Abstract:
There is described a system for carrying out and monitoring minimally-invasive interventions with an x-ray device, in which at least one x-ray emitter and a x-ray detector are attached to one or more robot arms of one or more multi-axis articulated-arm robots, with which they are able to be moved for recording images from different projection directions on a predeterminable path around a patient support facility. The system includes a control and evaluation unit with interfaces for catheters and devices for carrying out the minimally-invasive intervention. The control and evaluation unit is embodied for the processing of measurement and/or image data which it receives from the catheters and devices and for control of the catheters and devices for recording the measurement and/or image data. With the proposed system the workflow is covered completely and seamlessly from the examination to the therapy, especially in the treatment of tachycardial arrythmias.
Abstract:
To facilitate imaging of a patient two different image recording methods are to be carried out at the same time. An auxiliary fluid, for example a contrast medium or a tracer, may be introduced into the body in each image recording method. The invention proposes mixing the two auxiliary fluids in situ immediately before dispensing to the patient. For this purpose it provides an injector with which the auxiliary fluids may be mixed and supplied to the patient. Devices for controlling dispensing of fluid from containers connected to the injector to produce a mixed solution may be electronically controlled by a control unit which calculates the total quantities, and optionally sub-quantities, of auxiliary fluids, which are used for a mixed solution, before activating the devices.
Abstract:
The invention relates to a catheter device for performing atherectomy, comprising an atherectomy catheter, an IVMRI sensor, position sensors and an image-processing unit which is fashioned for generating combined 2D and/or 3D image recordings based on the data from the sensors.
Abstract:
The invention relates to a medical system for introducing a catheter into a blood vessel of a patient, having a computer and control unit, a means for creating a transparent general view of the position of the vessel, a catheter with a reversible inflatable balloon located in the front area, to the outside of which a stent can be fitted for implanting into the vessel, a position locating system for the catheter with position and location sensors that can determine the position and location of the catheter, the system with at least one OCT (optical coherence tomography) sensor at a catheter end for the close-up area, with at least one IVUS (intravascular ultrasound) imaging sensor at a catheter end for the remote area and the computer and control unit having image processing and image display functions for the image sensors.
Abstract:
The possibility for receiving and processing data from an analytical chip (“lab-on-a-chip”) is integrated into a medical device, such as for example an X-ray imaging system. This means quite simply that it is possible at the medical device to make a diagnosis which could otherwise only be made by a laboratory. There is a separate processor unit, a separate memory a separate input/output unit, adapted to the analytical chip, and a display unit displays both image data from the X-ray imaging system and also analytical data.
Abstract:
A microcapsule for the local treatment of a tumor is proposed. The microcapsule has a support material forming a casing for the microcapsule, an active agent that damages tumor cells, a marker material suitable for use as an x-ray marker, and at least one magnetic nanoparticle. The active agent in particular destroys the tumor cells.
Abstract:
A biplane X-ray imaging system is provided. The biplane X-ray imaging system has two recording units disposed in different planes. Each of the recording units has an X-ray detector and an X-ray source. The first recording unit is a phase-contrast recording unit for phase-contrast X-ray imaging. The second recording unit is a conventional recording unit for conventional x-ray imaging.
Abstract:
The invention relates to a mobile defibrillator which has a housing. In order to improve the diagnostic reliability, particularly in the case of irregular heart rhythms and myocardial infarctions, provision is additionally made for an imaging ultrasound device to be provided in or on the housing.
Abstract:
In order to achieve improved image quality in X-ray photographs, a medical X-ray imaging system, comprising a flat, planar X-ray source having a surface with X-ray focal points arranged adjacent to one another and an X-ray detector with a sensor surface, is provided. The X-ray source has a plurality of field emission guns with at least one field emission cathode and the surface with focal points of the X-ray source is larger in size than the sensor surface of the X-ray detector.
Abstract:
A medical x-ray acquisition system has an x-ray source and an x-ray detector, the x-ray source having at least one field emission radiator with at least one field emission cathode. The field emission cathode can be formed by a nanostructured material with carbon nanotubes.