A hemostatic device uses an auxiliary balloon to direct pressure from a second inflatable member against the ulnar artery.
A corrugated compression device increases intra-pelvic pressure to assist pneumatic tourniquets in controlling internal bleeding.
A plunger mechanism with a pressure pad applies focal force to compress bleeding vessels at central venous catheter sites.
A tourniquet belt integrates a windlass and retention strap within fabric pockets for rapid deployment.
Flexible biodegradable band with ratchet locking forms a flattened ring to bind organ stumps, preventing parenchymal injury from needle invasion.
Embedded sensors detect blood in the garment layers, triggering a microcontroller to drive a motorized spool that applies immediate limb compression.
An intermediary hazard suppressor detects hazardous user inputs on a touchscreen interface and interrupts power to maintain patient safety.
Battery powered tourniquet uses a universal cuff and microprocessor controlled pump to inflate inflatable components for limb occlusion.
A femoral compression system uses pulse detection to modulate pressure, preventing ischemia while ensuring hemostasis.
A compression belt with automated gas pressure control enables load-applied exercises using lighter weights to stimulate muscle growth.
Stabilizer prevents lateral shifting of overlapping cuffs to ensure consistent pressure on non-cylindrical limbs.
Segmented tourniquet applies radial compression to restrict blood flow, preventing tissue injury from uneven pressure.