Flexible bristles on a clot-engaging structure improve clot capture while reducing fragmentation and vessel wall injury during retrieval.
Radially adjustable blades let one vertebral endplate shaver match varying surfaces, reducing tool swaps and improving decortication control.
A smooth ball tip and serrated ultrasonic surfaces remove foraminal bone precisely while helping protect nearby nerves and shorten surgery.
Static blades can require multiple instruments; radial height adjustment lets one shaver prepare vertebral endplates while remaining compatible with a cannula.
Subcutaneous abrasion reaches the lower dermis to stimulate collagen for stretch mark reduction.
A triangular pyramid ultrasonic osteotome bit uses segmented grinding faces to enhance bone removal speed and improve surgical visibility.
A skin abrading head uses vacuum-induced air flow to entrain and transport removed tissue particles away from the treatment surface.
Staircase-shaped treatment surfaces on an ultrasonic probe transmit high-frequency vibrations to cut biological tissue.
An integrated ultrasonic osteotome bit combines grinding and cutting functions into a single tool.
Ultrasonic vibration creates polygonal or elliptical bone holes matching tendon geometry, reducing bone volume loss and preventing expansion from joint fluid.
Optimized tooth pitch on a torsional dissection tip reduces heat generation during bone removal.
Toggle mechanism allows repeated opening and closing of the retrieval pouch to prevent spillage during endoscopic surgery.
Segmented handle design with finger indentations improves operation comfort while managing device complexity.
Internal shank channels route coolant to the cutting interface, preventing tissue necrosis from frictional heating.
Static casing sheaths ultrasonic horn with lubrication film to reduce friction, preventing thermal damage during bone cutting.
Indentations in the ultrasonic surgical blade create precise cutting edges, resolving cortical bone removal challenges while minimizing adjacent tissue damage.
A dual-joint system allows the surgical implement head to pivot 90° to 180°, resolving access limitations in confined tissue areas.
An abrading implement extracts exfoliated waste through a dedicated chamber, preventing residue accumulation and maintaining consistent friction.