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    • 71. 发明申请
    • ADJUSTABLE APERTURE COLLIMATOR
    • 可调节孔径胶管
    • US20090010395A1
    • 2009-01-08
    • US11772326
    • 2007-07-02
    • Moshe Ein-Gal
    • Moshe Ein-Gal
    • G21K1/04
    • G21K1/04A61N5/1042G21K1/046
    • A collimator including an inner border whose inner perimeter defines an aperture, an outer border positioned outwards of the inner border, an enclosure being defined and bounded between the inner and outer borders, the enclosure being sufficiently filled with a radiopaque pliable material so as to block a predefined amount of radiation from passing through the enclosure, while allowing radiation to pass through the aperture, and at least one actuator attached to at least one point of the inner border operable to deform the inner border so as to modify a shape of the aperture.
    • 准直器,其包括内边界,其内周界定孔径,位于内边界外侧的外边界,封闭件限定和界定在内边界和外边界之间,外壳充满了不透射线的柔韧材料,从而阻挡 同时允许辐射穿过孔的预定量的辐射,以及附接到内部边界的至少一个点的至少一个致动器,其可操作以使内部边界变形,从而改变孔的形状 。
    • 73. 发明申请
    • Controlled monopolar and bipolar application of RF energy
    • 控制单极和双极应用RF能量
    • US20080065060A1
    • 2008-03-13
    • US11516618
    • 2006-09-07
    • Moshe Ein-Gal
    • Moshe Ein-Gal
    • A61B18/18
    • A61N1/04A61B18/1477A61B2018/1253A61B2018/126A61B2018/1435A61B2018/1467A61N1/40
    • A system including at least two target electrodes and at least one return electrode spaced outwards from the at least two target electrodes, at least two RF power sources in electrical communication with the electrodes and operative to generate RF energy waveforms to the at least two target electrodes, a controller in operative communication with the at least two RF power sources to control delivery of RF energy in a monopolar mode, a bipolar mode or a combined monopolar and bipolar mode, wherein in the monopolar mode at least one of the at least two target electrodes is energized by one of the RF power sources and cooperates with the at least one return electrode to deliver monopolar RF energy towards a first spatial region, and wherein in the bipolar mode the at least two target electrodes are energized by the at least two RF power sources to deliver bipolar RF energy between the at least two target electrodes in a second spatial region different from the first spatial region, and wherein in the combined monopolar and bipolar mode the at least two RF power sources deliver RF energy to the at least two target electrodes such that energy is delivered between the at least two target electrodes as well as between the at least two target electrodes and the at least one return electrode, and an actuator operative to cause relative motion between the at least two target electrodes and surrounding tissue.
    • 一种系统,包括至少两个目标电极和至少一个与所述至少两个目标电极间隔开的返回电极,至少两个RF电源与所述电极电连通并且可操作以产生至少两个目标电极的RF能量波形 ,与所述至少两个RF功率源操作性地通信的控制器,以控制在单极模式,双极模式或组合单极和双极模式中的RF能量的传递,其中在所述单极模式中,所述至少两个目标中的至少一个 电极由RF功率源中的一个激励,并与至少一个返回电极配合,以将单极RF能量朝向第一空间区域传递,并且其中在双极模式中,至少两个目标电极由至少两个RF 电源,用于在不同于第一空间区域的第二空间区域中在至少两个目标电极之间传递双极RF能量,以及wh 在组合的单极和双极模式中,至少两个RF功率源向至少两个目标电极提供RF能量,使得能量在至少两个目标电极之间以及在至少两个目标电极之间以及在至少两个目标电极之间传递 至少一个返回电极和致动器,其可操作以在所述至少两个靶电极和周围组织之间引起相对运动。
    • 75. 发明申请
    • Target reconstruction
    • 目标重建
    • US20070217565A1
    • 2007-09-20
    • US11378256
    • 2006-03-20
    • Moshe Ein-Gal
    • Moshe Ein-Gal
    • H05G1/60A61B6/00G01N23/00G21K1/12
    • G01N23/046A61B6/032G01N2223/419G06T11/005G06T2211/428Y10S378/901
    • A method for real-time target reconstruction from target image projections including dividing an object into external and internal sub-objects, acquiring external sub-object data, acquiring internal projections, each internal projection including an internal-internal projection which is the projection of the internal sub-object only as if the external sub-object is null, and an internal-external projection which is the projection of the external sub-object only as if the internal sub-object is null, using the external sub-object data to estimate internal-external projections, subtracting the estimated internal-external projections from the acquired internal projections to obtain internal-internal projections, and reconstructing the internal sub-object from the internal-internal projections.
