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    • 2. 发明授权
    • Apparatus and method for processing projection data
    • 投影数据处理装置及方法
    • US08666137B2
    • 2014-03-04
    • US13390525
    • 2010-09-01
    • Tim NielsenThomas KoehlerBernhard Brendel
    • Tim NielsenThomas KoehlerBernhard Brendel
    • G06T5/00
    • G06T11/005A61B6/5258G06T2211/412
    • The invention relates to a projection values processing apparatus (1) for processing acquired projection values. A first image is reconstructed from acquired projection values under consideration of a reconstruction assumption by a reconstruction unit (13). A simulated projection values determining unit (14) determines simulated projection values by simulating a projection through the reconstructed first image under consideration of the reconstruction assumption, and inconsistency values are determined for the acquired projection values by an inconsistency determining unit (15), wherein an inconsistency value is indicative of a degree of inconsistency of a respective acquired projection value with the reconstruction assumption, by comparing the acquired projection values and the simulated projection values. The inconsistency values can be used for different purposes, for example, improving the quality of a reconstructed image or indicating image elements being affected by an inconsistency between reconstruction assumption and acquired projection values.
    • 本发明涉及一种用于处理所获取的投影值的投影值处理装置(1)。 在由重建单元(13)考虑重建假设的情况下,从获取的投影值重建第一图像。 模拟投影值确定单元(14)通过在考虑重构假设的情况下模拟通过重构的第一图像的投影来确定模拟投影值,并且通过不一致性确定单元(15)为所获取的投影值确定不一致值,其中, 通过比较所获取的投影值和模拟投影值,不一致值表示相应的获得的投影值与重建假设的不一致程度。 不一致值可以用于不同的目的,例如,改善重建图像的质量或指示图像元素受到重建假设和所获取的投影值之间的不一致的影响。
    • 4. 发明申请
    • APPARATUS AND METHOD FOR PROCESSING PROJECTION DATA
    • 用于处理投影数据的装置和方法
    • US20120148136A1
    • 2012-06-14
    • US13390525
    • 2010-09-01
    • Tim NielsenThomas KoehlerBernhard Brendel
    • Tim NielsenThomas KoehlerBernhard Brendel
    • G06K9/00
    • G06T11/005A61B6/5258G06T2211/412
    • The invention relates to a projection values processing apparatus (1) for processing acquired projection values. A first image is reconstructed from acquired projection values under consideration of a reconstruction assumption by a reconstruction unit (13). A simulated projection values determining unit (14) determines simulated projection values by simulating a projection through the reconstructed first image under consideration of the reconstruction assumption, and inconsistency values are determined for the acquired projection values by an inconsistency determining unit (15), wherein an inconsistency value is indicative of a degree of inconsistency of a respective acquired projection value with the reconstruction assumption, by comparing the acquired projection values and the simulated projection values. The inconsistency values can be used for different purposes, for example, improving the quality of a reconstructed image or indicating image elements being affected by an inconsistency between reconstruction assumption and acquired projection values.
    • 本发明涉及一种用于处理所获取的投影值的投影值处理装置(1)。 在由重建单元(13)考虑重建假设的情况下,从获取的投影值重建第一图像。 模拟投影值确定单元(14)通过在考虑重构假设的情况下模拟通过重构的第一图像的投影来确定模拟投影值,并且通过不一致性确定单元(15)为所获取的投影值确定不一致值,其中, 通过比较所获取的投影值和模拟投影值,不一致值表示相应的获得的投影值与重建假设的不一致程度。 不一致值可以用于不同的目的,例如,改善重建图像的质量或指示图像元素受到重建假设和所获取的投影值之间的不一致的影响。
    • 9. 发明申请
    • OPTICAL IMAGING SYSTEM AND METHOD
    • 光学成像系统和方法
    • US20090326382A1
    • 2009-12-31
    • US12307777
    • 2007-06-25
    • Tim NielsenThomas Koehler
    • Tim NielsenThomas Koehler
    • A61B6/00
    • A61B5/4312A61B5/0091
    • A device for determining a concentration-related quantity of a fluorescent contrast agent applied to an object (2), in particular a turbid medium. Said device generally comprises a source (4) of electromagnetic radiation for irradiating the object (2) at an excitation wavelength and at least one first detecting means (6, 7.1, 7.2, . . . , 8) for detecting fluorescent electromagnetic radiation emitted by the contrast agent at a fluorescence wavelength, said first detecting means producing fluorescence intensity data (F). The proposed device further comprises at least one second detecting means (6, 7.1, 7.2, . . . ) for detecting electromagnetic radiation transmitted by the object (2) at the excitation wavelength, said second detecting means producing transmission intensity data (T), and evaluating means (10) adapted to receive the transmission intensity data and the fluorescence intensity data and to determine said concentration-related quantity of the contrast agent from a ratio (R) of fluorescence intensity data and transmission intensity data.
