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    • 2. 发明申请
    • Method and Device for Imaging an Interior of a Turbid Medium
    • 用于成像浊度介质内部的方法和装置
    • US20080290256A1
    • 2008-11-27
    • US12094634
    • 2006-11-21
    • Levinus Pieter BakkerGert T HooftMartinus Bernardus Van Der MarkMichael Cornelis Van Beek
    • Levinus Pieter BakkerGert T HooftMartinus Bernardus Van Der MarkMichael Cornelis Van Beek
    • H03F3/08
    • A61B5/4312A61B5/0091
    • The invention relates to a method and device (1) for imaging an interior of a turbid medium (55). A turbid medium (55) inside a measurement volume (15) is irradiated from a plurality of source positions (25a) with light from a light source (5), and light emanating from the measurement volume (15) is detected from a plurality of detection positions (25b). An image of the interior of the turbid medium (55) is reconstructed from the detected light. In both the method and the device (1), detector signals can be amplified for each source position-detection position pair by a multi-gain amplification unit comprising an amplifier circuit (60). The amplification factor is selected from a number of possible amplification factors based on detected signal strength in the prior art. According to the invention, however, the method and device are adapted such that the amplification factor is selected for at least one source position-detection position pair on the basis of an estimate of expected electrical signal strength.
    • 本发明涉及一种用于对浑浊介质(55)的内部进行成像的方法和装置(1)。 从多个源位置(25a)利用来自光源(5)的光照射测量体积(15)内部的混浊介质(55),并且从测量体积(15)发出的光从多个 检测位置(25b)。 从检测到的光重建混浊介质(55)的内部的图像。 在方法和装置(1)中,通过包括放大器电路(60)的多增益放大单元,可以为每个源位置检测位置对放大检测器信号。 基于现有技术中检测到的信号强度,从多个可能的放大因子中选择放大因子。 然而,根据本发明,所述方法和装置被适配成使得根据预期的电信号强度的估计为至少一个源位置检测位置对选择放大系数。
    • 4. 发明申请
    • Method of, System For, and Medical Image Acquisition System For Imaging an Interior of a Turbid Medium Taking Into Account the Geometry of the Turbid Medium
    • US20080309940A1
    • 2008-12-18
    • US12094698
    • 2006-11-20
    • Martinus Bernardus Van Der MarkMichael Cornelis Van BeekLevinus Pieter Bakker
    • Martinus Bernardus Van Der MarkMichael Cornelis Van BeekLevinus Pieter Bakker
    • G01N21/00
    • G01N21/4795G01N2021/1787G01N2021/4766G01N2021/6439
    • The invention relates to a method of imaging an interior of a turbid medium (45) comprising the following steps: accommodation of the turbid medium (45) inside a receiving volume (20); coupling transmission input light (65) from a transmission light source into the receiving volume (12), with said transmission input light (65) being chosen such that it is capable of propagating through the turbid medium (45) and with at least a part of said transmission input light (65) passing through a matching medium (50) in the receiving volume (12), said matching medium (50) being chosen to reduce optical boundary effects at an interface between the turbid medium (45) and its surroundings; detection of transmission output light emanating from the receiving volume as a result of coupling transmission input light (65) from the transmission light source into the receiving volume (12) through use of a transmission photodetector unit. The invention also relates to a system for imaging an interior of a turbid medium (45) and a medical image acquisition system both using the method. According to the invention, the method, system for imaging an interior of a turbid medium (45), and medical image acquisition system are adapted such that data relating to the exterior of the turbid medium (45) can be obtained. This object is realized in that the method further comprises the following additional steps: coupling geometry input light (70, 75, 80) from a geometry light source into the receiving volume (12), with the receiving volume comprising the turbid medium (45), with the receiving volume (12) further comprising a geometry medium (60) for surrounding the turbid medium (45) during coupling of geometry input light (70, 75, 80) into the receiving volume (12), and with the combination of the geometry input light (70, 75, 80), the geometry medium (60), and the interface being chosen for creating a contrast between the turbid medium and its surroundings; —detection of the contrast between the turbid medium (45) and its surroundings; reconstructing an image of an interior of the turbid medium (45) using the detected contrast.
    • 8. 发明申请
    • Device For Imaging an Interior of a Turbid Medium
    • 用于成像浊度介质内部的装置
    • US20080278727A1
    • 2008-11-13
    • US12093965
    • 2006-11-02
    • Michael Cornelis Van BeekMartinus Bernardus Van Der MarkLevinus Pieter Bakker
    • Michael Cornelis Van BeekMartinus Bernardus Van Der MarkLevinus Pieter Bakker
    • G01N21/59
    • A61B5/0059A61B5/0073A61B5/0091A61B5/4312
    • The invention relates to a device for imaging an interior of a turbid medium. Said device (1) comprises a measurement volume (15) for accommodating the turbid medium. Said measurement volume (15) comprises a number of sources capable of communicating light, said sources comprising a preferred source, capable of communicating preferred light and a further source, capable of communicating further light. Said device (1) further comprises a detection unit capable of detecting composed light comprising a preferred component comprising at least a part of the preferred light and a further component comprising at least a part of the further light. The device is adapted such that the negative effect said further component in the composed light may have on detecting the preferred component also present in the composed light is counteracted. According to the invention this object is realized in that the preferred source and the further source are located such that a path followed by the preferred component from the preferred source to the detector unit and a path followed by the further component from the further source to the detector unit are substantially the same.
    • 本发明涉及一种用于对浑浊介质内部进行成像的装置。 所述装置(1)包括用于容纳混浊介质的测量体积(15)。 所述测量体积(15)包括能够通信光的多个光源,所述光源包括能够传送更好的光的能够传送优选光的另一光源的优选光源。 所述装置(1)还包括能够检测合成光的检测单元,其包括包含至少一部分优选光的优选组分和包含至少一部分光的另外组分。 该装置适于使得组合光中所述另外的组分的负面影响可能在检测到组合光中也存在的优选组分时可能被抵消。 根据本发明,该目的的实现是,优选的源和进一步的源被定位成使得从优选的源到检测器单元的优选组件之后的路径以及从另一个源到另一个源的另一个组件的路径 检测器单元基本相同。