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    • 1. 发明授权
    • Device and method for adapting the radiation dose of an X-ray source
    • 用于适应X射线源的辐射剂量的装置和方法
    • US06650729B2
    • 2003-11-18
    • US10160310
    • 2002-05-31
    • Henning BraessGeorg SchmitzHarald Reiter
    • Henning BraessGeorg SchmitzHarald Reiter
    • H05G144
    • A61B6/542A61B6/00
    • The invention relates to a method and a device for adapting a radiation dose of an X-ray source (1). The X-ray source (1) irradiates an object to be examined, for example, a patient (4), so as to form an X-ray image (7) on an X-ray detector (5). The X-ray image (7) is subdivided into image regions (A-I) and each time the brightest image region is successively separated from the remaining image regions in an iterative method if its mean grey value forms an indication of the presence of direct radiation (2b) in the relevant image region. The image regions still remaining at the end of the iteration operation correspond to an image region of interest which can be taken into account by a control unit (6) so as to calculate the optimum radiation dose.
    • 本发明涉及一种用于调整X射线源(1)的辐射剂量的方法和装置。 X射线源(1)照射被检体,例如患者(4),以在X射线检测器(5)上形成X射线图像(7)。 X射线图像(7)被细分为图像区域(AI),并且每当最亮图像区域以迭代方法与其余图像区域连续分离时,如果其平均灰度值形成直射辐射的存在的指示( 2b)在相关图像区域。 仍然保持在迭代操作结束的图像区域对应于可以由控制单元(6)考虑的感兴趣的图像区域,以便计算最佳辐射剂量。
    • 4. 发明申请
    • Device and method for determining the concentration of a tracer in blood
    • 用于测定血液中示踪剂浓度的装置和方法
    • US20070135710A1
    • 2007-06-14
    • US10578447
    • 2004-11-04
    • Henning Braess
    • Henning Braess
    • A61B6/00
    • A61B6/481A61B5/02755A61B6/03A61B6/037A61B6/507
    • The invention relates to device and a method for determining the concentration of a PET tracer in the blood of a patient (1). With the aid of an X-ray CT (5, 6), first of all the spatial position (r) of a volume element (2) that is filled with blood is determined, which for example can be a part of the aorta or of the left ventricle of the heart. Subsequently, a TOF PET unit that comprises two detector elements (3a, 3b) is set in such a way that it establishes the concentration of the tracer in this volume element (2) and thus in the blood. This value can for example be used within the framework of pharmaco-kinetic examinations which are carried out on the patient (1) with the aid of a three-dimensional PET unit (4).
    • 本发明涉及用于确定患者(1)血液中的PET示踪剂的浓度的装置和方法。 借助于X射线CT(5,6),首先确定充满血液的体积元素(2)的空间位置(r),其例如可以是主动脉的一部分,或 的左心室的心脏。 随后,包括两个检测器元件(3a,3b)的TOF PET单元被设置成使得其在该体积元件(2)中建立示踪剂的浓度,从而建立在血液中。 该值可以例如在药物动力学检查的框架内使用,其通过三维PET单元(4)在患者(1)上进行。
    • 5. 发明授权
    • Device and method for determining the concentration of a tracer in blood
    • 用于测定血液中示踪剂浓度的装置和方法
    • US07650021B2
    • 2010-01-19
    • US10578447
    • 2004-11-04
    • Henning Braess
    • Henning Braess
    • G06K9/00G01T1/163
    • A61B6/481A61B5/02755A61B6/03A61B6/037A61B6/507
    • With the aid of an X-ray CT (5, 6), the spatial position (r) of a body cavity that is filled with blood is determined, which for example can be a part of the aorta or of the left ventricle of the heart of a patient (1). Subsequently, a TOF-PET unit that includes two detector elements (3a, 3b) is positioned to place a predefined volume element (2) in the blood filled body cavity. From pairs of annihilation quanta received from the volume element (2) a concentration of the tracer in this volume element (2) and thus in the blood is determined. This concentration can for example be used within the framework of pharmaco-kinetic examinations which are carried out on the patient (1) with the aid of a three-dimensional PET unit (4).
    • 在X射线CT(5,6)的帮助下,确定充满血液的体腔的空间位置(r),其例如可以是主动脉或左心室的一部分 病人的心脏(1)。 随后,包括两个检测器元件(3a,3b)的TOF-PET单元被定位成将预定的体积元件(2)放置在血液填充的体腔中。 从体积元件(2)接收的成对的湮灭量子库中,确定该体积元素(2)中的示踪剂的浓度以及因此在血液中的浓度。 该浓度可以例如在药物动力学检查的框架内使用,其通过三维PET单元(4)在患者(1)上进行。
    • 6. 发明申请
    • Device and method for locally resolved control of a radiation dose
    • 用于局部解决控制辐射剂量的装置和方法
    • US20080135764A1
    • 2008-06-12
    • US11805045
    • 2007-05-22
    • Henning Braess
    • Henning Braess
    • G01T1/02
    • A61N5/1048A61N2005/1052A61N2005/1087
    • A device for locally resolved control of a radiation dose (ρ(γ,e+)({right arrow over (r)})) applied with a pulsed particle beam (6) in particle beam therapy, with a processing unit (24), which is set up to detect continuously a count rate of x-ray quanta (14) measured with a positron emission tomograph (2) and to determine the applied radiation dose (ρρ(γ,e+)({right arrow over (r)})) from the pattern of the measured count rate, by determining by computation from the measured pattern of the count rate the time intervals (In), in which an interaction of the particle beam (6) takes place at the application site and by rejecting these time intervals (In) for the determination of the applied radiation dose (ρ(γ,e+)({right arrow over (r)})).
