Motor for a MR elastography transducer

US12481009B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12481009-B2
Application numberUS-202318474332-A
CountryUS
Kind codeB2
Filing dateSep 26, 2023
Priority dateMar 17, 2022
Publication dateNov 25, 2025
Grant dateNov 25, 2025

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The present disclosure is directed to a motor for a magnetic resonance (MR) tomography room, to a patient table for the MR room, to a MR elastography device, and to a MR tomography device. A MR tomography device for a MR elastography imaging protocol is arranged within the MR tomography room, and includes a rotational drive for supplying rotational energy to power a MR elastography transducer usable during the MR elastography imaging protocol, and a support structure. The rotational drive comprises a terminal for connecting the MR elastography transducer to the rotational drive, and a bearing means configured such that the position of the terminal relative to the support structure is adaptable along a trajectory predetermined by the bearing means. The rotational drive is mounted to the support structure via the bearing means.

First claim

Opening claim text (preview).

What is claimed is: 1 . A motor for a magnetic resonance (MR) tomography room, wherein a MR tomography device for a MR elastography imaging protocol is arranged within the MR tomography room, the motor comprising: a rotational drive for supplying rotational energy to power a MR elastography transducer usable during the MR elastography imaging protocol; a support structure; and a container, wherein the rotational drive comprises a terminal for connecting the MR elastography transducer to the rotational drive, wherein a bearing means is configured such that a position of the terminal relative to the support structure is adaptable along a trajectory predetermined by the bearing means, wherein the rotational drive is mounted to the support structure, and wherein the rotational drive is arranged within the container. 2 . The motor as claimed in claim 1 , wherein: the bearing means comprises a rotor bearing, the support structure comprises a stator, and the rotational drive comprises a rotor. 3 . The motor as claimed in claim 1 , wherein the container is fixed rigidly to the rotational drive such that the trajectory of the terminal substantially corresponds to a trajectory of the container, and wherein the terminal is arranged in a lateral wall of the container. 4 . The motor as claimed in claim 1 , wherein the container comprises a slit, and wherein the terminal is movably mounted relative to the slit. 5 . The motor as claimed in claim 1 , wherein the motor comprises an output interface configured to provide a rotational frequency signal relative to a rotational frequency and/or phase of the rotational drive. 6 . A patient table for a magnetic resonance (MR) room, comprising: a tabletop for bearing a patient; a holding means; and a motor, comprising: a rotational drive for supplying rotational energy to power a MR elastography transducer usable during a MR elastography imaging protocol; and a support structure, wherein the rotational drive comprises a terminal for connecting the MR elastography transducer to the rotational drive, wherein a bearing means is configured such that a position of the terminal relative to the support structure is adaptable along a trajectory predetermined by the bearing means, wherein the rotational drive is mounted to the support structure, wherein the support structure of the motor is fastened to the patient table via the holding means, and wherein the tabletop is movable relative to the holding means. 7 . The patient table as claimed in claim 6 , wherein a damping means is provided between the support structure and the patient table to reduce mechanical vibrations. 8 . The patient table as claimed in claim 6 , wherein the bearing means comprises a rotor bearing, wherein the support structure comprises a stator, and wherein the rotational drive comprises a rotor. 9 . The patient table as claimed in claim 6 , further comprising: a container fixed rigidly to the rotational drive such that the trajectory of the terminal substantially corresponds to a trajectory of the container, wherein: the terminal is arranged in a lateral wall of the container, the container comprises a slit, and the terminal is movably mounted relative to the slit. 10 . The patient table as claimed in claim 6 , wherein the motor comprises an output interface configured to provide a rotational frequency signal relative to a rotational frequency and/or phase of the rotational drive. 