Patent classifications
A61G7/008
Synchronized patient elevation and positioning apparatus for use with patient positioning support systems
An apparatus for transferring a supine patient to a prone position on a patient support structure, and for rotating such a prone patient between prone and supine positions without removing the patient from the patient support structure.
Synchronized patient elevation and positioning apparatus for use with patient positioning support systems
An apparatus for transferring a supine patient to a prone position on a patient support structure, and for rotating such a prone patient between prone and supine positions without removing the patient from the patient support structure.
FAIL-SAFE RELEASE MECHANISM FOR USE WITH PATIENT POSITIONING SUPPORT APPARATI
A fail-safe release mechanism for use with patient positioning support apparati having a base structure and a patient support structure, to prevent collapse of the patient support during disconnection of the patient support structure from the base structure.
FAIL-SAFE RELEASE MECHANISM FOR USE WITH PATIENT POSITIONING SUPPORT APPARATI
A fail-safe release mechanism for use with patient positioning support apparati having a base structure and a patient support structure, to prevent collapse of the patient support during disconnection of the patient support structure from the base structure.
ROTATION LOCKOUT FOR SURGICAL SUPPORT
Devices, systems, and methods for patient support include arrangement of a patient support top for rotation and a rotation lockout assembly for selectively blocking against rotation of the patient support top.
ROTATION LOCKOUT FOR SURGICAL SUPPORT
Devices, systems, and methods for patient support include arrangement of a patient support top for rotation and a rotation lockout assembly for selectively blocking against rotation of the patient support top.
PERSON SUPPORT SURFACES INCLUDING SET BY PREVIEW FUNCTION FOR CONTINUOUS LATERAL ROTATION THERAPY
A person support apparatus including a person support surface including an actuating device and a controller configured to operate the actuating device to perform a set by preview subroutine and a rotation preview subroutine, wherein, during the set by preview subroutine, the controller receives user input positioning the actuating device into a first preview position and sets the first preview position as a first evaluation position, and wherein, during the set by preview subroutine, the controller receives user input positioning the actuating device into a second preview position and sets the second preview position as a second evaluation position. In embodiments, the controller is configured to simultaneously perform a P&V subroutine during rotation of the person support surface.
SURGICAL ROBOTICS SYSTEM
A surgical robotics system with robotic arms is configurable to perform a variety of surgical procedures. The surgical robotics system can include a table, column, base, and robotic arms that are either column-mounted, rail-mounted, or mounted on a separate unit. In a column-mounted configuration, the column can include column rings that translate vertically and rotate about the column. The robotic arms are attached to the column rings. In a rail-mounted configuration, the base can include base rails that translate along the base. The robotic arms are attached to the base rails. In both configurations, the robotic arms can move independently from each other and include multiple arm segments. Each arm segment can provide an additional degree of freedom to the robotic arm. Thus, the surgical robotics system may position the robotic arms into numerous configurations to access different parts of a patient's body.
SURGICAL ROBOTICS SYSTEM
A surgical robotics system with robotic arms is configurable to perform a variety of surgical procedures. The surgical robotics system can include a table, column, base, and robotic arms that are either column-mounted, rail-mounted, or mounted on a separate unit. In a column-mounted configuration, the column can include column rings that translate vertically and rotate about the column. The robotic arms are attached to the column rings. In a rail-mounted configuration, the base can include base rails that translate along the base. The robotic arms are attached to the base rails. In both configurations, the robotic arms can move independently from each other and include multiple arm segments. Each arm segment can provide an additional degree of freedom to the robotic arm. Thus, the surgical robotics system may position the robotic arms into numerous configurations to access different parts of a patient's body.
Bed Base Frame
A bed base frame assembly of a bed generally comprises a base frame, a plurality of steerable and lockable casters, a lateral support assembly at the first and second sides of the base frame assembly, and an in-line support assembly at the foot end of the base frame assembly. The lateral support assembly may further include: a base frame; a first leg and a second leg rotatably connected to the base frame; a first actuator connected to the first leg and the second leg, wherein the first leg and the second leg rotate from the retracted position to the extended position; a third leg and a fourth leg rotatably connected to the base frame; and a second actuator connected to the third leg and the fourth leg, wherein the third leg and the fourth leg rotate from the retracted position to the extended position.