Stanford scientists have discovered novel high molecular weight isoforms of thymic stromal lymphopoietin (TSLP), measured using nanoimmunoassay (NIA), that can serve as a blood-based biomarker for the diagnosis and prognostication of acute graft versus host disease (aGVHD).
Stanford researchers in the CHARM Lab have developed a compact pneumatic control system for precise pressure modulation in for wearable, multi-device haptic systems and smart textiles.
Stanford researchers at the Chichilnisky lab have patented an artificial retina framework for dynamic electrical stimulation to improve the performance of electronic visual implants.
Stanford researchers have developed a first-to-market personalized surgical system that optimizes quadriceps tendon (QT) harvesting for ACL reconstruction.
Stanford researchers have developed a specialized bone graft delivery device that can efficiently transport and implant fragmented bone grafts or therapeutics into narrow bone tunnels without disintegration.
Stanford Medicine researchers in The Stuart Goodman Lab have developed a bone anchor system for surgical tracking that is easier to use and decreases complications caused by conventional knee or hip replacement bone pin anchors.
Stanford researchers have developed a mouth-cooling device that prevents or reduces the degree of oral mucositis (OM), a painful side effect of chemotherapy, radiotherapy, autoimmune conditions, and infections.
Oral mucositis (OM) is a painful side effect of chemoradiotherapy, especially in children and adolescents, with a high incidence rate of over 20%-40% and up to 90% in high risk patients.
Stanford scientists have discovered that a specific protein signaling pathway can promote regenerative wound healing by suppressing fibrosis-related mechanosignaling.
Stanford scientists have developed a novel Nerve Decompression Brace capable of decompressing mild nerve compressions, which relieves forearm pain, numbness, and tingling symptoms associated with repetitive strain injuries.
Stanford scientists have developed methods to analyze mononuclear phagocyte system markers for detecting prosthetic joint infections that evade conventional neutrophil-based diagnostics.