Abstract:
A medical navigation system for electromagnetic position and/or location determination of a sensor coil, which is located in a navigation space, includes a number of navigation modules, each having at least one field coil and a position coil. In each module, the sensor coil and the position coil have a fixed and known spatial relationship with each other. Each navigation module spans a navigation volume, with the respective navigation volumes in combination forming the navigation space. The individual navigation modules are arranged such that the position coil of a first of the navigation modules is located within the navigation volume of at least one other of the navigation modules. The first of the navigation modules and the other of the navigation modules are connected by a communication link.
Abstract:
In a device and method for processing and presenting x-ray images, an x-ray image of a subject is acquired with an x-ray acquisition cone simultaneously with the acquisition of an optical exposure of the examination subject with an optical acquisition cone that is congruent with the x-ray acquisition cone. The subject in the optical exposure is subjected to segmentation and/or edge extraction, and the extracted optical exposure and the x-ray image are additively combined so that the subject edges from the optical exposure are inserted into the x-ray image.
Abstract:
In a method or system for limiting use of capsule endoscopes by a capsule endoscope maagnetic steering system used by a customer, the capsule endoscope is provided with a use code stored with the capsule. The use code is read and analyzed to determine whether or not the customer's capsule endoscope magnetic steering system will be enabled or disabled for use with the capsule endoscope from which the use code was read.
Abstract:
In a method for positioning a magnetically navigable endoscopy capsule using a magnetic coil system, to bring the capsule to a known finding position within a region in the body of a patient supported on a patient table, the finding position is identified in at least one volume data set that encompasses the finding position, the volume data set is registered with respect to the patient, the volume data set and the finding position therein are transformed into the coordinate system of the magnetic coil system, and the magnetic coil system is operated to position the endoscopy capsule inserted into the patient to automatically control routing of the capsule to the finding position.
Abstract:
A medical system has an electromagnetic navigation system and a patient bed that supports a patient during a medical procedure assisted by the navigation system. The navigation system includes at least one field coil that is integrated in the patient bed at a defined position.
Abstract:
In an imaging acquisition system and method, successive x-ray images and successive optical images are respectively acquired from an examination subject. Positional identifiers associated with the examination subject are detected in the optical images, and acquisition of respective x-ray images is triggered only when the identifiers are detected in the optical images. The number of acquired x-ray images is therefore substantially fewer than the number of acquired optical images, and the x-ray images can be acquired with substantially no overlap, thereby avoiding exposing the examination subject to unnecessary radiation.
Abstract:
An X-ray recording device has an X-ray detector and an X-ray emitter aligned with one another on a mobile supporting device, the supporting device being supported by retainer on a stand unit and being displaceable along a horizontal translation axis and/or vertical translation axis. The retainer has only one first pivoting arm rotatably mounted on the stand unit for rotation around a first vertical rotational axis and only one second pivoting arm rotatably mounted on the first pivoting arm for rotation around a second vertical rotational axis. This X-ray recording device allows an alteration to the recording range to be undertaken at reduced cost and with a space-saving and stable configuration.
Abstract:
In an imaging acquisition system and method, successive x-ray images and successive optical images are respectively acquired from an examination subject. Positional identifiers associated with the examination subject are detected in the optical images, and acquisition of respective x-ray images is triggered only when the identifiers are detected in the optical images. The number of acquired x-ray images is therefore substantially fewer than the number of acquired optical images, and the x-ray images can be acquired with substantially no overlap, thereby avoiding exposing the examination subject to unnecessary radiation.
Abstract:
An x-ray acquisition apparatus has a spatially adjustable x-ray detector, a spatially adjustable x-ray source, and a control unit with which the x-ray source can be aligned relative to the x-ray detector. The control unit accounts for the position of radio-opaque objects in the examination room and, before an x-ray acquisition, outputs a signal is a radio-opaque object is located in the beam path of the x-ray source.
Abstract:
In a method for directing X-rays radiated by an X-ray emitter onto a detector area of a X-ray detector, a location and/or positioning of the X-ray emitter and a location and/or positioning of the detector area of the X-ray detector is/are registered by a position registering device, with the location and/or positioning of the X-ray emitter and/or the location and/or positioning of the detector area of the X-ray detector being adjusted using the registered location and/or positioning of the X-ray emitter and the registered location and/or positioning of the detector area of the X-ray detector such that the X-rays radiated by the X-ray emitter will for the most part strike the entire detector area of the X-ray detector.