Adjustable support apparatus uses a ratchet mechanism to position patient platform ends independently via electric motor control.
Downstream particle sensor and control unit maintain sterile conditions by adjusting airflow velocity to prevent infections.
An articulated robotic arm translates a patient placement table 200 mm away from an imaging position to create space for medical staff.
A unified control handle merges propulsion and lift commands via directional force sensing, eliminating the need to switch between separate panels.
An L-shaped autopsy table with height adjustment eliminates manual lifting and reduces fluid spillage hazards.
A surgical table uses magnetic fixing to constrain horizontal movement while maintaining X-ray transparency for imaging.
Multi-axis gimbal rotation allows sterile intraoperative repositioning, reducing operative time and manual labor.
A curved guide track redirects a saddle's motion to prevent collision with the column head during pivoting, enabling full vertical adjustment.
A modular gantry bracket with an adjustable mast and crank arm supports surgical instruments.
Sliding grooves stabilize the head in this spinal equipment, enabling up-and-down shearing motions that correct cervical spondylosis malpositions.
A limb support coupler with a biased release mechanism enables multi-axis rotation and longitudinal adjustment of the surgical boot.
A bed controller manages vertical shifts to ensure safe receiving coil coupling and decoupling during patient transfer operations.
Internal cable routing via a guide and holder prevents damage and loop accumulation during height adjustment.
Swing units on head, body, and waist supports adapt to patient physiques while a single operator manages adjustments via mechanical linkages.
Frontal aperture in facial cushion routes camera lens beneath prone patient face, enabling continuous video observation without physical strain or safety risks.