PREMATURE NEONATE CLOSED LIFE SUPPORT SYSTEM
    52.
    发明申请

    公开(公告)号:US20170143569A1

    公开(公告)日:2017-05-25

    申请号:US15424428

    申请日:2017-02-03

    Inventor: Uri Rapoport

    CPC classification number: A61G11/00 A61G11/009

    Abstract: A premature neonate closed life support system (NCLSS) including: at least one chamber confining a cradle-like neonate support (CLNS) having suitable dimensions and geometric-configuration for accommodating at least one premature neonate having at least two operational configurations, said operational configurations comprising: a first operational OPEN configuration whereby said CLNS is adapted to couple said neonate to at least one life supporting system by means of at least one life supporting coupling line, prior to positioning said CLNS in a medical device; and a second operational air-tight CLOSED configuration whereby said neonate remains continuously coupled to said at least one supporting system by means of at least one life supporting coupling line, when positioning said CLNS within said medical device. The OPEN and CLOSED configurations are reversible.

    MRI safety device means and methods thereof
    53.
    发明授权
    MRI safety device means and methods thereof 有权
    MRI安全装置及其方法

    公开(公告)号:US09535141B2

    公开(公告)日:2017-01-03

    申请号:US13939599

    申请日:2013-07-11

    Inventor: Uri Rapoport

    CPC classification number: G01R33/288 G01R33/30

    Abstract: A magnetic shielding mechanism for preventing penetration of metallic objects through an aperture, towards the open bore of an magnetic resonance imaging device, where the magnetic field is maximized. The magnetic resonance imaging device produces a fringing magnetic field that decreases with increasing distance (L) from the aperture. The mechanism includes at least one magnet with a magnetic field. The mechanism is affixed at a distance from the aperture of magnetic resonance imaging device.

    Abstract translation: 一种磁屏蔽机构,用于防止金属物体穿过孔朝向磁场最大化的磁共振成像装置的开孔渗透。 磁共振成像装置产生随距距离(L)的增加而减小的边缘磁场。 该机构包括至少一个具有磁场的磁体。 该机构与磁共振成像装置的孔径相距一定距离。

    Means and methods using paramagnetic agents for in vitro diagnostic applications
    54.
    发明授权
    Means and methods using paramagnetic agents for in vitro diagnostic applications 有权
    使用顺磁性药物进行体外诊断应用的手段和方法

    公开(公告)号:US09482643B2

    公开(公告)日:2016-11-01

    申请号:US14090298

    申请日:2013-11-26

    Abstract: A method of detecting a target biochemical molecular species or at least one property correlated with the occurrence of the biochemical molecular species in a sample whose main component is water. The method includes: obtaining a sample whose main component is water; providing Functionalized Paramagnetic Particles (FPP) including a paramagnetic core and a moiety configured to interact with the target biochemical molecular species or with molecules collectively reporting on a property of the target biochemical molecular species; contacting the FPP with the sample; exposing the sample to an applied magnetic field; measuring a change in a nuclear relaxation property of the sample; and correlating the change to the presence of the biochemical molecular species in the sample or to at least one property correlated with the occurrence of the biochemical molecular species in the sample.

    Abstract translation: 一种检测目标生化分子种类或与主要成分为水的样品中与生化分子种类的发生相关的至少一种性质的方法。 该方法包括:获得主要成分为水的样品; 提供功能性顺磁性颗粒(FPP),其包括顺磁性核和被配置成与靶生物化学分子物质相互作用的部分,或与共同报告靶生物化学分子种类的性质的分子相结合; 将FPP与样品接触; 将样品暴露于施加的磁场; 测量样品的核松弛性质的变化; 并将该变化与样品中生化分子物质的存在相关联,或与样品中生化分子物质的发生相关的至少一种性质相关联。

    Chamber for housing animals during anaesthetic procedures
    55.
    发明授权
    Chamber for housing animals during anaesthetic procedures 有权
    在麻醉程序期间住房动物的房间

    公开(公告)号:US09272107B2

    公开(公告)日:2016-03-01

    申请号:US14537266

    申请日:2014-11-10

    Inventor: Uri Rapoport

    CPC classification number: A61M16/01 A01K1/00 A01K1/03 A61D7/04 A61M2250/00

    Abstract: The present invention provides a chamber having at least one operator hand access port; the port comprising a port aperture located within the chamber wall; and at least two flexible non-resilient lightweight sealing gas-tight flaps(SFs), disposed the same plane of the port aperture in an overlapping manner, entirely enclosing the port aperture; each of the SFs is defined by a port aperture edge and chamber edges; the chamber edges are anchored to the chamber wall along more than half of the perimeter of the flap, at a distance from the center of the port greater than the radius of the port and beyond its perimeter; the port aperture edge of each flap is stretched across an entire chord of the port aperture; stretched port apertures edges define an interior access zone, disposed the same plane of the port aperture, characterized solely by the port aperture edges.