11 . A magnetic resonance (MR) elastography device, comprising: a MR elastography transducer configured to transmit vibration to a patient in dependence of rotational energy during a MR elastography imaging protocol; a motor, comprising: a rotational drive for supplying the rotational energy to power the MR elastography transducer usable during the MR elastography imaging protocol; and a support structure, wherein the rotational drive comprises a terminal for connecting the MR elastography transducer to the rotational drive; and a driveshaft connected to the terminal of the motor and configured to confer the rotational energy from the rotational drive to the MR elastography transducer, wherein a bearing means is configured such that a position of the terminal relative to the support structure is adaptable along a trajectory predetermined by the bearing means, wherein the rotational drive is mounted to the support structure, and wherein the driveshaft is configured to bend in a loop depending on a position of the MR elastography transducer relative to the terminal. 12 . The MR elastography device as claimed in claim 11 , wherein the driveshaft comprises a universal joint. 13 . The MR elastography device as claimed in claim 11 , further comprising: a container fixed rigidly to the rotational drive such that the trajectory of the terminal substantially corresponds to a trajectory of the container, wherein: the terminal is arranged in a lateral wall of the container, the container comprises a slit, and the terminal is movably mounted relative to the slit. 14 . A magnetic resonance (MR) tomography device for a MR elastography imaging protocol, comprising: a main magnet for generating a main magnetic field; a MR elastography device, comprising: a motor, comprising: a rotational drive for supplying rotational energy to power a MR elastography transducer usable during the MR elastography imaging protocol; and a support structure, wherein the rotational drive comprises a terminal for connecting the MR elastography transducer to the rotational drive, wherein a bearing means is configured such that a position of the terminal relative to the support structure is adaptable along a trajectory predetermined by the bearing means, and wherein the rotational drive is mounted to the support structure; a MR elastography transducer configured to transmit vibration to a patient in dependence of the rotational energy during a MR elastography imaging protocol; and a driveshaft connected to the terminal of the motor to confer the rotational energy from the rotational drive to the MR elastography transducer; an input interface configured to receive a rotational frequency signal relative to a rotational frequency and/or phase of the rotational drive; and a control unit configured to control an imaging of the patient according to the MR elastography imaging protocol such that the imaging is performable at least temporarily in synchrony with the rotational frequency signal. 15 . The MR tomography device as claimed in claim 14 , further comprising: a patient table, wherein the support structure of the motor is fastened to the patient table via a holding means. 16 . The MR tomography device as claimed in claim 14 , further comprising: a container fixed rigidly to the rotational drive such that the trajectory of the terminal substantially corresponds to a trajectory of the container, wherein: the terminal is arranged in a lateral wall of the container, the container comprises a slit, and the terminal is movably mounted relative to the slit. 17 . A motor for a magnetic resonance tomography room, wherein a magnetic resonance (MR) tomography device for a MR elastography imaging protocol is arranged within the MR tomography room, the motor comprising: a rotational drive for supplying rotational energy to power a MR elastography transducer usable during the MR elastography imaging protocol; and a support structure, wherein the rotational drive comprises a terminal for connecting the MR elastography

Assignees

Inventors

Classifications

  • Elastography · CPC title

  • Tables · CPC title

  • involving electronic [EMR] or nuclear [NMR] magnetic resonance, e.g. magnetic resonance imaging · CPC title

  • Arrangements of imaging apparatus in a room, e.g. room provided with shielding or for improved access to apparatus · CPC title

  • by applying vibrations · CPC title

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What does patent US12481009B2 cover?
The present disclosure is directed to a motor for a magnetic resonance (MR) tomography room, to a patient table for the MR room, to a MR elastography device, and to a MR tomography device. A MR tomography device for a MR elastography imaging protocol is arranged within the MR tomography room, and includes a rotational drive for supplying rotational energy to power a MR elastography transducer u…
Who is the assignee on this patent?
Siemens Healthcare Gmbh, Centre Nat Rech Scient, Inst Nat Sante Rech Med, and 5 more
What technology area does this patent fall under?
Primary CPC classification G01R33/56358. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Nov 25 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).