    • 一种用于确定应用于物体(2)的荧光对比剂的浓度相关量的装置,特别是混浊介质。 所述装置通常包括用于以激发波长照射物体(2)的电磁辐射源(4)和至少一个第一检测装置(6,7.1,7.2,...,8),用于检测由 所述造影剂处于荧光波长,所述第一检测装置产生荧光强度数据(F)。 所提出的装置还包括用于检测由激光波长发射的物体(2)的电磁辐射的至少一个第二检测装置(6,7.1,7.2 ...),所述第二检测装置产生发射强度数据(T) 以及评估装置(10),其适于从荧光强度数据和透射强度数据的比率(R)接收透射强度数据和荧光强度数据并确定造影剂的浓度相关量。
    • 10. 发明申请
    • OPTICAL FLUORESCENCE TOMOGRAPHY CALIBRATION
    • 光学荧光标定校正
    • US20090153850A1
    • 2009-06-18
    • US12304276
    • 2007-06-13
    • Tim NielsenThomas Koehler
    • Tim NielsenThomas Koehler
    • G01J1/10G01J1/58
    • A61B5/4312A61B5/0091A61B2560/0233G01N21/278G01N21/4795G01N21/64
    • The invention relates to a device for imaging an interior of a turbid medium and a medical image acquisition device comprising: a) a measurement volume (15) for accommodating the turbid medium (45); b) a light source (5) for irradiating the turbid medium (45); c) a photodetector unit 10 for detecting light emanating from the measurement volume (15). The device for imaging an interior of the turbid medium and the medical image acquisition device are adapted such that the devices further comprise a calibration device (55, 60) arranged to be optically coupled to the measurement volume (15) and comprising a calibration light source (65) arranged to simultaneously generate the excitation light and further light corresponding to the fluorescence light. The invention also relates to a calibration device (60) arranged to be inserted into a receptacle (20) that comprises a measurement volume (15) for receiving a turbid medium (45) in a device for imaging an interior of a turbid medium (45), having a contact part (70) comprising a contact surface (75) that fits at least a part of the surface of the receptacle (20) facing the measurement volume (15), and having a calibration light source (65) arranged to simultaneously generate light that causes fluorescent emission in a fluorescent agent present in the turbid medium and further light corresponding to the fluorescence light. The contact part (70) may be removable.
    • 本发明涉及一种用于对浑浊介质内部进行成像的装置和医用图像采集装置,包括:a)用于容纳混浊介质的测量体积(15); b)用于照射混浊介质(45)的光源(5); c)用于检测从测量体积(15)发出的光的光电检测器单元10。 用于对浑浊介质和医学图像采集装置的内部进行成像的装置适于使得装置还包括校准装置(55,60),该校准装置被布置成光学耦合到测量体积(15),并且包括校准光源 (65),其被布置成同时产生对应于所述荧光的激发光和另外的光。 本发明还涉及一种被布置成插入到容器(20)中的校准装置(60),该容器包括用于在混浊介质(45)的内部成像的装置中接收混浊介质(45)的测量体积 ),其具有接触部分(70),所述接触部分(70)包括接合表面(75),所述接触表面(75)适合面向所述测量体积(15)的所述容器(20)的表面的至少一部分,并且具有校准光源(65) 同时产生在混浊介质中存在的荧光剂中引起荧光发射的光,并且产生对应于荧光的另外的光。 接触部分(70)可以是可移除的。