A patient support system lowers a treatment table into a floor cavity to achieve an ultra-low profile for easier access.
A motorized surgical table uses vertical lift columns to adjust patient height for spinal procedures.
A surgical boot uses a rotary lacing mechanism to apply clamping force on the patient limb.
A patient head support apparatus uses a deformable resilient insert to receive the face and maintain facial mask clearance during prone procedures.
Modular upper and lower support assemblies allow independent repositioning, eliminating time-consuming frame rotations during multi-stage procedures.
An eccentric lever actuator drives interlocking gear rings to replace friction-based gripping, resolving the trade-off between holding force and manual effort.
A bi-wing arm support apparatus with flexible wings and adhesive pads secures patient limbs on surgical tables.
A scoliosis correction table applies lateral compression and axial rotation to straighten the spine.
A portable physical medicine drop device uses powered actuators to lift padded elements for controlled spinal adjustments.
A spindle drive catch nut engages the spindle upon failure to trigger an emergency off switch.
Radiation-resistant light indicators guide operator alignment, eliminating manual measurement errors and reducing setup time in MR Linac systems.
A passive body mobilization device uses a programmable logic controller to drive a movable platform that displaces the user's axis for horizontal exercises.
Movable central articulation in a scissors-form lifting linkage tilts the upper part of a patient support apparatus.
A cadaver dissection station uses a ventilated tray and integrated drainage to manage fluids.
A movable MRI bed system uses an interlocking mechanism to manage mechanical and electrical connections between the platform and main body.
A foot-operated controller integrates a touchscreen to designate operating table functions directly at the device.
Segmented clamps and crossbars enable precise biomechanical alignment, resolving the trade-off between flexible adjustment and consistent stability.
A funeral identification bed uses a hinged door to conceal a rolling table within the frame.
A dual rack bar system driven by rotating gear wheels displaces the table top linearly relative to a base lifting element.
Segmented shell frames maintain thermoplastic mask rigidity while dynamic bases enable real-time positioning corrections without disconnecting the mask.