School of Medicine
Showing 3,061-3,070 of 5,031 Results
-
Garret K. Morris, MD
Clinical Assistant Professor, Anesthesiology, Perioperative and Pain Medicine
BioDr. Morris is a board-certified, fellowship-trained anesthesiologist with a clinical focus on pain medicine. He is also a clinical assistant professor in the Division of Pain Medicine of the Department of Anesthesiology, Perioperative, and Pain Medicine at Stanford University School of Medicine. Dr. Morris has expertise in chronic pain management, inpatient pain management, spine care, and functional restoration.
He treats a wide range of pain conditions including musculoskeletal, neuropathic, visceral and mixed. With each patient in his care, Dr. Morris’ objective is to alleviate suffering using the treatment approach that is most likely to maximize effectiveness and minimize risk. The focus is on using the least invasive interventions possible to improve each individual’s function and quality of life.
To help achieve these goals, Dr. Morris takes a holistic approach encompassing six domains of pain management: pharmacological, interventional, behavioral/psychological, physical rehabilitative, alternative and complementary therapies, and self-management. Often this approach requires a multidisciplinary team of diverse professionals with Dr. Morris overseeing care planning, implementation, and follow-up. This is especially helpful for challenging cases, where a collaborative team-based approach affords greater potential for superior outcomes.
Dr. Morris communicates closely with referring physicians to devise holistic pain management that fits holistically into each patient’s comprehensive care plan.
Dr. Morris has authored articles and reviews in publications including Anesthesiology, Regional Anesthesia and Pain Medicine, American Society for Artificial Organs Journal, Cancer Detection and Prevention, and the Journal of Orthopedics & Sports Physical Therapy. He also has contributed the chapter “Occipital Nerve Block” in the textbook Comprehensive Treatment of Chronic Pain by Medical, Interventional, and Behavioral Approaches published by the American Academy of Pain Medicine. In addition, Dr. Morris has contributed online content on postoperative pain relief to the electronic forum, The Stanford Anesthesia Informatics and Media Lab (AIM).
He has made presentations at conferences including the American Society of Anesthesiology Annual Meeting and the Annual Rochester (New York) Regional Anesthesia Symposium. He also has delivered invited lectures, most recently on interventional techniques for the treatment of spinal disorders as part of the Excellus Blue Cross Blue Shield Project.
Dr. Morris’ honors for clinical practice include awards from Advocate Illinois Masonic Medical Center. He has received recognition for his scholarship from the Dannemiller Memorial Education Foundation and Midwest Anesthesia Resident’s. -
Randall Morris
Professor (Research) of Cardiothoracic Surgery, Emeritus
Current Research and Scholarly InterestsDiscovery, preclinical and clinical development of novel immunosuppressive molecules for prevention or treatment of immune or inflammatory or ischemic injury to cell and organ transplants and for suppression of autoimmune diseases and acute organ injuries including small molecule, monoclonal and biologic classes of therapeutics.
-
Ashby Morrison
Professor of Biology
Current Research and Scholarly InterestsOur research interests are to elucidate the contribution of chromatin to mechanisms that promote genomic integrity.
-
Keith Morse
Clinical Associate Professor, Pediatrics
BioKeith Morse, MD, MBA, serves as the Chief Medical Informatics Officer (CMIO) for Stanford Medicine Children's Health. He practices clinically as a pediatric hospitalist and is the Program Director for Stanford's Clinical Informatics fellowship.
-
Michael Moseley
Professor of Radiology (Radiological Sciences Lab)
Current Research and Scholarly InterestsMR physics into tissue contrast mechanisms such as diffusion, perfusion, and functional imaging describes the research direction. Applications of cerebral stroke (brain attacks) and neurocognitive disorders are also being developed from these methods