Orthopaedic Surgery
Showing 161-180 of 221 Results
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James H Rhee
Clinical Assistant Professor, Orthopaedic Surgery
BioDr. Rhee is a physiatrist and a clinical assistant professor of physical medicine and rehabilitation. For patients with spine and musculoskeletal conditions, he focuses on providing exceptional care emphasizing minimally invasive solutions designed to optimize symptom managementand patient function.
Building on his background in engineering and on his specialized medical training and experience, Dr. Rhee welcomes opportunities to combine medical, mechanical, and interpersonal approaches to the diagnosis and treatment of each patient. He offers a full range of treatment modalities, including epidural steroid injection procedures, sacroiliac and facet joint injections, trigger point and soft tissue injections, orthopedic joint injections, and more. He also provides medial branch blocks and radiofrequency ablations, and performs electrodiagnostic studies.
Among the wide range of conditions that Dr. Rhee treats are bursitis, herniated discs, radiculopathy, sciatica, spinal stenosis, spondylolisthesis, and spondylosis. He also has treated many forms of joint and muscle pain: facet joint, back, neck, hip, and sacroiliac joint pain.
Dr. Rhee’s experience encompasses short-term and long-term care for both acute and chronic conditions, including musculoskeletal injuries, spinal problems, mixed spine-neck and spine-shoulder disorders, and peripheral damage. Many of the cases he treats are injury-related, while a significant number of others are associated with aging. Another portion of his patient population presents with conditions stemming from developmental anomalies.
Prior to joining Stanford Health Care, Dr. Rhee was in private practice in the Bay Area. Previously, he also served in the US Army as a troop medical clinic officer-in-charge and as a brigade surgeon.
Dr. Rhee is board certified by the American Board of Physical Medicine and Rehabilitation. He is a fellow of the American Academy of Physical Medicine and Rehabilitation and a member of the American Society of Interventional Pain Physicians, North American Spine Society, and Spine Intervention Society. -
Joshua Richards
Clinical Assistant Professor, Orthopaedic Surgery
BioDr. Richards is board certified in Orthopedic Surgery and has a Certified Additional Qualification for Hand and Upper Extremity Surgery. For over 15 years he has specialized in the treatment of ligamentous, joint, tendon, nerve and bone injuries of the Hand, Elbow, Wrist and Shoulder.
He has served the Bay Area community as a UCSF Assistant Professor as a volunteer educator at San Francisco General Hospital, by teaching and treating complex trauma at the Alameda County Level One Trauma Center-Highland Hospital, and through various volunteer roles on athletic fields around the Bay.
Dr. Richards obtained his Bachelors Degree in Neurobiology at Cornell University, his Masters of Public Health at the Columbia University, and his Medical Degree at New York Medical College.
He completed his residency in orthopedic surgery at the San Francisco Orthopedic Residency Program. He then returned to Cornell University’s Hospital for Special Surgery to complete his fellowship training in hand, upper extremity, and microvascular surgery.
Until joining Stanford in 2023, he had been in private practice in the East Bay since 2006. He has volunteered locally in a variety of organizations and internationally on several continents. -
Lawrence Rinsky
Professor (Clinical) of Orthopaedic Surgery, Emeritus
Current Research and Scholarly InterestsThe primary subjects of my research interests over the past ten years have been clinical reviews of series of patients with a variety of pediatric orthopaedic treatable conditions. These have included neuromuscular scoliosis, developmental dislocation of the hip, and deformities in cerebral palsy.
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Joshua Daniel Rittenberg, MD
Clinical Associate Professor, Orthopaedic Surgery
BioDr. Rittenberg is a board-certified, fellowship-trained physiatrist with more than 20 years of experience specializing in rehabilitative and interventional spine care. He is a Clinical Associate Professor in the Department of Orthopaedic Surgery, Division of Physical Medicine & Rehabilitation.
In his clinical practice, Dr. Rittenberg provides expert care for painful spine disorders. He excels at interventional pain management and has extensive experience in a variety of spinal disorders, including sports-related spine injuries
Prior to joining Stanford, he was co-chair of the Physical Medicine and Rehabilitation Department for Kaiser Northern California. Additionally, he spent 10 years at the Rehabilitation Institute of Chicago, where he served as Medical Director of Musculoskeletal and Spine Procedures at the Spine and Sports Rehabilitation Center. He was a consultant in the Northwestern Medical Faculty Foundation Department of Orthopedic Surgery and an Associate Professor in the Department of Physical Medicine and Rehabilitation at Northwestern University Feinberg School of Medicine.
Dr. Rittenberg excels at the diagnosis and treatment of disorders involving the spine. He delivers state-of-the-art treatment for pain, emphasizing non-operative and minimally invasive approaches.
For each patient, he prepares a personalized plan of care designed to be both comprehensive and compassionate. In every case, his goals are to relieve symptoms and enable the best possible quality of life.
