challenge the defeatist assessment that this is not possible for all stroke survivors. Under his guidance, the Stroke Center has trained more than 40 clinical stroke specialists; many of these individuals are directing stroke centers at academic institutions thoughout the country.Â, The Angst Laboratory’s transformative research efforts focus on immune health in the context of surgery and trauma. Dr. Aghaeepour is an expert in analysis of multi-dimensional data sets with training in computer science, artificial intelligence, and machine learning. April 4, 2019 Stanford, Georgia Tech researchers build a glove to treat symptoms of stroke. Disclaimer: Our stroke support group registry includes groups that are independent of American Stroke Association. My Ph.D. was focused on the design and development of novel PET radioligands for imaging the translocator protein (18kDa) (TSPO). These radioligands may also be used to track disease progression and monitor response to novel therapeutics. Michael Moseley is a neuroradiologist and scientist. … Hadi Hosseini is a computational/cognitive neuroscientist investigating large-scale structural and functional brain networks in various neurological and psychiatric conditions using multimodal neuroimaging, graph theoretical and multivariate pattern analyses techniques. Electronic address: gsteinberg@stanford.edu. If you are interested in being contacted about such studies, please mention it in your email along with your contact information and availability. The Steinberg Lab is investigating the molecular and cellular mechanisms of cerebral injury after ischemia, developing neuroprotective agents including hypothermia to reduce stroke damage, employing novel approaches such as stem cell transplantation and optogenetic stimulation to enhance functional recovery after stroke, and elucidating the genetic basis for intracranial aneurysms, vascular malformations and moyamoya disease. Her lab focuses on exploring the … He has invented new methods for defining the shapes of RNA and DNA genome-wide. The Etkin Lab strives to understand the neural basis of emotional disorders and their treatment, and to leverage this knowledge to develop novel treatment interventions. The stroke rehabilitation team revolves around the patient and family, and helps set short- and long-term treatment goals for recovery. His research focuses on developing analytical pipelines from highly complex datasets, with the goal of distilling biological meaning and producing direct clinical impact. The Andreasson lab is interested in understanding the mechanisms by which neuroinflammation elicits synaptic and neuronal injury in chronic and acute models of neurological disease. Stanford Health Care’s nationally-recognized Comprehensive Stroke Program provides comprehensive care and treatment for stroke. Stanford Stroke Center beats national stroke treatment times. He directs the Wearable Health Lab at Stanford, investigating medical applications of mobile technology to improve musculoskeletal and neurologic disease detection, treatment and prevention. A graduate of Harvard School of Medicine, Dr. Steinman has been on the Stanford faculty since 1980. Conditions Treated  Your participation in these trials will help us develop new rehabilitation therapies for future stroke victims. Stanford Medicine. These systems interface with the brain and use mathematical models to control computer cursors and robotic arms. Palo Alto, CA 94304. Dr. George joined the Stanford Stroke Center in 2012 to complete his Vascular Neurology fellowship and has remained as an Assistant Professor.  His clinical and research interests are centered on acute stroke and stroke recovery.  He cares for hemorrhagic and ischemic stroke patients in the inpatient and outpatient settings.  His research focuses on the application of novel biotechnologies to improve healing after stroke. Our research team has also pioneered the development and testing of stem cell treatments for stroke recovery, a yet unproven but promising … Stanford Neuroscience Health Center 213 Quarry Road Palo Alto, CA 94304 Phone: 650-723-6469 I am the director of Stanford’s Stroke Research Fellowship and co-director of Stanford’s Stroke Recovery Program. The Stanford Stroke Center has developed new ways to image the brain of patients suffering a stroke. While zolpidem dramatically improved mice’s rate of recovery from stroke, its ability to increase the extent of their recovery couldn’t be determined because, unlike humans, mice naturally regain most of their pre-stroke function eventually. She cares for critically ill patients with neurologic disorders in the intensive care unit and for patients with cerebrovascular disease in the inpatient stroke unit. While zolpidem