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    • 1. 发明申请
    • ZERO-CROSSING RECEIVER FOR ORTHOPEDIC PARAMETER SENSING
    • 用于正交参数感测的零交叉接收器
    • US20100331681A1
    • 2010-12-30
    • US12826134
    • 2010-06-29
    • Marc SteinAndrew Kelly
    • Marc SteinAndrew Kelly
    • A61B8/00
    • A61B5/6878A61B5/4509A61B5/4528A61B5/6846A61B5/7239A61B8/15Y10T307/615
    • A sensor system uses positive closed-loop feedback to provide energy waves into a medium. It comprises a transducer (604), a propagating structure (602), and a transducer (606). A parameter is applied to the propagating structure that affects the medium. A sensor is coupled to a propagation tuned oscillator (416) that forms a positive closed-loop feedback path. The propagation tuned oscillator (416) includes a zero-crossing receiver (200) that generates a pulse upon sensing a transition of an energy wave from the propagating structure (602). The zero-crossing receiver (200) is in the feedback path that maintains the emission of energy waves into the propagating structure (602). The zero-crossing receiver (200) comprises a preamplifier (206), a filter (208), an offset adjustment circuit (210), a comparator (212) and a pulse circuit (218). The transit time, phase, or frequency is measured of the propagating energy waves and correlated to the parameter being measured.
    • 传感器系统使用正闭环反馈来向介质提供能量波。 它包括换能器(604),传播结构(602)和换能器(606)。 将参数应用于影响介质的传播结构。 传感器耦合到形成正闭环反馈路径的传播调谐振荡器(416)。 传播调谐振荡器(416)包括过零接收器(200),其在感测到来自传播结构(602)的能量波的转变时产生脉冲。 过零接收器(200)处于将能量波发射到传播结构(602)中的反馈路径中。 过零接收器(200)包括前置放大器(206),滤波器(208),偏移调整电路(210),比较器(212)和脉冲电路(218)。 传播时间,相位或频率是测量传播的能量波,并与所测量的参数相关。
    • 2. 发明授权
    • Zero-crossing receiver for orthopedic parameter sensing
    • 用于整形外科参数检测的过零接收器
    • US08337428B2
    • 2012-12-25
    • US12826134
    • 2010-06-29
    • Marc SteinAndrew Kelly
    • Marc SteinAndrew Kelly
    • A61B5/103A61B17/56
    • A61B5/6878A61B5/4509A61B5/4528A61B5/6846A61B5/7239A61B8/15Y10T307/615
    • A sensor system uses positive closed-loop feedback to provide energy waves into a medium. It comprises a transducer (604), a propagating structure (602), and a transducer (606). A parameter is applied to the propagating structure that affects the medium. A sensor is coupled to a propagation tuned oscillator (416) that forms a positive closed-loop feedback path. The propagation tuned oscillator (416) includes a zero-crossing receiver (200) that generates a pulse upon sensing a transition of an energy wave from the propagating structure (602). The zero-crossing receiver (200) is in the feedback path that maintains the emission of energy waves into the propagating structure (602). The zero-crossing receiver (200) comprises a preamplifier (206), a filter (208), an offset adjustment circuit (210), a comparator (212) and a pulse circuit (218). The transit time, phase, or frequency is measured of the propagating energy waves and correlated to the parameter being measured.
