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    • 1. 发明授权
    • Apparatus for analog-to-digital conversion with a high effective-sample-rate on the leading edge of a signal pulse
    • 用于在信号脉冲前沿具有高有效采样率的模数转换的装置
    • US08866654B2
    • 2014-10-21
    • US13091928
    • 2011-04-21
    • Gregory J. MannGin-Chung Wang
    • Gregory J. MannGin-Chung Wang
    • H03M1/00G01T1/17H03M1/12
    • G01T1/17H03M1/00H03M1/12H03M2201/4233
    • A method and electronic device for outputting time values and energy of an analog input signal by dynamically determining a plurality of threshold values, comparing, using a plurality of comparator circuits, the plurality of threshold values against the analog input signal, outputting, using at least one time to digital conversion circuit connected to each of the plurality of comparator circuits, a plurality of time values, each time value output when the analog input signal meets or exceeds a threshold value of the threshold values, filtering the analog input signal, performing, using an analog-to-digital conversion circuit, analog-to-digital conversion of the filtered analog input signal to generate a digital signal, and calculating, in response to receiving a trigger signal, an energy of the digital signal.
    • 一种用于通过动态地确定多个阈值来输出模拟输入信号的时间值和能量的方法和电子装置,使用多个比较器电路比较多个阈值与模拟输入信号的比较,至少使用 连接到多个比较器电路中的每一个的一次数字转换电路,多个时间值,当模拟输入信号达到或超过阈值的阈值时输出每个时间值,对模拟输入信号进行滤波, 使用模数转换电路,对经过滤波的模拟输入信号进行模数转换以产生数字信号,以及响应于接收到触发信号计算数字信号的能量。
    • 2. 发明授权
    • Apparatus for detection of a leading edge of a photo sensor output signal
    • 用于检测光传感器输出信号的前沿的装置
    • US08446308B2
    • 2013-05-21
    • US13091985
    • 2011-04-21
    • Kent BurrGin-Chung WangJohn S. JedrzejewskiGregory J. Mann
    • Kent BurrGin-Chung WangJohn S. JedrzejewskiGregory J. Mann
    • H03M1/12
    • G01T1/2985G01T1/1647
    • A system and method for processing an analog signal output by a sensor. The system and method converting, using at least one analog-to-digital converter (ADC), the analog output signal to a digital signal, the digital signal including a plurality of samples at a predetermined resolution, detecting whether a trigger condition is met by analyzing the digital signal, detecting an event based on trigger information from the detecting whether a trigger condition is met, generating event information having time information included therein when the event is detected, defining one or more time windows based on the time information included in the event information, performing decimation on the digital signal based on the defined one or more time windows to generate a decimated signal, and outputting the decimated signal.
    • 一种用于处理由传感器输出的模拟信号的系统和方法。 该系统和方法使用至少一个模拟 - 数字转换器(ADC)将模拟输出信号转换为数字信号,数字信号以预定分辨率包括多个样本,检测触发条件是否满足触发条件 分析数字信号,从检测触发条件是否满足检测基于触发信息的事件,生成当检测到事件时具有其中包含时间信息的事件信息,基于包含在该信息中的时间信息定义一个或多个时间窗口 事件信息,基于所定义的一个或多个时间窗对数字信号执行抽取以产生抽取信号,并输出抽取的信号。
    • 3. 发明申请
    • METHOD FOR TIMING-PICK-OFF OF UNDERSAMPLED PULSES FROM RADIATION DETECTORS
    • 从辐射探测器定时取样不同脉冲的方法
    • US20130168534A1
    • 2013-07-04
    • US13343541
    • 2012-01-04
    • Kent BURRGin-Chung Wang
    • Kent BURRGin-Chung Wang
    • G01J1/44
    • G01T1/1647
    • A process and device for generating a prototype waveform and a weighting function. The process including obtaining waveforms generated by a detector having at least one photosensor, generating an initial estimate for the prototype waveform and the weighting function and parameterizing the prototype waveform and the weighting function and determining for each waveform an optimal amplitude and an optimal time offset of the prototype waveform. Included are steps of pairing waveforms based on the determined time offsets of the waveforms, calculating an arrival time difference for each pair of waveforms and determining a timing resolution value based on the calculated arrival time differences, determining whether the timing resolution value meets predetermined minimization criteria, and updating the set of parameters for the prototype waveform and the weighting function and repeating the determining, pairing, calculating, and determining, when the timing resolution value fails to meet the predetermined minimization criteria.
