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    • 1. 发明授权
    • Frequency measuring method and apparatus
    • 频率测量方法和装置
    • US4350950A
    • 1982-09-21
    • US153569
    • 1980-05-27
    • Dieter WaldmannBernd Ohnesorge
    • Dieter WaldmannBernd Ohnesorge
    • G01R23/10G01R23/02
    • G01R23/10
    • The frequency of a pulse signal is measured with the aid of a reference signal generated in an oscillator (11). Both the pulses of the frequency to be measured and the pulses of the reference frequency are counted by separate counters (12, 13) and the counts or counted results are stored in separate memories (14, 15). A flip-flop (21) is set and reset to determine each measuring duration. The difference between two successive counts of the measured frequency counter (14) corresponds to the pulses or rather periods counted during the measuring time duration. The difference between two successive counts of the reference frequency counter (15) corresponds to the length of the measuring time duration whereby the resolution is determined by the reference frequency. A microprocessor (16) divides the number of periods counted by the measuring time duration to ascertain the frequency to be measured which may then be displayed.
    • 借助于在振荡器(11)中产生的参考信号来测量脉冲信号的频率。 要测量的频率的脉冲和参考频率的脉冲都由分开的计数器(12,13)计数,计数或计数结果存储在单独的存储器(14,15)中。 触发器(21)被设置并复位以确定每个测量持续时间。 测量频率计数器(14)的两个连续计数之间的差异对应于在测量持续时间期间计数的脉冲或相当的周期。 参考频率计数器(15)的两个连续计数之间的差异对应于测量持续时间的长度,由此分辨率由参考频率确定。 微处理器(16)将计数的周期数除以测量持续时间以确定可被显示的待测频率。
    • 5. 发明授权
    • Method for examining a body region executing a periodic motion
    • 用于检查执行周期性运动的身体区域的方法
    • US06560309B1
    • 2003-05-06
    • US09724055
    • 2000-11-28
    • Christoph BeckerThomas FlohrBernd Ohnesorge
    • Christoph BeckerThomas FlohrBernd Ohnesorge
    • G01N2300
    • A61B6/541A61B6/027G03B42/02H05G1/34
    • In a method for examining a body region executing a periodic motion in an examination subject with a diagnostic apparatus having a radiation source for generating radiation penetrating the examination subject and a detector system for the radiation emanating from the radiation source, the intensity of the radiation emanating from the radiation source is modulated between a reference value and a reduced value compared to the reference value, substantially synchronously with the movement, so that the reference value is present during a phase of the periodic motion to be imaged with the diagnostic apparatus, and substantially only the data that were output by the detector system during the presence of the reference value of the radiation are utilized for the determination of the image.
    • 在利用具有用于产生穿过检查对象的辐射源的辐射源的诊断装置和用于从辐射源发出的辐射的检测器系统来检查检查对象中执行周期性运动的身体区域的方法中,辐射发射的强度 与基准值相比,辐射源在与基准值相比基准值和减小的值之间进行调制,与移动基本上同步,使得参考值在与诊断装置成像的周期性运动的相位期间存在, 仅在辐射的参考值存在期间由检测器系统输出的数据被用于图像的确定。
    • 8. 发明授权
    • Method for image reconstruction for a CT apparatus and CT apparatus for the implementation of such a method
    • CT装置和CT装置的图像重建方法,用于实施这种方法
    • US06400790B1
    • 2002-06-04
    • US09450388
    • 1999-11-29
    • Bernd OhnesorgeThomas Flohr
    • Bernd OhnesorgeThomas Flohr
    • A61B603
    • G06T11/005A61B6/027G01N23/04Y10S378/901
    • In a method for image reconstruction for a CT apparatus and CT apparatus for the implementation of such a method, acquisition of the data underlying an image reconstruction for an image plane at a specific position on the system axis ensues by combining measured values, for each individual projection angle needed for this image reconstruction, that are registered exclusively for this projection angle with different lines of detector elements, to form data apparently registered with a detector having only one line of detector elements, with a weighting of the measured values ensuing. The image reconstruction is then undertaken using a conventional algorithm for operating on data from a detector having only one line of detector elements.
    • 在用于实现这种方法的CT装置和CT装置的图像重建方法中,通过组合每个个体的测量值来获取在系统轴上的特定位置处的用于图像平面的图像重建的数据的采集 该图像重构所需的投影角度,其专门用于具有不同线的检测器元件的该投影角度,以形成显着地与仅具有一行检测器元件的检测器对准的数据,并且随后测量值的加权。 然后使用用于对仅具有一行检测器元件的检测器的数据进行操作的常规算法进行图像重建。