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    • 1. 发明授权
    • Frame structure for a magnet system for nuclear spin tomography
    • 用于核自旋断层扫描的磁体系统的框架结构
    • US4758812A
    • 1988-07-19
    • US32763
    • 1987-03-31
    • Helmut ForsterHorst Siebold
    • Helmut ForsterHorst Siebold
    • G01R33/20A61B5/055A61B10/00G01R33/38G01R33/421H01F7/20H01F7/00
    • G01R33/3802G01R33/381G01R33/421
    • A frame structure for supporting individual magnetic coils forming a magnet system used in nuclear spin tomography comprises several frame parts made from a ferromagnetic material to provide relatively simple magnetic shielding. The individual magnetic coils are concentrically aligned one behind the other along a common axis to form the magnet system. Several elongate beam, rod, or plate-shaped magnetic shielding elements extend parallel to the common axis and are evenly distributed in the circumferential direction around the magnet system thus forming a generally cylindrical surface. End-plate magnetic shielding parts having a central opening of predetermined radius are provided at the end faces of the cylindrical surface formed by the shielding elements to create a cage-like frame structure. Coil receiving elements can be used to rigidly connect the axis-parallel shielding elements with the individual magnetic coils.
    • 用于支撑形成用于核自旋断层摄影术的磁体系统的各个磁性线圈的框架结构包括由铁磁材料制成的几个框架部件,以提供相对简单的磁屏蔽。 各个磁性线圈沿共同的轴线一个一个地彼此同心对准以形成磁体系统。 几个细长的梁,杆或板状磁屏蔽元件平行于公共轴线延伸,并且围绕磁体系统在圆周方向上均匀分布,从而形成大致圆柱形的表面。 在由屏蔽元件形成的圆筒形表面的端面处设置具有预定半径的中心开口的端板磁屏蔽部件,以形成笼状框架结构。 线圈接收元件可用于将轴平行屏蔽元件与各个磁性线圈刚性连接。
    • 2. 发明授权
    • Device for cooling a magnet system
    • 用于冷却磁体系统的装置
    • US4593261A
    • 1986-06-03
    • US696105
    • 1985-01-29
    • Helmut ForsterKarl-Georg HeinzelmannHorst SieboldJurgen Vetter
    • Helmut ForsterKarl-Georg HeinzelmannHorst SieboldJurgen Vetter
    • G01R33/20A61B5/055A61B10/00G01R33/3815H01F5/00H01F7/20H01F27/10
    • H01F7/20H01F27/10
    • A device for cooling a magnet system, especially in an installation for nuclear spin tomography which magnet system comprises several annular magnet coil windings which are made of ribbons of normal conducting material and are connected at their end faces over a large area to cooling elements in a heat conducting manner, the cooling elements cooled by a cooling medium flowing in coolant lines under forced flow. To assure an effective and reliable cooling of the coil windings on each end face of a magnet coil winding, a predetermined number of identically designed cooling elements uniformly distributed in the circumferential direction is cemented on, each cooling element comprising at least a heat conduction plate of annular sector shape which is provided with a predetermined number of slots uniformly distributed in the circumferential direction and to which the coolant line is connected over several turns in a heat conducting manner.
    • 一种用于冷却磁体系统的装置,特别是在用于核自旋断层扫描的装置中,该磁体系统包括由正常导电材料的带制成的几个环形磁体线圈绕组,并且在其大面积上连接到冷却元件 导热方式,冷却元件由在强制流动下在冷却剂管线中流动的冷却介质冷却。 为了确保电磁线圈绕组的每个端面上的线圈绕组的有效和可靠的冷却,在圆周方向上均匀分布的预定数量的相同设计的冷却元件被胶合,每个冷却元件至少包括一个导热板 环形扇形,其具有在圆周方向上均匀分布的预定数量的狭槽,并且冷却剂管线以热传导方式连接几匝。
    • 3. 发明授权
    • Apparatus for adjustably mounting coils of a magnet system for nuclear
spin tomography
    • 用于可调节地安装用于核自旋断层扫描的磁体系统的线圈的装置
    • US4560933A
    • 1985-12-24
    • US516249
    • 1983-07-22
    • Helmut ForsterHorst SieboldKarl-Georg Heinzelmann
    • Helmut ForsterHorst SieboldKarl-Georg Heinzelmann
    • A61B10/00A61B5/055G01R33/38G01R33/48H01F7/20A61B5/05
    • G01R33/3802H01F7/20
    • An adjusting and holding assembly for magnet coils in a nuclear spin tomography system includes mechanical adjusting devices connected to a frame structure for the mutual alignment of the connected to a frame structure for the mutual alignment of the base field magnet coils. In order to enable a relatively simple adjustment of the individual magnet coils to produce a highly homogeneous base field, at least one of the magnet coils is rigidly connected to the frame structure, while each adjustable or positionable magnet coil is held at three points via at least one support device and three adjusting devices within the frame structure. Each support device comprises a support element in the form of a spherical sector rotatably mounted to a respective coil and slidably resting on a horizontal support surface of the frame structure. The support points of the adjustable magnet coils are longitudinally spaced from the center of gravity line of the respective magnet coil so that an additional tilting force is brought about.
