Abstract:
The invention relates to a position indicator for a system for moving a patient in a non-invasive therapy system, wherein the system for moving includes a patient support arranged outside a treatment space of a medical apparatus of the non-invasive therapy system, a treatment table arranged inside the treatment space in the medical apparatus, and a patient bed movable in a longitudinal direction from the patient support to the treatment table and back by means of activation of a transferring mechanism, wherein the position indicator comprises a number of light emitting elements arranged in the patient support and each being arranged to receive activation signals instructing a receiving light emitting element to emit light to indicate positions for treatment equipment.
Abstract:
The present disclosure relates to a method, system and non-transitory computer readable medium. In some embodiments, the method includes: acquiring image data of a target subject positioned on a scanning table; determining, by a processor, first position information of the target subject based on the image data; determining, by the processor, second position information related to a scan region of the target subject based on the image data; and scanning, using an imaging device, the target subject based on the first position information and the second position information.
Abstract:
Disclosed is a shielding system for customized shielding of a patient or an operator from X-rays generated by a gantry. The shielding system is mounted on the gantry. The system has a rail that is arcuately movable in relation to gantry-mounted foundational blocks with apertures that receive movable rails from which protective curtains are suspended.
Abstract:
Die Erfindung betrifft eine Röntgeneinrichtung für ein medizinisches Bildgebungssystem und ein Verfahren zur medizinischen Bildgebung. Um den Arbeitsablauf bei der Durchführung von Röntgenaufnahmen zu vereinfachen, wird eine Röntgeneinrichtung (1) mit einem Röntgenstrahler (2), mit einem Bildempfänger (3), der zur Durchführung von Röntgenaufnahmen eines Patienten (4) mit dem Röntgenstrahler (2) zusammenwirkt, und mit einem Patiententisch (5), dessen Lagerungsplatte (6) zur Lagerung des Patienten (4) während der Röntgenaufnahmen dient, vorgeschlagen, die dadurch gekennzeichnet ist, dass die Lagerungsplatte (6) in der Tischebene (7) unbeweglich ist und dass der Bildempfänger (3) relativ zu der Lagerungsplatte (6) in der Tischebene (7) längs- und querbeweglich angeordnet ist.
Abstract:
A system (100) and a method for medical imaging are provided. An imaging device having a table may be provided. Scans of a subject located on the table at multiple table positions may be performed based on a scanning protocol, each scan covering a portion of the subject. Data may be acquired based on the scans of the subject. An image may be reconstructed based on the acquired data.
Abstract:
A table top composed of the upper panel (1) and the bottom panel (2) is characterized by that the upper panel (1) has an external carbon fiber layer (11) bonded to an internal cork layer (3) which is bonded to an internal carbon fiber layer (111), and the bottom panel (2) has an internal carbon fiber layer (22) bonded to an internal cork layer (33) which is bonded to an external carbon fiber layer (222), while the upper panel (1) and the bottom panel (2) are connected at their external edges. The internal upper and bottom layers (3) and (33) preferably are a conglomerate consisting of cork granulate bound by a binding agent, or cork granulate with plastic granulate bound by a binding agent.. The upper (1) and bottom (2) panel connection can be made using a closed section (5), or by gluing, thermoplastic bonding, lamination, pressing or by using the RTM, LRTM or CCBM infusion methods.
Abstract:
The present invention relates to the field of digital imaging, especially to three-dimensional (3-D) imaging in dentistry. The invention particularly concerns apparatuses and methods for three-dimensional imaging of objects, such as dental casts.
Abstract:
The present invention relates to a stereo tube radiation imaging system in which radiation emitted from each radiation source covers a different area of the detector surface. Furthermore, the present invention relates to a stereo tube imaging method wherein both radiation sources are operated independently and each cover part of the detector surface area. This is advantageous in that it may reduce radiation dose compared to known stereo tube imaging and introduces new possibilities for stereo tube imaging, such as improved object tracking within a body.