    • 一种用于产生原型波形和加权函数的过程和装置。 该过程包括获得由具有至少一个光电传感器的检测器产生的波形,产生原型波形和加权函数的初始估计,并参数化原型波形和加权函数,并且为每个波形确定最佳幅度和最佳时间偏移 原型波形。 包括基于确定的波形的时间偏移对波形进行配对的步骤,计算每对波形的到达时间差,并且基于计算的到达时间差确定定时分辨率值,确定定时分辨率值是否满足预定的最小化准则 并且更新原型波形和加权函数的参数集合,并且当定时分辨率值不能满足预定的最小化准则时重复确定,配对,计算和确定。
    • 4. 发明申请
    • COUNT RATE ADAPTIVE FILTER FOR MEDICAL IMAGING SYSTEMS
    • 数字自适应滤波器用于医学成像系统
    • US20120305784A1
    • 2012-12-06
    • US13153026
    • 2011-06-03
    • Gin-Chung Wang
    • Gin-Chung Wang
    • G01T1/24G01T1/00
    • G01T1/17G01T1/1647
    • Systems, devices, processes, and algorithms for adaptively filtering a signal output from a radiation detector and adaptively sampling the signal. A count rate of events detected by the radiation detector is estimated by a processing unit. An RC time constant of the filter and a sampling rate of an analog-to-digital converter are adjusted based on the estimated count rate. Events are continuously detected by the radiation detector and counted by the processing unit while the adjustable parameters (the RC time constant and the sampling rate) of the filter and the analog-to-digital converter are adjusted on the fly (in real time) to optimize an energy resolution of the detected events, while reducing degradation due to pile-up effects and improving efficiency of the analog-to-digital converter. The filter can be implemented through analog filters, digital filters, or a combination thereof.
    • 用于自适应地过滤来自辐射检测器的信号输出的系统,设备,过程和算法,并自适应地采样信号。 由辐射检测器检测到的事件的计数率由处理单元估计。 基于估计的计数率来调整滤波器的RC时间常数和模拟 - 数字转换器的采样率。 事件由辐射检测器连续检测并由处理单元计数,同时将滤波器和模数转换器的可调参数(RC时间常数和采样率)(实时)(实时)调整为 优化检测事件的能量分辨率,同时减少由堆积效应导致的降级,并提高模数转换器的效率。 滤波器可以通过模拟滤波器,数字滤波器或其组合来实现。
    • 5. 发明授权
    • Reflector having adaptive reflectivity for radiation detection
    • 反射器具有辐射检测的自适应反射率
    • US09035261B2
    • 2015-05-19
    • US13691132
    • 2012-11-30
    • Gin-Chung WangJerry WangHuini Du
    • Gin-Chung WangJerry WangHuini Du
    • G01T1/20
    • G01T1/2002
    • Systems, devices, processes, and algorithms for adapting and/or adjusting a reflectivity of a reflector in a radiation detector. The reflectivity can be changed by a reflectivity control signal that is generated based on an estimated count rate of events so as to adjust a probability of a photosensor detecting light resulting from the event via, for example, a scintillation event. By adjusting the probability, an energy resolution of the radiation detector can be optimized. The reflectivity of a reflector can be changed by changing a state of a thin film, a liquid crystal layer, or a suspended magnetic particle layer.
    • 用于适应和/或调整辐射检测器中的反射器的反射率的系统,设备,过程和算法。 可以通过基于估计的事件计数率产生的反射率控制信号来改变反射率,以便通过例如闪烁事件来调整光电传感器检测由事件产生的光的概率。 通过调整概率,可以优化辐射检测器的能量分辨率。 可以通过改变薄膜,液晶层或悬浮磁性颗粒层的状态来改变反射器的反射率。
    • 6. 发明授权
    • Mold-in method and apparatus
    • 模压方法和装置
    • US07389132B2
    • 2008-06-17
    • US10752437
    • 2004-01-06
    • Wei-Kung WangGin-Chung Wang
    • Wei-Kung WangGin-Chung Wang
    • A61B5/05A61B5/00
    • A61B5/1455A61B5/05A61B5/14532A61B5/14546A61B5/416H04M3/22H04M7/0003H04M2201/40
    • The present invention mainly relates to a method and apparatus for measuring the concentration of a solute in a solvent. Disclosed is an apparatus or method for determining the concentration of a solute in a solvent of a solution in a container having a time-varying volume by analyzing two signals received from the solution, comprising: measuring the quantity of the two received signals, converting the two signals into two electro-optical or electrical signals, performing a mathematical transformation on the two electro-optical or electrical signals, and determining the ratio of the transformation components of the two electro-optical or electrical signals. The present invention can be used in various applications of determining the ingredient concentration of a fluid, such as a gas or liquid. Particularly, the present invention finds applications in blood analysis in a human body for measuring, for example, the glucose, triglycerol, cholesterol, or oxyhemoglobin concentrations of the blood.
