Abstract:
An MR coil is provided including at least one antenna element. The antenna element has at least one expandable conductor section with a plastic cover and a core including conductive fluid.
Abstract:
A local coil for a magnetic resonance tomography device includes a plurality of antenna elements. Each antenna element of the plurality of antenna elements has two conductor tracks. The conductor tracks are disposed on opposite sides of an insulator and are connected electrically conductively to one another by plated through-holes through the insulator. In areas, in which conductor tracks of at least two antenna elements of the plurality of antenna elements cross, at least one antenna element of the at least two antenna elements only has a conductor track on one side of the insulator.
Abstract:
The present embodiments relate to a local coil for a magnetic resonance tomography system. The local coil includes a preamplifier for amplification of a signal received by the local coil from an examination object in a receive phase of the local coil. The local coil also includes a detuning device for detuning the local coil in a transmit phase of the local coil, and a rectification device for supplying voltage to the preamplifier.
Abstract:
The transmission antenna apparatus is configured for emitting transmission magnetic fields in magnetic resonance imaging devices and includes one or more flat antennas. A magnetic resonance imaging device includes such a transmission antenna apparatus.
Abstract:
A simple connection of a coil with a magnetic resonance tomography (MRT) is facilitated by a method and an adapter wherein a coil-connection element of at least one local coil is connected with an MRT-connection element of an MRT system. The adapter has a coil-connection element adapter designed to form a connection with at least one coil-connection element of at least one local coil. The adapter also has at least one MRT-connection element adapter designed to form a connection with an MRT-connection element of an MRT system. The adapter can be fixed mechanically to a fixing element of the MRT system.
Abstract:
An array antenna for magnetic resonance applications has at least one first and one second conductor loop in which radio-frequency currents oscillate in respective current flow directions in the operation of the array antenna. The respective conductor loops are divided into first or second loop segments in their respective current flow directions. The first loop segments are capacitively coupled with one another by first capacitors, the second loop segments are capacitively coupled with one another of second capacitors. The loop segments are fashioned as conductor traces of a circuit board that has at least one first and one second electrically insulating support layer. The support layers abut one another with the exception of conductor traces arranged between the first support layer and the second support layer. The capacitors are respectively formed by end regions of the first or second loop segments abutting one another as viewed in the respective current flow direction. The end regions overlap as viewed in the respective current flow direction. Exactly one of the support layers is between the overlapping end regions of the loop segments. The first and the second conductor loops intersect in intersection regions. Neither the a loop segments of the first conductor loop nor a loop segments of the second conductor loop are arranged between the first support layer and the second support layer in the intersection regions.
Abstract:
A double resonance coil arrangement for a magnetic resonance device has at least two coils, each having a coil conductor, in which at least one first capacitor, as well as at least one inductor forming an oscillating circuit with a second capacitor, are connected. The inductors of two adjacently arranged coils are at a distance from one another and form a transformer. The capacitors, the inductor and the distance are dimensioned such that each coil is double resonant and the at least two coils are decoupled from each other by the transformer.
Abstract:
A local coil unit for acquisition of a magnetic resonance signal of an examination subject, and that can be placed directly on this examination subject, has a deformable section that can be adapted to a contour of the examination subject by a bending mechanism. During acquisition of the magnetic resonance signal, a high signal-to-noise ratio thus can be achieved, which leads to a good image quality. Due to its deformability, the local coil unit is suited for use for sensitive magnetic resonance data acquisition from different examination subjects.
Abstract:
Feed line for at least one local coil in a magnetic resonance tomography apparatus, comprising at least one coil plug as well as at least one standing wave barrier for suppression of unwanted radio-frequency currents on a conductor cable of the feed line, with the standing wave barrier integrated into the coil plug.
Abstract:
A local coil unit for acquisition of a magnetic resonance signal of an examination subject, and that can be placed directly on this examination subject, has a deformable section that can be adapted to a contour of the examination subject by a bending mechanism. During acquisition of the magnetic resonance signal, a high signal-to-noise ratio thus can be achieved, which leads to a good image quality. Due to its deformability, the local coil unit is suited for use for sensitive magnetic resonance data acquisition from different examination subjects.