    • 传感器系统使用正闭环反馈来向介质提供能量波。 它包括换能器(604),传播结构(602)和换能器(606)。 将参数应用于影响介质的传播结构。 传感器耦合到形成正闭环反馈路径的传播调谐振荡器(416)。 传播调谐振荡器(416)包括过零接收器(200),其在感测到来自传播结构(602)的能量波的转变时产生脉冲。 过零接收器(200)处于将能量波发射到传播结构(602)中的反馈路径中。 过零接收器(200)包括前置放大器(206),滤波器(208),偏移调整电路(210),比较器(212)和脉冲电路(218)。 传播时间,相位或频率是测量传播的能量波,并与所测量的参数相关。
    • 3. 发明申请
    • SYSTEM FOR CONTINUOUS WAVE, PULSED, AND PULSED-ECHO PARAMETER MEASUREMENT
    • 连续波,脉冲和脉冲参数测量系统
    • US20100331687A1
    • 2010-12-30
    • US12826247
    • 2010-06-29
    • Marc SteinAndrew Kelly
    • Marc SteinAndrew Kelly
    • A61B8/00G01S7/493
    • A61B5/6878A61B5/4509A61B5/4528A61B5/6846A61B5/7239A61B8/15Y10T307/615
    • A measurement system for capturing a transit time, phase, or frequency of energy waves propagating through a propagation medium is disclosed. The measurement system comprises two different closed-loop feedback paths. The first path includes a driver circuit (628), a transducer (604), a propagation medium (602), a transducer (606), and a zero-crossing receiver (640). The zero-crossing receiver (640) detects transition states of propagated energy waves in the propagation medium including the transition of each energy wave through a mid-point of a symmetrical or cyclical waveform. A second path includes the driver circuit (1228), a transducer (1204), a propagation medium (1202), a reflecting surface (1206), and an edge-detect receiver (1240). Energy waves in the propagating medium (1202) are reflected at least once. The edge-detect receiver (1240) detects a wave front of an energy wave. Each positive closed-loop path maintains the emission, propagation, and detection of energy waves in the propagation medium.
    • 公开了一种用于捕获通过传播介质传播的能量波的传播时间,相位或频率的测量系统。 测量系统包括两个不同的闭环反馈路径。 第一路径包括驱动器电路(628),换能器(604),传播介质(602),换能器(606)和过零接收器(640)。 过零接收器(640)检测传播介质中传播的能量波的转变状态,包括每个能量波通过对称或循环波形的中点的转变。 第二路径包括驱动器电路(1228),换能器(1204),传播介质(1202),反射表面(1206)和边缘检测接收器(1240)。 传播介质(1202)中的能量波反射至少一次。 边缘检测接收器(1240)检测能量波的波前。 每个正闭环路径保持传播介质中能量波的发射,传播和检测。
    • 4. 发明申请
    • TRANSDUCER DRIVER FOR MEASURING A PARAMETER OF THE MUSCULARSKELETAL SYSTEM
    • 用于测量音乐系统参数的传感器驱动器
    • US20100331685A1
    • 2010-12-30
    • US12826109
    • 2010-06-29
    • Marc SteinAndrew Kelly
    • Marc SteinAndrew Kelly
    • A61B8/00
    • A61B5/6878A61B5/4509A61B5/4528A61B5/6846A61B5/7239A61B8/15Y10T307/615
    • A measurement system for capturing a transit time, phase, or frequency of energy waves propagating through a propagation medium is disclosed. The measurement system comprises two different closed-loop feedback paths. The first path includes a transducer driver (726), a transducer (704), a propagation structure (702), a transducer (706), and a zero-crossing receiver (740). The transducer driver (726) efficiently drives the transducer (704) and comprises a digital driver (106), a level shifter (112), and a matching network (114). A second path includes a transducer driver (1126), a transducer (1104), a propagation medium (1102), a reflecting surface (1106), and an edge-detect receiver (1140). Energy waves in the propagating medium (1102) are reflected at least once. The edge-detect receiver (1140) detects a wave front of an energy wave. Each positive closed-loop path maintains the emission, propagation, and detection of energy waves in the propagation medium.