dramatically improved mice’s rate of recovery from stroke, its ability to increase the extent of their recovery couldn’t be determined because, unlike humans, mice naturally regain most of their pre-stroke function eventually. Dr. My research is focused on developing and evaluating molecular imaging agents for visualizing neurological diseases in living subjects. My graduate work focused on the development of intracortical neural prostheses. She is particularly interested in how seizures may be a modifiable risk factor for later consequences after neonatal brain injury. Based at Stanford University, the Program is uniquely positioned to bridge the barriers between neuroscience, engineering, and clinical research, to develop new therapies for stroke survivors. Dr. Hirsch’s research focuses on novel imaging techniques such as functional brain imaging in patients with cardiac arrest and traumatic brain injury. Marion Buckwalter, MD, PhD, & Maarten Lansberg, MD, PhD, developed the Stroke Collaborative Action Network, or SCAN, which brings together clinical & research expertise from across the School of Medicine, Stanford Health Care & Stanford University, to understand the mechanisms of stroke recovery & develop new treatments. She completed a clinical internship in neuropsychology at the VA Ann Arbor Medical Center and a two-year post-doctoral fellowship in neuropsychology at the University of Michigan Healthcare System. He cares for hemorrhagic and ischemic stroke patients in the inpatient and outpatient settings. Many skilled professionals are part of the rehabilitation team, including any/all of the following: Stroke Rehabilitation Recent work has focused on sex-based differences in the genetic risk of Alzheimer’s disease.  He serves on editorial boards and scientific advisory boards, and he has authored more than 200 scientific articles and chapters. Here we review how selective stimulation of … The aim of this study is to investigate how resting state connectivity (rs-connectivity) within and between … Using high parameter single cell technologies (CyTOF) and proteomics approaches for the deep immune profiling of patients undergoing surgery, our research aims at identifying immune mechanisms (cell subsets and associated signaling pathways) that critically determine a patient's ability to heal and recover from surgical trauma. In particular, I am interested in imaging neuroinflammation, microglial activation, neurodegeneration, cognitive decline, and neurogenesis using positron emission tomography (PET). The George Lab works on combining stem cell therapeutics and novel polymers to enhance and improve stroke recovery. She specializes in the comprehensive rehabilitation of neurologic disorders and her practice is located within the Stanford Neurology Clinic. May 3, 2017: Stanford Health Care announced that it has been recertified by The Joint Commission as an Advanced Comprehensive Stroke Center, a prestigious designation reserved for institutions with specific abilities to receive and treat the most complex stroke cases. His lab is also interested in clarifying the roles of T lymphocytes in brain injury induced by stroke, as well as the differential roles of blood-derived macrophages and brain resident microglia in acute brain injury after stroke. Chang discovered a new class of genes, termed long noncoding RNAs, can control gene activity throughout the genome, illuminating a new layer of biological regulation. The Stanford Stroke Center is recognized as a world leader in clinical stroke research. To inquire about participating in one of our current or future stroke recovery trials, please contact us at: 650-723-8886 or strokerecovery@stanford.edu, Dr. Albers has been the Director of the Stanford Stroke Center since its inception in 1992. Stanford researchers are collaborating to develop a vibrating glove that could improve hand function following a stroke if worn for several hours … Dr. Henderson obtained his medical degree from Johns Hopkins and a master degree in epidemiology from the University of Washington School of Public Health.  He trained at Duke University (internal medicine), Washington University (neurology), and Boston University (behavioral neurology).  He has been a visiting scientist at the Massachusetts Institute of Technology, visiting professor at the University of Melbourne (Australia), and visiting professor at the University of Aarhus (Denmark). Our stroke recovery trials are designed to improve our understanding of how the brain recovers after stroke and to tests new treatments aimed at improving the lives of stroke survivors. The CHARM lab designs and studies haptic systems using both analytical and experimental approaches. 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