    • 用于在粒子束治疗中施加脉冲粒子束(6)的辐射剂量(rho (γ,e +))({右箭头(r))的局部解析控制的装置, 单元(24),其被设置为连续检测由正电子发射断层摄影仪(2)测量的x射线量子(14)的计数率,并确定所施加的辐射剂量(rhorho (γ,e + / SUP>({right arrow over(r))从测量计数率的模式,通过根据测量的计数模式通过计算时间间隔(I> N )来计算,其中 粒子束(6)的相互作用发生在应用场所,并且通过拒绝这些时间间隔(I N n N)来确定所施加的辐射剂量(rho,γ,e +) ({right arrow over(r))。
    • 7. 发明申请
    • ECG-GATED TEMPORAL SAMPLING IN CARDIAC KINETIC MODELING
    • 心电图动态建模中的心电门静脉采样
    • US20100016715A1
    • 2010-01-21
    • US11912678
    • 2006-04-10
    • Daniel GagnonHenning Braess
    • Daniel GagnonHenning Braess
    • A61B6/00
    • A61B6/541A61B5/02755A61B5/7289A61B6/037A61B6/5288A61B8/5276A61B8/543
    • In a diagnostic imaging system (10), a monitor (50) monitors periodic biological cycles of the subject (14). A trigger point detector (60) detects a time (t1, t2, . . . ,tn) of a common, reoccurring reference point (R1, R2, . . . ,Rn) in each periodic cycle of the subject (14). A sequence selector (62) selects a sequence (64) of nominal sampling segments (Si, S2, . . . ,Sn). An adjustor (70) adjusts duration of each nominal sampling segment (Si, S2, . . . ,Sn) to coincide with the times of detected reference points (R1, R2, . . . ,Rn). A scaling processor (72) scales each adjusted segment based on a difference in duration between the corresponding nominal (Si, S2, . . . Sn) and adjusted sampling segments (S′i, S′2, . . . ,S′n).
    • 在诊断成像系统(10)中,监视器(50)监视对象(14)的周期性生物学周期。 触发点检测器(60)检测对象(14)的每个周期循环中的共同的重现的参考点(R1,R2,...,Rn)的时间(t1,t2,...,tn)。 序列选择器(62)选择标称采样段(Si,S2,...,Sn)的序列(64)。 调整器(70)调整每个标称采样段(Si,S2,...,Sn)的持续时间,以与检测到的参考点(R1,R2,...,Rn)的时间一致。 缩放处理器(72)基于相应的标称(Si,S2,... Sn)和调整的采样段(S'i,S'2,...,S'n)之间的持续时间差来缩放每个经调整的段 )。
    • 8. 发明授权
    • X-ray unit having an automatically adjustable collimator
    • X射线单元具有自动调节的准直仪
    • US07340033B2
    • 2008-03-04
    • US10566665
    • 2004-07-19
    • Sabine MollusJürgen WeeseHenning Braess
    • Sabine MollusJürgen WeeseHenning Braess
    • G01N23/04
    • A61B6/469A61B6/06G21K1/02
    • The invention relates to a method and a unit for automatically adjusting a collimator (6). In this connection, a region (9) of interest inside the body is determined in an application-specific way from an analysis of first X-ray pictures, and the collimator (6) is then adjusted thereon. The region (9) of interest can, in particular, be chosen to be large enough for the irradiation field to cover all those positions of an organ (10) of interest that occur as a result of heartbeat and/or respiration. Preferably, a movement estimate' is undertaken during a current examination in order to be able to readjust the collimator (6) if necessary. If the region of interest cannot be localized, the collimator (6) is opened to a standard adjustment.
    • 本发明涉及一种用于自动调整准直器(6)的方法和单元。 在这方面,通过分析第一X射线照片,以应用特定的方式确定身体内的感兴趣区域(9),然后在其上调整准直器(6)。 特别地,感兴趣的区域(9)可以被选择为足够大以使照射场覆盖作为心跳和/或呼吸的结果而发生的感兴趣的器官(10)的所有位置。 优选地,在当前检查期间进行运动估计,以便能够在必要时重新调整准直器(6)。 如果感兴趣的区域不能被定位,则将准直器(6)打开以进行标准调节。
    • 10. 发明申请
    • X-ray unit having an automatically adjustable collimator
    • X射线单元具有自动调节的准直仪
    • US20060203966A1
    • 2006-09-14
    • US10566665
    • 2004-07-19
    • Sabine MollusJürgen WeeseHenning Braess
    • Sabine MollusJürgen WeeseHenning Braess
    • G21K1/04
    • A61B6/469A61B6/06G21K1/02
    • The invention relates to a method and a unit for automatically adjusting a collimator (6). In this connection, a region (9) of interest inside the body is determined in an application-specific way from an analysis of first X-ray pictures, and the collimator (6) is then adjusted thereon. The region (9) of interest can, in particular, be chosen to be large enough for the irradiation field to cover all those positions of an organ (10) of interest that occur as a result of heartbeat and/or respiration. Preferably, a movement estimate' is undertaken during a current examination in order to be able to readjust the collimator (6) if necessary. If the region of interest cannot be localized, the collimator (6) is opened to a standard adjustment.
    • 本发明涉及一种用于自动调整准直器(6)的方法和单元。 在这方面,通过分析第一X射线照片,以应用特定的方式确定身体内的感兴趣区域(9),然后在其上调整准直器(6)。 特别地,感兴趣的区域(9)可以被选择为足够大以使照射场覆盖作为心跳和/或呼吸的结果而发生的感兴趣的器官(10)的所有位置。 优选地,在当前检查期间进行运动估计,以便能够在必要时重新调整准直器(6)。 如果感兴趣的区域不能被定位,则将准直器(6)打开以进行标准调节。