    Abstract translation: 本发明提供一种具有至少一个操作者手入口的腔室; 所述端口包括位于所述室壁内的端口孔; 和至少两个柔性非弹性的轻质密封气密翼片(SF),其以重叠的方式设置在端口孔的同一平面上,完全包围端口孔; 每个SF由端口孔边缘和腔室边缘限定; 腔室边缘沿着瓣的周边的一半以上锚定到腔室壁,距离端口的中心一定距离大于端口的半径并超出其周边; 每个翼片的孔口边缘在端口孔的整个弦上被拉伸; 拉伸端口孔边缘限定内部进入区域,其设置在端口孔的相同平面上,其特征仅在于孔口边缘。

    Pneumatic sample feedway
    56.
    发明授权
    Pneumatic sample feedway 有权
    气动样品供气道

    公开(公告)号:US09150364B2

    公开(公告)日:2015-10-06

    申请号:US14514739

    申请日:2014-10-15

    CPC classification number: B65G51/26 B65G51/22 B65G51/28 G01R33/307

    Abstract: A pneumatic sample feedway that is embeddable into a magnetic resonance imaging (MRI) device. The feedway includes: a plurality of capsules enclosing a biological tissue sample; and a conductor pipe connected to a source of a compressed fluid. The pipe receives a train of the capsules and pneumatically forwards the train into the MRI device. The pipe has a proximal terminal that loads the train of capsules into the pipe.

    Abstract translation: 可嵌入磁共振成像(MRI)装置的气动样品供给路径。 供给路径包括:包围生物组织样本的多个胶囊; 以及连接到压缩流体源的导体管。 管道接收一列胶囊并将火车气动地前进到MRI装置中。 管道具有近端端子,该近端将胶囊串装载到管道中。

    MRI DEVICE WITH A PLURALITY OF INDIVIDUALLY CONTROLLABLE ENTRY PORTS AND INSERTS THEREFOR
    57.
    发明申请
    MRI DEVICE WITH A PLURALITY OF INDIVIDUALLY CONTROLLABLE ENTRY PORTS AND INSERTS THEREFOR 有权
    具有多种多样性的可控制入口口及其插入物的MRI装置

    公开(公告)号:US20140158062A1

    公开(公告)日:2014-06-12

    申请号:US14182766

    申请日:2014-02-18

    CPC classification number: A61B5/0555 A01K29/005 G01R33/30

    Abstract: An animal handling system for use in an MRD device, including: a first elongated enclosure having a proximal end, a distal open end and a first geometry, and a second first elongated enclosure having a proximal end, a distal open end and a second geometry. The first second geometry comprises a first cross-sectional area which is larger than a second cross-sectional area of the second geometry. The first elongated enclosure is inserted into a first input port of the MRD device and the second elongated enclosure is inserted in a second input port of the MRD device diametrically opposite to second input port, such that on insertion of the first elongated enclosure into the first input port and insertion of the second elongated enclosure into the second input, the second elongated enclosure slides into the first elongated enclosure through the open distal end of the first elongated enclosure.

    Abstract translation: 一种用于MRD装置的动物处理系统,包括:具有近端,远端开口端和第一几何形状的第一细长外壳,以及具有近端,远端开口端和第二几何形状的第二第一细长外壳 。 第一第二几何形状包括大于第二几何形状的第二横截面积的第一横截面面积。 所述第一细长外壳被插入到所述MRD装置的第一输入端口中,并且所述第二细长外壳插入到所述MRD装置的与所述第二输入端口径向相对的第二输入端口中,使得在将所述第一细长外壳插入所述第一细长外壳 输入端口和将第二细长外壳插入第二输入端,第二细长外壳通过第一细长外壳的敞开的远端滑入第一细长外壳。

    System for generating a magnetic field

    公开(公告)号:US12183509B2

    公开(公告)日:2024-12-31

    申请号:US18525283

    申请日:2023-11-30

    Abstract: Generally, a system for generating a magnetic field having a desired magnetic field strength and/or a desired magnetic field direction is provided. The system can include a plurality of magnetic segments and/or a plurality of ferromagnetic segments. Each magnetic segment can be positioned adjacent to at least one of the plurality of magnetic segments. Each ferromagnetic segment can be positioned adjacent to at least one of the plurality of magnetic segments. In various embodiments, a size, shape, positioning and/or number of magnetic segments and/or ferromagnetic segments in the system, as well as a magnetization direction of the magnetic segments can be predetermined based on, for example, predetermined parameters of the system (e.g., a desired magnetic field strength, direction and/or uniformity of the magnetic field, a desired elimination of a magnetic fringe field and/or total weight of the system) and/or based on a desired application of the system (e.g., performing a magnetic resonance imaging of at least a portion of a patient and/or performing a magnetic resonance spectroscopy of a sample).

    Magnetic resonance device
    59.
    发明授权

    公开(公告)号:US12078699B2

    公开(公告)日:2024-09-03

    申请号:US17307604

    申请日:2021-05-04

    Inventor: Uri Rapoport

    Abstract: A cage with a fastening system (1) in a magnetic resonance device (MRD) is disclosed, said cage in an MRD comprising (a) M pole pieces (45) (M≥2); (b) N side magnets (20) (N≥2), said side magnets substantially enclosing said pole pieces and thereby defining a magnetic envelope and enclosed volume therein; (c) N side walls (10), said side walls substantially enclosing said side magnets; (d) P face walls (30) (P≥2); and (e) a plurality of fastening rods (100); wherein each of said fastening rods physically interconnects at least one pair of side walls, passing through at least one of said side magnets and at least one of said pole pieces.

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