Self-contained geared motors detach from spatial frame struts to automate precise adjustments without cables or a central controller.
Switchable independent and coordinated clip-arm pivoting improves tissue alignment and clipping in narrow lumens and tangential endoscopic approaches.
Adjustable frame spacing and tensioning improve head stabilization during neurological imaging while minimizing MRI and CT artifacts.
An articulation input joint supplies pitch and yaw while an axial grounding joint limits translation, reducing unintended end-effector motion.
Parallel guide wires help prevent oblique screw insertion in minimally invasive chevron osteotomy, reducing bone weakening and radiation exposure.
An adjustable targeting device guides parallel screw insertion in minimally invasive foot surgery, reducing imaging and radiation exposure.
Offset lateral portions minimize outer dimensions while maintaining structural strength and fixation reliability.
Motor-driven skull clamp pins use sensors to control penetrating pressure, preventing fractures from manual adjustment errors.
A surgical guide adjusts drill bore orientation via a translating body and locking nut mechanism.
Trigger actuator adjusts skull clamp arms, eliminating the need for assistance during size adaptation.
Inflatable silicone cushions replace complex mechanical bite coordination, enabling precise head immobilization through pneumatic pressure adjustment.
Pivotable clamp elements on ring coupling members engage head frame supports to eliminate manual X-coordinate adjustments and reduce positioning time.