    • 本发明主要涉及用于测量溶剂中溶质浓度的方法和装置。 公开了一种用于通过分析从解决方案接收的两个信号来确定具有时变体积的容器中的溶液的溶剂中的溶质的浓度的装置或方法,包括:测量两个接收信号的量,将 两个信号分成两个电光或电信号,对两个电光或电信号进行数学变换,并确定两个电光或电信号的变换分量的比率。 本发明可用于确定流体(例如气体或液体)的成分浓度的各种应用中。 特别地,本发明可用于人体血液分析,用于测定例如血液中的葡萄糖,三
      甘油,胆固醇或氧合血红蛋白浓度。
    • 7. 发明授权
    • Method for timing-pick-off of undersampled pulses from radiation detectors using a photosensor-based radiation detection system applying a prototype waveform and a weighting function
    • 使用基于光电传感器的放射线检测系统应用原型波形和加权函数从辐射检测器定时检测欠采样脉冲的方法
    • US09223031B2
    • 2015-12-29
    • US13343541
    • 2012-01-04
    • Kent BurrGin-Chung Wang
    • Kent BurrGin-Chung Wang
    • G01T1/164
    • G01T1/1647
    • A process and device for generating a prototype waveform and a weighting function. The process including obtaining waveforms generated by a detector having at least one photosensor, generating an initial estimate for the prototype waveform and the weighting function and parameterizing the prototype waveform and the weighting function and determining for each waveform an optimal amplitude and an optimal time offset of the prototype waveform. Included are steps of pairing waveforms based on the determined time offsets of the waveforms, calculating an arrival time difference for each pair of waveforms and determining a timing resolution value based on the calculated arrival time differences, determining whether the timing resolution value meets predetermined minimization criteria, and updating the set of parameters for the prototype waveform and the weighting function and repeating the determining, pairing, calculating, and determining, when the timing resolution value fails to meet the predetermined minimization criteria.
    • 一种用于产生原型波形和加权函数的过程和装置。 该过程包括获得由具有至少一个光电传感器的检测器产生的波形,产生原型波形和加权函数的初始估计,并参数化原型波形和加权函数,并且为每个波形确定最佳幅度和最佳时间偏移 原型波形。 包括基于确定的波形的时间偏移对波形进行配对的步骤,计算每对波形的到达时间差,并且基于计算的到达时间差确定定时分辨率值,确定定时分辨率值是否满足预定的最小化准则 并且更新原型波形和加权函数的参数集合,并且当定时分辨率值不能满足预定的最小化准则时重复确定,配对,计算和确定。
    • 8. 发明授权
    • Count rate adaptive filter for medical imaging systems
    • 医学影像系统的计数率自适应滤波器
    • US08309933B1
    • 2012-11-13
    • US13153026
    • 2011-06-03
    • Gin-Chung Wang
    • Gin-Chung Wang
    • G01T1/24
    • G01T1/17G01T1/1647
    • Systems, devices, processes, and algorithms for adaptively filtering a signal output from a radiation detector and adaptively sampling the signal. A count rate of events detected by the radiation detector is estimated by a processing unit. An RC time constant of the filter and a sampling rate of an analog-to-digital converter are adjusted based on the estimated count rate. Events are continuously detected by the radiation detector and counted by the processing unit while the adjustable parameters (the RC time constant and the sampling rate) of the filter and the analog-to-digital converter are adjusted on the fly (in real time) to optimize an energy resolution of the detected events, while reducing degradation due to pile-up effects and improving efficiency of the analog-to-digital converter. The filter can be implemented through analog filters, digital filters, or a combination thereof.
    • 用于自适应地过滤来自辐射检测器的信号输出的系统,设备,过程和算法,并自适应地采样信号。 由辐射检测器检测到的事件的计数率由处理单元估计。 基于估计的计数率来调整滤波器的RC时间常数和模拟 - 数字转换器的采样率。 事件由辐射检测器连续检测并由处理单元计数,同时将滤波器和模数转换器的可调参数(RC时间常数和采样率)(实时)(实时)调整为 优化检测事件的能量分辨率,同时减少由堆积效应导致的降级,并提高模数转换器的效率。 滤波器可以通过模拟滤波器,数字滤波器或其组合来实现。