Dr. Rittenberg lectures nationally and internationally, has chaired numerous continuing education courses for physicians, and has published original research, review articles, and book chapters in the areas of interventional and rehabilitative spine care.
He has volunteered and held leadership positions in the American Academy of Physical Medicine and Rehabilitation, the North American Spine Society, and the International Pain and Spine Intervention Society. He is the current President of the International Pain and Spine Intervention Society(IPSIS).
Dr. Rittenberg has earned honors and recognition for his achievements. They include being named to the Healthgrades Honor Roll and recognized as a regional top doctor by Castle Connolly, the research and information resource for health care consumers. -
Eugene Y. Roh, MD
Clinical Professor, Orthopaedic Surgery
Current Research and Scholarly InterestsTherapeutic Efficacy of biologic treatments(Platelet Rich Plasma, adipose, mfat, bone marrow, stem cell) in OA and tendonitis
Application of musculoskeletal ultrasound for sports medicine and other musculoskeletal disease.
AI-based musculoskeletal diagnosis and treatment in sports, OA and tendinitis -
Jessica Rose
Professor of Orthopaedic Surgery
Current Research and Scholarly InterestsDr. Rose's research investigates neuromuscular mechanisms underlying cerebral palsy (CP) and early brain and motor development in preterm children. Research examines gait biomechanics as well as neonatal brain microstructure on DTI, physiology and motor function in CP. Dr. Rose served on NIH Taskforce on Childhood Motor Disorders, AACPDM Research Committee, NIH Steering Committee on CDE for CP neuroimaging diagnostics, BOD of SBMT and serves on the IAACD Research Committee.
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Marc R. Safran, MD
Professor of Orthopaedic Surgery
Current Research and Scholarly InterestsDr. Safrans practice focuses on arthroscopic management of hip problems as well as articular cartilage regeneration, shoulder surgery and athletic shoulder and elbow problems. He is actively involved in research in these areas.
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Aaron Keith Salyapongse
Clinical Associate Professor, Orthopaedic Surgery
BioDr. Salyapongse is a board-certified, fellowship-trained orthopaedic surgeon. He is the medical director of Interventional Services, medical director of Joint Replacement, and chief of Orthopaedics for Stanford Health Care Tri-Valley. He is also a clinical associate professor at Stanford University School of Medicine.
Dr. Salyapongse performs the full range of orthopaedic surgery procedures to treat injuries and conditions related to the hip and knee. He has extensive training and experience in the diagnosis and use of advanced treatment techniques for disorders of the hip and knee, including meniscus tears, arthritis, avascular necrosis, and post-traumatic injuries.
Dr. Salyapongse does hundreds of knee and hip replacements annually. His goal with each patient is to help them recover quickly and safely, with durable, long-lasting joint replacements as a result. He specializes in tissuesparing techniques, including an anterior approach to hip replacement.
Dr. Salyapongse is a certified instructor of anterior hip replacement. He has performed more than 2,000 procedures and traveled nationwide to teach it to other surgeons. Anterior hip replacement offers the potential for faster recovery, as it involves a small incision that presents less of a disruption to the muscles. Dr. Salyapongse also specializes in techniques such as Anterior PATH, or percutaneous assisted total hip replacements.
For knee replacements, Dr. Salyapongse uses a variety of techniques, including robotic surgery. He also specializes in partial knee replacements for patients who may be experiencing arthritis in a localized area but who might not be ready for a full replacement. Partial replacements enable patients to have a faster recovery and a more natural feeling knee post-surgery.
Dr. Salyapongse welcomes referrals from specialists as well as primary care physicians. He sees patients at every stage of their care journey, but especially when their situation has progressed beyond interim interventions like physical therapy or injections. He views each of his patients as an individual with a unique set of goals and tailors each treatment plan to fit their specific needs. While Dr. Salyapongse will help patients first explore the alternatives, he may recommend surgery once activities of daily living
(like sleep, work, or gait pattern) have been impacted.
In an effort to make outpatient care more accessible, Dr. Salyapongse has helped to pioneer the use of digital technology to prepare patients before, during, and after hip and knee surgery. His passion is to improve patient engagement and thus outcomes by letting patients know what they can expect at every stage of their care journey.
Dr. Salyapongse has co-authored articles on a variety of topics related to techniques, technologies, and outcomes in joint replacement surgery. His work has appeared in the American Journal of Orthopaedics, Journal of Arthroplasty, Current Sports Medicine Reports, and other publications.
He has made presentations on hip and knee replacement planning and surgery at meetings such as the American Association of Hip and Knee Surgeons, American Academy of Orthopaedic Surgeons, and Western Orthopaedic Association.
