MULTIMODAL POSITION TRANSFORMATION DUAL-HELMET MEG APPARATUS

    公开(公告)号:US20220330870A1

    公开(公告)日:2022-10-20

    申请号:US17853827

    申请日:2022-06-29

    Abstract: A dual-helmet magnetoencephalography measuring apparatus according to an example embodiment includes: an internal container storing a liquid refrigerant; an external container disposed to surround the internal container and including a first external helmet and a second external helmet disposed to be spaced apart from each other; a first sensor-mounted helmet disposed between the external container and the internal container to surround the first external helmet; a second sensor-mounted helmet disposed between the external container and the internal container to surround the second external helmet; a plurality of first SQUID sensor modules disposed on the first sensor-mounted helmet; and a plurality of second SQUID sensor modules disposed on the second sensor-mounted helmet. The internal container and the external container are tilted in a vertical direction.

    LOW-FIELD NUCLEAR MAGNETIC RESONANCE DEVICE AND LOW-FIELD NUCLEAR MAGNETIC RESONANCE METHOD
    3.
    发明申请
    LOW-FIELD NUCLEAR MAGNETIC RESONANCE DEVICE AND LOW-FIELD NUCLEAR MAGNETIC RESONANCE METHOD 有权
    低场核磁共振器件和低场核磁共振方法

    公开(公告)号:US20130278265A1

    公开(公告)日:2013-10-24

    申请号:US13921724

    申请日:2013-06-19

    Abstract: Provided are a low-field nuclear magnetic resonance device and a low-field nuclear magnetic resonance method. The low-field nuclear magnetic resonance device includes a dynamic nuclear polarization (DNP) amplification unit to amplify the nuclear polarization of hydrogen atoms of water using a DNP-possible substance (DNP substance) to provide the amplified nuclear polarization to a measurement target, a sensor unit to measure a magnetic resonance signal of the measurement target using a SQUID sensor or an optically-pumped atomic magnetometer, and a measurement field coil to apply a measurement field to the measurement target. The DNP amplification unit is separated from the measurement target, the sensor unit, and the measurement field coil.

    Abstract translation: 提供了低场核磁共振装置和低场核磁共振方法。 低场核磁共振装置包括动态核极化(DNP)放大单元,以使用DNP可能物质(DNP物质)放大氢原子的核极化,以将放大的核极化提供给测量目标, 传感器单元,使用SQUID传感器或光泵浦原子磁力计测量测量对象的磁共振信号,以及测量场线圈,以将测量场应用于测量对象。 DNP放大单元与测量对象,传感器单元和测量场线圈分离。

    APPARATUS AND METHOD FOR CANCELING MAGNETIC FIELDS
    4.
    发明申请
    APPARATUS AND METHOD FOR CANCELING MAGNETIC FIELDS 有权
    取消磁场的装置和方法

    公开(公告)号:US20130271145A1

    公开(公告)日:2013-10-17

    申请号:US13909564

    申请日:2013-06-04

    CPC classification number: G01R33/421 A61B5/0046 A61B5/055 G01R33/445

    Abstract: Provided are an apparatus and a method for canceling magnetic fields. The apparatus includes a magnetic field canceling coil disposed adjacent to an inner wall of a magnetic shield room to surround the entire inner space or a portion of an inner space of the magnetic shield room; and a magnetic field canceling coil driver to supply current to the magnetic field canceling coil. The magnetic field canceling coil cancels a prepolarization magnetic field established on the wall of the magnetic shield room by a prepolarization coil disposed in the center of the magnetic shield room to minimize magnetic interference caused by the magnetic shield room.

    Abstract translation: 提供了一种抵消磁场的装置和方法。 该装置包括一个与磁屏蔽室的内壁邻接设置的磁场消除线圈,以围绕磁屏蔽室的整个内部空间或内部空间的一部分; 以及用于向磁场消除线圈提供电流的磁场消除线圈驱动器。 磁场消除线圈通过设置在磁屏蔽室的中心的预极化线圈抵消在磁屏蔽室的壁上建立的前极化磁场,以最小化由磁屏蔽室引起的磁干扰。

    MAGNETOCARDIOGRAPHY MEASURING APPARATUS
    5.
    发明公开

    公开(公告)号:US20230263445A1

    公开(公告)日:2023-08-24

    申请号:US18307094

    申请日:2023-04-26

    CPC classification number: A61B5/243 A61B2562/0223 A61B2562/046 A61B2562/166

    Abstract: A magnetic field measuring apparatus according to an example embodiment includes: an external container; an internal container storing a liquid refrigerant, disposed inside the external container, and including a neck portion having a first diameter and a body portion having a second diameter greater than the first diameter, wherein a space between the internal container and the external container is maintained in a vacuum state; a SQUID sensor module mounting plate disposed below the internal container; a plurality of SQUID sensor modules mounted below the SQUID sensor module mounting plate; and a 4K heat shielding portion formed of a conductive mesh disposed to surround the SQUID sensor module mounting plate and the plurality of SQUID sensor modules.

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