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    • 2. 发明授权
    • Radiation imaging apparatus
    • 辐射成像装置
    • US08357904B2
    • 2013-01-22
    • US13061857
    • 2009-02-18
    • Katsutoshi TsuchiyaTakafumi IshitsuTsuneaki Kawaguchi
    • Katsutoshi TsuchiyaTakafumi IshitsuTsuneaki Kawaguchi
    • G01T1/161
    • A61B6/08A61B6/037A61B6/4291A61B6/4405A61B6/4482A61B90/37
    • A radiation imaging apparatus comprises display means for displaying an image obtained by imaging an object and light projection means for projecting a light projection mark onto the object, and displays a light projection position on the object onto which the light projection mark is projected on the image. The light projection mark is projected as a line of intersection which is perpendicular to the surface of a detector and at which two planar flat light beams visually intersect each other, and the light projection position on the image is moved according to the movements of the flat light beams. By calculating projected lines obtained by projecting the light projection lines projected onto the object by the flat light beams onto the surface and displaying the projected lines on the image, the light projection position is displayed as a point of intersection of the projected lines on the image.
    • 一种放射线成像装置,包括:显示装置,用于显示通过对物体成像获得的图像;以及光投射装置,用于将光投射标记投射到物体上,并且将光投射位置显示在投射有光投射标记的物体上, 。 光投影标记被投影为与检测器的表面垂直的两条平面平面光束彼此目视相交的交叉线,并且图像上的光投射位置根据平面的移动而移动 光束。 通过计算通过将平坦光束投射到物体上的光投射线投射到表面上并且将图像上的投影线投影到投影线上而获得的投影线,将光投影位置显示为图像上的投影线的交点 。
    • 3. 发明申请
    • RADIATION MEASUREMENT APPARATUS AND NUCLEAR MEDICINE DIAGNOSIS APPARATUS
    • 辐射测量装置和核医学诊断装置
    • US20120326045A1
    • 2012-12-27
    • US13580556
    • 2011-02-03
    • Tomoyuki SeinoYuichiro UenoTakafumi Ishitsu
    • Tomoyuki SeinoYuichiro UenoTakafumi Ishitsu
    • G01T1/02
    • G01T1/247G01T1/17
    • The purpose of the present invention is to improve energy resolving power and prevent energy resolving power from deteriorating when a thick semiconductor detection element with a wide energy range is used, in a radiation measuring device using a semiconductor detector and a nuclear medicine diagnostic device. With the present invention, the purpose is achieved by pulsed wave value correction employing the difference of (Hs−Hf) between the pulsed wave height value Hs obtained from the slow speed shaping circuit, and the pulsed wave height value Hf obtained from the fast speed shaping circuit and normalized with respect to Hs. An even more desirable result may be obtained by employing either (Hs−Hf)/Hf or exp(k(Hs−Hf)/Hf), wherein k is a coefficient to be optimized, said optimization being dependent on the measurement assembly.
    • 本发明的目的在于在使用半导体检测器的放射线测量装置和核医学诊断装置中,当使用宽能量范围的厚半导体检测元件时,提高能量分辨能力,防止能量分辨能力劣化。 利用本发明,通过使用从慢速整形电路获得的脉冲波高值Hs和从快速成形电路得到的脉冲波高值Hf之间的(Hs-Hf)差的脉冲波值校正, 整形电路并相对于Hs进行归一化。 通过使用(Hs-Hf)/ Hf或exp(k(Hs-Hf)/ Hf)可以获得甚至更理想的结果,其中k是要优化的系数,所述优化取决于测量组件。
    • 5. 发明授权
    • Nuclear medical diagnosis apparatus
    • 核医学诊断仪器
    • US07795590B2
    • 2010-09-14
    • US11861977
    • 2007-09-26
    • Isao TakahashiTakafumi IshitsuYuichiro UenoTomoyuki Seino
    • Isao TakahashiTakafumi IshitsuYuichiro UenoTomoyuki Seino
    • G01T1/164
    • G01T1/249G01T1/2018
    • A PET apparatus comprises a plurality of detector units in the circumferential direction, wherein the detector unit includes a plurality of unit substrates therein, and wherein the unit substrate includes: a plurality of detectors upon which a γ-ray is incident; and an analog ASIC and digital ASIC for processing a γ-ray detection signal outputted by each of the detectors. The analog ASIC includes two slow systems having mutually different time constants, each of which outputs a pulseheight value. A noise determination part of the digital ASIC determines whether a relevant detection signal is an intended γ-ray detection signal or a noise based on a correlation between the pulseheight values, and a noise counting part counts the number of times of noise determination, and a detector output signal processing control part controls the signal processing with respect to an output signal from a relevant detector based on the count.
    • PET装置包括沿圆周方向的多个检测器单元,其中所述检测器单元包括多个单元基板,并且其中所述单元基板包括:多个检测器,其上存在γ射线; 以及用于处理由每个检测器输出的γ射线检测信号的模拟ASIC和数字ASIC。 模拟ASIC包括具有相互不同的时间常数的两个慢速系统,每个时间常数输出脉冲高度值。 数字ASIC的噪声确定部分基于脉冲高度值之间的相关性来确定相关检测信号是否是期望的γ射线检测信号或噪声,并且噪声计数部分对噪声确定的次数进行计数,并且 检测器输出信号处理控制部分基于计数来控制来自相关检测器的输出信号的信号处理。