    • 一种用于从目标图像投影实时目标重建的方法,包括将对象分成外部和内部子对象,获取外部子对象数据,获取内部投影,每个内部投影包括作为投影的内部投影 内部子对象只有外部子对象为空,而内部外部投影即外部子对象的投影,就像内部子对象为空一样,使用外部子对象数据 估计内部外部预测,从所获取的内部预测中减去估计的内部外部预测,以获得内部内部预测,并从内部内部预测重建内部子对象。
    • 76. 发明申请
    • Imaging and treatment system
    • 成像和治疗系统
    • US20070133752A1
    • 2007-06-14
    • US11298826
    • 2005-12-12
    • Moshe Ein-Gal
    • Moshe Ein-Gal
    • H05G1/02
    • A61N5/1049A61B6/4441A61N5/1081A61N2005/1061A61N2005/1063
    • An imaging device including a rotator having a hollow bore for a patient to move therein and thereout, the rotator being rotatable about a longitudinal axis, at least one linkage arm extending outwards from the rotator, and imaging apparatus mounted on the at least one linkage arm, the imaging apparatus including an imaging source that emits an imaging beam to an imaging detector aligned therewith along an imaging direction, the at least one linkage arm capable of full axial rotation about an imaging isocenter along an entire length of the patient, the isocenter lying along a longitudinal axis, and wherein the imaging apparatus is operative to rotate and to capture images of the patient along the imaging direction as the patient is positioned at an angle in a range of about 0-90° inclusive with respect to the longitudinal axis.
    • 一种成像装置,包括具有中空孔的旋转体,用于使病人在其中移动,旋转体可以围绕纵向轴线旋转,至少一个从旋转体向外延伸的连接臂,以及安装在至少一个连杆臂上的成像装置 所述成像装置包括成像源,所述成像源将成像光束发射到与成像方向对准的成像检测器,所述至少一个连杆臂能够沿着患者的整个长度围绕成像等角点全面轴向旋转,所述等角点位于 并且其中当患者以相对于纵向轴线约0-90°的范围内的角度定位时,成像设备可操作以沿着成像方向旋转并捕获患者的图像。
    • 79. 发明申请
    • Intensity-modulated radiation therapy with a multilayer multileaf collimator
    • 用多层多叶准直器进行强度调制放射治疗
    • US20050058245A1
    • 2005-03-17
    • US10659253
    • 2003-09-11
    • Moshe Ein-Gal
    • Moshe Ein-Gal
    • A61N5/10G21K1/04
    • G21K1/04A61N5/1042G21K1/046
    • An intensity modulated radiation therapy (IMRT) system including a radiation beam delivery device positionable in a plurality of spatial orientations, an IMRT control system adapted to modulate at least an intensity of a radiation beam emanating from the radiation beam delivery device depending on at least one of the spatial orientations of the radiation beam delivery device and in accordance with an IMRT intensity map, and a multilayer multileaf collimator placed in a path of the radiation beam emanating from the radiation beam delivery device, the multilayer multileaf collimator including a plurality of layers of radiation blocking leaves, the layers being at different positions along the path of the radiation beam generally traverse to the radiation beam.
    • 一种强度调制放射治疗(IMRT)系统,其包括可定位在多个空间取向中的辐射束输送装置,IMRT控制系统,其适于根据至少一个调制辐射束输送装置发射的辐射束的至少强度 的辐射束传送装置的空间取向并且根据IMRT强度图,以及放置在从辐射束传送装置发射的辐射束的路径中的多层多叶准直器,所述多层多叶准直器包括多个层 辐射阻挡叶片,沿着辐射束的路径的不同位置的层通常横穿辐射束。
    • 80. 发明授权
    • Positioner for radiation treatment
    • 放射治疗定位器
    • US06275564B1
    • 2001-08-14
    • US09346223
    • 1999-07-01
    • Moshe Ein-Gal
    • Moshe Ein-Gal
    • A61N510
    • A61N5/1049A61B2090/101
    • A positioner useful in stereotactic radiation treatment of a patient by radiation from a radiation source from which a radiation beam is emitted along a beam axis, the positioner including a source adapter arm arranged to be attached to the radiation source such that the position of the source adapter arm is determined by the position of the radiation source, and a frame adapter arm pivotably attached to the source adapter arm about a pivot axis, the frame adapter arm defining a frame axis intersecting the pivot axis, the pivot axis and the frame axis being selected such that when the source adapter arm is attached to the radiation source, the pivot axis and the frame axis both intersect the beam axis.
    • 一种定位器,其可用于通过来自辐射源的辐射对患者进行立体定向辐射治疗,辐射束沿着射束轴线从该辐射源发射,所述定位器包括布置成附接到辐射源的源适配器臂,使得源的位置 适配器臂由辐射源的位置确定,并且框架适配器臂可绕枢转轴线可枢转地附接到源适配器臂,框架适配器臂限定与枢转轴线相交的框架轴线,枢转轴线和框架轴线为 被选择为使得当源适配器臂附接到辐射源时,枢转轴线和框架轴线都与光束轴线相交。