    • 公开了一种用于捕获通过传播介质传播的能量波的传播时间,相位或频率的测量系统。 测量系统包括两个不同的闭环反馈路径。 第一路径包括换能器驱动器(726),换能器(704),传播结构(702),换能器(706)和过零接收器(740)。 换能器驱动器(726)有效地驱动换能器(704)并且包括数字驱动器(106),电平转换器(112)和匹配网络(114)。 第二路径包括换能器驱动器(1126),换能器(1104),传播介质(1102),反射表面(1106)和边缘检测接收器(1140)。 传播介质(1102)中的能量波反射至少一次。 边缘检测接收器(1140)检测能量波的波前。 每个正闭环路径保持传播介质中能量波的发射,传播和检测。
    • 5. 发明申请
    • DEVICE AND METHOD FOR ADVANCED LOW-POWER MANAGEMENT OF A SENSOR TO MEASURE A PARAMETER OF THE MUSCULAR-SKELETAL SYSTEM
    • 用于传感器的高级低功耗管理以测量肌肉系统参数的装置和方法
    • US20100331682A1
    • 2010-12-30
    • US12826161
    • 2010-06-29
    • Marc SteinAndrew Kelly
    • Marc SteinAndrew Kelly
    • A61B8/00H02J9/00
    • A61B5/6878A61B5/4509A61B5/4528A61B5/6846A61B5/7239A61B8/15Y10T307/615
    • A sensing insert device (100) is disclosed for measuring a parameter of the muscular-skeletal system. The sensing insert device (100) can be temporary or permanent. Used intra-operatively, the sensing insert device (100) comprises an insert dock (202) and a sensing module (200). The sensing module (200) is a self-contained encapsulated measurement device having at least one contacting surface that couples to the muscular-skeletal system. The sensing module (200) comprises one or more sensors (303), electronic circuitry (307), a capacitor (1410), and communication circuitry (320). The capacitor (1410) powers the sensing module during a measurement process. An application specific integrated circuit (ASIC) increases power efficiency while reducing a form factor of the sensing module (200). The ASIC comprises power management circuitry (1412) and operational circuitry (1414). The power management circuitry (1412) couples a low-power energy source (1400) and operational circuitry (1414) to operate in one or more power conservation modes.
    • 公开了一种用于测量肌肉 - 骨骼系统的参数的感测插入装置(100)。 感测插入装置(100)可以是暂时的或永久的。 在操作中使用的感测插入装置(100)包括插入坞(202)和感测模块(200)。 感测模块​​(200)是独立的封装测量装置,其具有耦合到肌肉 - 骨骼系统的至少一个接触表面。 感测模块​​(200)包括一个或多个传感器(303),电子电路(307),电容器(1410)和通信电路(320)。 电容器(1410)在测量过程中为感测模块供电。 专用集成电路(ASIC)在降低感测模块(200)的形状因素的同时提高功率效率。 ASIC包括电源管理电路(1412)和操作电路(1414)。 功率管理电路(1412)将低功率能量源(1400)和操作电路(1414)耦合以在一个或多个功率节省模式下工作。
    • 6. 发明授权
    • Edge-detect receiver for orthopedic parameter sensing
    • 用于整形外科参数检测的边缘检测接收器
    • US08939030B2
    • 2015-01-27
    • US13902704
    • 2013-05-24
    • Marc SteinAndrew Kelly
    • Marc SteinAndrew Kelly
    • G01N29/44G01N3/32A61B5/00
    • A61B5/7239A61B5/0031A61B5/4509A61B5/4528A61B5/4585A61B5/6846A61B5/7225G01N29/44
    • A sensor system uses positive closed-loop feedback to provide energy waves into a medium. The medium can be coupled to the muscular-skeletal system or be part of the muscular-skeletal system. A sensor comprises one or more transducers, an edge detect circuit or a reflecting surface. A parameter is applied to the medium and the parameter affects the medium. A transducer receives an energy wave that has traversed the medium and generates an energy wave signal. The edge-detect receiver receives the energy wave signal signal from the transducer and generates a pulse upon sensing a leading edge corresponding to a wave front of the energy wave. The edge-detect receiver comprises a preamplifier, a differentiator, a digital pulse circuit, and a deblank circuit. The transit time, phase, or frequency is measured of the propagating energy waves and correlated to the parameter being measured.