    • 在核自动断层摄影系统中的用于磁体线圈的调整和保持组件包括连接到框架结构的机械调节装置,用于连接到框架结构的相互对准以便使基场磁体线圈相互对准。 为了能够对各个磁体线圈进行相对简单的调整以产生高度均匀的基极场,至少一个磁体线圈刚性地连接到框架结构,而每个可调节或可定位的磁体线圈通过 至少一个支撑装置和框架结构内的三个调节装置。 每个支撑装置包括可旋转地安装到相应线圈并可滑动地搁置在框架结构的水平支撑表面上的球形扇形形式的支撑元件。 可调电磁线圈的支撑点与各个磁体线圈的重心线纵向间隔开,从而产生附加的倾斜力。
    • 5. 发明授权
    • Gravity relief apparatus
    • 重力救济装置
    • US4574789A
    • 1986-03-11
    • US613965
    • 1984-05-24
    • Helmut Forster
    • Helmut Forster
    • A61H1/02A63B21/12B66D3/06B66D3/10
    • A61H1/0218A61H2203/0493
    • A handy, compact and easily transportable apparatus for relief of intervertebral discs and for stretching of the vertebrae and the hip joints by means of gravity, having a support element suspendable on a door, a wall or the like, and a suspension device connected with this for the feet, in such manner that even unpracticed and awkward persons without support by a helper, i.e. completely alone, can achieve the suspended position. The suspension device is connected via a cable line with the support element and provided with a coupling device for suspension gaiters.
    • 一种方便,紧凑且易于运输的装置,用于缓解椎间盘并且通过重力拉伸椎骨和髋关节,具有可挂在门,墙壁等上的支撑元件,以及与该连接器连接的悬挂装置 对于脚,以这样的方式,即使没有帮助者,甚至没有帮助者的支持,即完全独立的人也可以实现暂停的位置。 悬挂装置通过电缆线与支撑元件连接并设置有用于悬挂踏板的联接装置。
    • 6. 发明授权
    • Magnetic suspension bearing
    • 磁悬浮轴承
    • US4340260A
    • 1982-07-20
    • US184474
    • 1980-09-05
    • Helmut ForsterPaul HiniGerd Stransky
    • Helmut ForsterPaul HiniGerd Stransky
    • F16C39/06G01R11/14
    • G01R11/14F16C32/0429F16C32/0444F16C39/063
    • A magnetic suspension bearing for a rotating body having at least two magnet systems of coaxial permanent magnets arranged sequentially along the axis of rotation of the rotating body. Each magnet system is provided with two permanent magnets disposed on the rotating body and a stator, respectively. Each such permanent magnet is magnetized in a direction perpendicular to a major external surface, the adjacent surfaces of the magnets within a magnet system being of like polarity so as to repel one another. Each of the magnets is constructed so as to form a truncated cone, the axis of which coincides with an axis of rotation of the rotating body. In one embodiment, the apex of the cones are directed towards one another. The apex angle of the cones is advantageously preselected to provide desired axial and orthogonal components of force.
    • 一种用于旋转体的磁悬浮轴承,具有沿着旋转体的旋转轴线顺序布置的至少两个同轴永磁体的磁体系统。 每个磁体系统分别设置有设置在旋转体上的两个永磁体和定子。 每个这样的永磁体在垂直于主外表面的方向上被磁化,磁体系统内的磁体的相邻表面具有相同的极性以便彼此排斥。 每个磁体被构造成形成一个截头圆锥体,其轴线与旋转体的旋转轴线重合。 在一个实施例中,锥体的顶点彼此指向。 锥体的顶角有利地被预先选择以提供期望的轴向和正交的力分量。
    • 9. 发明授权
    • Rotating detector system with coolant supply
    • 旋转检测器系统带冷却液供应
    • US4456826A
    • 1984-06-26
    • US429868
    • 1982-09-30
    • Helmut Forster
    • Helmut Forster
    • A61B6/03F17C3/08G01T1/24G03B41/16
    • A61B6/035A61B6/4488F17C3/08G01T1/244
    • In an arrangement for preparing a sectional image of the body, the picture elements of which are derived from the absorption of ionizing rays, the detector system contains detectors associated with a cooling system having a cooling finger against which the cooling surfaces of the detectors rest and which is connected via a cryogenic line to two coolant tanks which are arranged in the plane of motion of the detector system centrally symmetric to the center of rotation. As a result the rotating detector system with the coolant supply requires no automatic mass equalization device adapted to the consumption of coolant, and the cooling system can be designed for different operating times.
    • 在用于准备身体的截面图像的装置中,其像素是从电离射线的吸收导出的,检测器系统包含与具有冷却指针的冷却系统相关联的检测器,检测器的冷却表面与该冷却指针相对, 其经由低温线连接到两个冷却剂箱,其布置在检测器系统的运动平面中心对称于旋转中心。 因此,具有冷却剂供应的旋转检测器系统不需要适于消耗冷却剂的自动质量均衡装置,并且冷却系统可以被设计用于不同的操作时间。