Results 211 to 220 of about 3,192,615 (314)
Analgesic efficacy of inferior alveolar nerve block for mandibular fracture surgeries: A prospective case series [PDF]
Pinal Raj Bumiya +5 more
openalex +1 more source
This study presents a microfluidic brain microvascular network‐on‐chip (BMVasChip) to investigate endothelial barrier dysfunction caused by flavivirus non‐structural protein 1 (NS1), including virus‐ and time‐dependent vascular damage, leakiness, and dysfunction.
Monika Rajput +5 more
wiley +1 more source
Simulated-based training for ultrasound-guided popliteal sciatic nerve block: determining the learning curve and transference to real patient. [PDF]
Miranda PF +6 more
europepmc +1 more source
Nanodiamond‐Infused Microgels for pH‐Tunable Rheology, Lubrication, and UV Protection
Microgels consisting of swollen polyacrylic acid polymer networks, impregnated with nanodiamonds provide protection from ultraviolet (UV) radiation harmful to human health. Nanodiamonds enable UV blockage and control of the rheology (flow) and lubrication (skin‐feel) of these microgel‐skincare‐mimics.
Pallav K. Jani +10 more
wiley +1 more source
Entangled Multistable Origami with Reprogrammable Stiffness Amplification and Damping
This study introduces a class of origami‐inspired metamaterials that overcome the limitations of existing multistable metamaterials by eliminating the need for rigid lateral confinements. Panel entanglement, snap‐through interactions, and instabilities synergy enable them to achieve extensive shape‐shifting, enhanced stiffness, and remarkable energy ...
Amin Jamalimehr +2 more
wiley +1 more source
Effects of single femoral nerve block and continuous femoral nerve block on perioperative analgesia and muscle strength in elderly patients undergoing total knee arthroplasty, a randomized clinical trial. [PDF]
Tao Y, Cai N, Zhang J, Zhou Y, Liu P.
europepmc +1 more source
Transducer Materials Mediated Deep Brain Stimulation in Neurological Disorders
This review discusses advanced transducer materials for improving deep brain stimulation (DBS) in neurological disorders. These materials respond to light, ultrasound, or magnetic fields, enabling precise, less invasive neuromodulation. Their stimulus‐responsive properties enhance neural control and adaptive therapy, paving the way for next‐generation ...
Di Zhao +5 more
wiley +1 more source