    • 传感器系统使用正闭环反馈来向介质提供能量波。 介质可以连接到肌肉骨骼系统,或者是肌肉 - 骨骼系统的一部分。 传感器包括一个或多个换能器,边缘检测电路或反射表面。 介质应用参数,参数影响介质。 传感器接收已经穿过介质的能量波,并产生能量波信号。 边缘检测接收器接收来自换能器的能量波信号信号,并且在感测与能量波的波前相对应的前沿时产生脉冲。 边缘检测接收机包括前置放大器,微分器,数字脉冲电路和去铅笔电路。 传播时间,相位或频率是测量传播的能量波,并与所测量的参数相关。
    • 7. 发明授权
    • System for continuous wave, pulsed, and pulsed-echo parameter measurement
    • 连续波,脉冲和脉冲回波参数测量系统
    • US08424384B2
    • 2013-04-23
    • US12826247
    • 2010-06-29
    • Marc SteinAndrew Kelly
    • Marc SteinAndrew Kelly
    • G01N29/04
    • A61B5/6878A61B5/4509A61B5/4528A61B5/6846A61B5/7239A61B8/15Y10T307/615
    • A measurement system for capturing a transit time, phase, or frequency of energy waves propagating through a propagation medium is disclosed. The measurement system comprises two different closed-loop feedback paths. The first path includes a driver circuit (628), a transducer (604), a propagation medium (602), a transducer (606), and a zero-crossing receiver (640). The zero-crossing receiver (640) detects transition states of propagated energy waves in the propagation medium including the transition of each energy wave through a mid-point of a symmetrical or cyclical waveform. A second path includes the driver circuit (1228), a transducer (1204), a propagation medium (1202), a reflecting surface (1206), and an edge-detect receiver (1240). Energy waves in the propagating medium (1202) are reflected at least once. The edge-detect receiver (1240) detects a wave front of an energy wave. Each positive closed-loop path maintains the emission, propagation, and detection of energy waves in the propagation medium.
    • 公开了一种用于捕获通过传播介质传播的能量波的传播时间,相位或频率的测量系统。 测量系统包括两个不同的闭环反馈路径。 第一路径包括驱动器电路(628),换能器(604),传播介质(602),换能器(606)和过零接收器(640)。 过零接收器(640)检测传播介质中传播的能量波的过渡状态,包括每个能量波通过对称或循环波形的中点的转变。 第二路径包括驱动器电路(1228),换能器(1204),传播介质(1202),反射表面(1206)和边缘检测接收器(1240)。 传播介质(1202)中的能量波反射至少一次。 边缘检测接收器(1240)检测能量波的波前。 每个正闭环路径保持传播介质中能量波的发射,传播和检测。
    • 8. 发明申请
    • Edge-Detect Receiver For Orthopedic Parameter Sensing
    • 用于骨科参数检测的边缘检测接收器
    • US20130261450A1
    • 2013-10-03
    • US13902704
    • 2013-05-24
    • Marc SteinAndrew Kelly
    • Marc SteinAndrew Kelly
    • A61B5/00
    • A61B5/7239A61B5/0031A61B5/4509A61B5/4528A61B5/4585A61B5/6846A61B5/7225G01N29/44
    • A sensor system uses positive closed-loop feedback to provide energy waves into a medium. The medium can be coupled to the muscular-skeletal system or be part of the muscular-skeletal system. A sensor comprises one or more transducers, an edge detect circuit or a reflecting surface. A parameter is applied to the medium and the parameter affects the medium. A transducer receives an energy wave that has traversed the medium and generates an energy wave signal. The edge-detect receiver receives the energy wave signal signal from the transducer and generates a pulse upon sensing a leading edge corresponding to a wave front of the energy wave. The edge-detect receiver comprises a preamplifier, a differentiator, a digital pulse circuit, and a deblank circuit. The transit time, phase, or frequency is measured of the propagating energy waves and correlated to the parameter being measured.
