An X-ray table supported above a base for use with a C-arm X-ray machine, including an X-ray permeable table surface. The table also includes at least two support members for supporting the table above the base with at least two support members and the base forming a substantially unobstructed middle area, a first one of at least two support members pivotally connected to the base, a second one of at least two support members being fixedly connected to the base, and an actuator for moving the table with two degrees of freedom. The actuator is pivotally connected to the table and fixedly connected to at least two support members.
A device 10 for aligning a patient for delivering a plurality of radiation beams comprising a patient support surface 12, a coarse alignment subsystem 14 connected to the patient support surface, and a fine alignment subsystem connected to the patient support surface 16. A method of aligning a patient for delivering a plurality of radiation beams from a plurality of device positions comprising compensating for flexion of a radiation beam delivery device within a gantry during movement of the radiation beam delivery device from a first device position to a second device position by using a set of predetermined data describing the flexion behavior of the radiation beam delivery device so that the target tissue within the patient is placed at the beamline center for the radiation beam delivery device at the second device position.
A device 10 for aligning a patient for delivering a plurality of radiation beams comprising a patient support surface 12, a coarse alignment subsystem 14 connected to the patient support surface, and a fine alignment subsystem connected to the patient support surface 16. A method of aligning a patient for delivering a plurality of radiation beams from a plurality of device positions comprising compensating for flexion of a radiation beam delivery device within a gantry during movement of the radiation beam delivery device from a first device position to a second device position by using a set of predetermined data describing the flexion behavior of the radiation beam delivery device so that the target tissue within the patient is placed at the beamline center for the radiation beam delivery device at the second device position.
A patient positioning device and method of operation that is simple in construction, is easy to install, is positioned outside the sterile operating field, yet permits the surgeon to readily position, adjust, and re-position a patient during a surgical procedure is provided and includes a support adapted to be positioned against a predetermined portion of a patient's body, a drive mechanism for moving the support along a generally linear path, a source of power for the drive mechanism, a bracket for mounting the drive mechanism to an operating table, and a remote device for actuating the drive mechanism.
A device 10 for aligning a patient for delivering a plurality of radiation beams comprising a patient support surface 12, a coarse alignment subsystem 14 connected to the patient support surface, and a fine alignment subsystem connected to the patient support surface 16. A method of aligning a patient for delivering a plurality of radiation beams from a plurality of device positions comprising compensating for flexion of a radiation beam delivery device within a gantry during movement of the radiation beam delivery device from a first device position to a second device position by using a set of predetermined data describing the flexion behavior of the radiation beam delivery device so that the target tissue within the patient is placed at the beamline center for the radiation beam delivery device at the second device position.