Segmented base and dynamic locking resolve the mobility stability trade-off, enabling secure operation without sacrificing relocation ease.
A patient care transport assembly integrates articulating support sections and a powered base module for versatile positioning.
A connecting device uses a holding element to maintain the release mechanism in its triggered position for safe attachment removal.
Segmentation and dynamics principles enable a single polyurethane cradle to support multiple body parts while maintaining precise compression resilience.
A pivotable femoral support rotates about two axes to adjust patient leg positioning during orthopedic procedures.
Segmenting the deck from power sources eliminates bulky on-board components, simplifying handling and reducing transfer frequency.
Autonomous patient positioning system minimizes infection risks by replacing manual adjustments with robotic control.
A sterile limb connector uses a self-locking extension bar to position patient arms during surgery.
A modular multi-articulated patient support system uses independently adjustable upright columns and horizontal assemblies to position patients precisely.
Motorized radial arm board adjusts patient limb position via automated control panel for cardiac procedures.
A radiation detecting cassette uses wireless communication to eliminate physical cable obstructions during surgical procedures.
Contoured bracket arm accommodates protuberant abdomen while engaging bony prominences, reducing circulatory restrictions and enabling closer surgeon access.
A central coupling unit consolidates medical supply units and devices into a single interface.
Modular positioner system maintains consistent patient alignment, reducing manual repositioning effort and variability during anterior hip replacement.
An emulating computer system generates virtual sensor signals to allow an MRI scanner to operate with a non-dockable surgical table.
Portable photo-catalytic oxidation units positioned near patient beds reduce microbial loads by 54% via high-rate multi-pass air circulation.
Vertical locking arms attach infant supports to CT tabletops, preserving scanning area and easing installation.
Automated lift mechanism transfers patient care equipment between hospital beds and support structures, eliminating manual handling delays.
A post-surgical support member uses an aperture to isolate the wound from direct pressure.
A switching device uses multiple actuators and switch units to determine output signals via shared channels.