Dr. Salyapongse has won honors for his work, such as a Physician Champion Award for outstanding patient care. He is a member of the American Academy of Hip and Knee Surgeons and the American Academy of Orthopaedic Surgeons. -
Kevin Shea
Chambers-Okamura Endowed Professor of Pediatric Orthopaedics
BioKevin G. Shea, MD is at Stanford University. He grew up in Montana and California, graduated from the University of Notre Dame, UCLA School of Medicine, and completed his orthopaedic residency at the University of Utah. His advanced training includes pediatric orthopaedics at Rady Children’s Hospital in San Diego, AO Fellowship in Bern Switzerland with Dr. Ganz (Hip), Dr. Diego Fernandez (Trauma), and Dr. Hans Staubli (sports), Ilizarov Training in Lecco, Italy. He has done the AOSSM South American Traveling Sports Medicine Fellowship, and education in Russia and former Soviet Bloc countries. Most of his early career was in Boise, Idaho.
Dr. Shea is a founding member of the PRISM Society (Pediatric Research in Sports Medicine) and the ROCK (Research in Osteochondritis Dissecans of the Knee) Multi-center Study Group, and the SCORE (Sports Cohort Outcomes Research ) Multi-Center Registry for pediatric sports. He has authored more than 300 scientific papers and chapters. His clinic research interests include cartilage and ligament disorders, using pediatric cadaveric tissue and surgical 3D simulations to develop surgeries and improve outcomes for procedures that avoid damage to growth plates. His research in cartilage disease and osteochondritis dissecans, along with the ROCK Multi-center Research Group was awarded the 2026 American Academy of Orthopedic Surgery (AAOS) highest research award, Improving Musculoskeletal Patient Care Through Outcomes Research (IMPACT)
He has years of experience with performance, quality improvement, value, and he worked extensively with the AAOS Quality/Clinical Practice Guideline Committees. He is one of the POSNA members to launch the POSNA Safe Surgery Program. He is a national quality leader in health care with interests in patient safety, risk reduction, and improving value in health care with clinician integration into supply chain and has won awards for patient quality improvement and value optimization projects. He serves as a medical director for supply chain at Stanford, and co-chairs the value based management and cost savings reinvestments program at Stanford Packard Childrens. He is an avid cyclist, trail runner, hiker, and spends as much time outside as possible, with his partner Lonnie and their children Beck and Cooper. -
Seth Lawrence Sherman, MD
Associate Professor of Orthopaedic Surgery
Current Research and Scholarly InterestsMy research focuses on ways to augment tissue healing, improve human performance, and prevent musculoskeletal injuries. Approaching these challenges through parallel basic science and clinical pathways, our team works from the “bedside to the bench and back to the bedside”, identifying areas of clinical need to deliver evidence-based solutions for patients.
We collaborates with orthopaedic surgeons, non-surgical physicians, and researchers within bioengineering, human performance, and musculoskeletal imaging across the Stanford campus. The team is developing novel methods to accurately record human movement (including wearable technology, phone-based systems), rapid MRI imaging protocols, and exploring the use of biomarkers to track injury and recovery. This research builds on my earlier work, which utilized portable, inexpensive software for Microsoft Kinect to detect knee injury risk in youth athletes performing a drop vertical jump test. The team’s multifaceted goal is: 1) develop innovative methods to screen for injury risk (i.e. youth athlete non-contact ACL), 2) create targeted intervention programs to reduce risk, 3) enhance athletic performance; and 4) improve accuracy of return to play testing following injury/surgery (i.e. clinical evaluation, biomarkers, functional tests, imaging analysis for healing).
In the laboratory,our team investigates cellular and molecular deficiencies in tissue types including tendon, ligament, articular cartilage, and meniscus. By understanding aberrant pathways leading to tissue injury, they can identify innovative therapeutic targets for intervention. In collaboration with the Genetic Engineering and Synthetic Biology laboratories, Dr. Sherman’s research has explored the role of orthobiologic agents such as platelet rich plasma (PRP) and bone marrow aspirate concentrate (BMAC) for tissue healing in patella tendinopathy (the breakdown of collagen in a tendon). Our lab is also investigating the use of CBD for musculoskeletal applications as an alternative to commonly used local anesthetics and cortisone derivatives. In my earlier work, we researched the cellular toxicity of such applications.
In addition to basic science research, I have helped to build a Sports Medicine clinical research team that includes several full-time clinical research coordinators, residents, fellows, and students. The team collects prospective outcomes on their patients using a novel data collection platform called Patient IQ. The group is part of the JUPITER study which is the largest, multicenter study ever assembled in patellofemoral instability. They are additionally planning to enroll in FDA-approved clinical studies investigating pioneering strategies for knee cartilage restoration, joint preservation, and orthobiologic injections for osteoarthritis. Recent clinical publications explore outcomes in meniscus preservation and transplantation, medial patellofemoral ligament reconstruction, osteochondral allograft and matrix-induced autologous chondrocyte implantation (MACI), and surgical augmentation using PRP/BMAC. The clinical research team actively reports results of non-surgical and surgical interventions to continue to introduce new knowledge to the field, with the goal of improved patient outcome.