    • 传感器系统使用正闭环反馈来向介质提供能量波。 介质可以连接到肌肉骨骼系统,或者是肌肉 - 骨骼系统的一部分。 传感器包括一个或多个换能器,边缘检测电路或反射表面。 介质应用参数,参数影响介质。 传感器接收已经穿过介质的能量波,并产生能量波信号。 边缘检测接收器接收来自换能器的能量波信号信号,并且在感测与能量波的波前相对应的前沿时产生脉冲。 边缘检测接收机包括前置放大器,微分器,数字脉冲电路和去铅笔电路。 传播时间,相位或频率是测量传播的能量波,并与所测量的参数相关。
    • 9. 发明申请
    • EDGE-DETECT RECEIVER FOR ORTHOPEDIC PARAMETER SENSING
    • 边缘检测接收机用于正交参数传感
    • US20100326194A1
    • 2010-12-30
    • US12826085
    • 2010-06-29
    • Marc SteinAndrew Kelly
    • Marc SteinAndrew Kelly
    • G01N29/07G01H1/00G01N33/483
    • A61B5/6878A61B5/4509A61B5/4528A61B5/6846A61B5/7239A61B8/15Y10T307/615
    • A sensor system uses positive closed-loop feedback to provide energy waves into a medium. A sensor comprises a transducer (604), a propagating structure (602), and a reflecting surface (606). A parameter is applied to the propagating structure that affects the medium. The sensor is coupled to a propagation tuned oscillator (416) that forms the positive closed-loop feedback path with the sensor. The propagation tuned oscillator (416) includes an edge-detect receiver (200) that generates a pulse upon sensing a wave front of an energy wave in propagating structure (602). The edge-detect receiver (100) is in the feedback path that continues emitting energy waves into the propagating structure (602). The edge-detect receiver (200) comprises a preamplifier (212), a differentiator (214), a digital pulse circuit (216), and a deblank circuit (218). The transit time, phase, or frequency is measured of the propagating energy waves and correlated to the parameter being measured.
    • 传感器系统使用正闭环反馈来向介质提供能量波。 传感器包括换能器(604),传播结构(602)和反射表面(606)。 将参数应用于影响介质的传播结构。 传感器耦合到与传感器形成正闭环反馈路径的传播调谐振荡器(416)。 传播调谐振荡器(416)包括边缘检测接收器(200),其在感测传播结构(602)中的能量波的波前时产生脉冲。 边缘检测接收器(100)处于继续将能量波发射到传播结构(602)中的反馈路径中。 边缘检测接收器(200)包括前置放大器(212),微分器(214),数字脉冲电路(216)和除铅电路(218)。 传播时间,相位或频率是测量传播的能量波,并与所测量的参数相关。
    • 10. 发明授权
    • Edge-detect receiver for orthopedic parameter sensing
    • 用于整形外科参数检测的边缘检测接收器
    • US08490488B2
    • 2013-07-23
    • US12826085
    • 2010-06-29
    • Marc SteinAndrew Kelly
    • Marc SteinAndrew Kelly
    • G01N3/32
    • A61B5/6878A61B5/4509A61B5/4528A61B5/6846A61B5/7239A61B8/15Y10T307/615
    • A sensor system uses positive closed-loop feedback to provide energy waves into a medium. A sensor comprises a transducer (604), a propagating structure (602), and a reflecting surface (606). A parameter is applied to the propagating structure that affects the medium. The sensor is coupled to a propagation tuned oscillator (416) that forms the positive closed-loop feedback path with the sensor. The propagation tuned oscillator (416) includes an edge-detect receiver (200) that generates a pulse upon sensing a wave front of an energy wave in propagating structure (602). The edge-detect receiver (100) is in the feedback path that continues emitting energy waves into the propagating structure (602). The edge-detect receiver (200) comprises a preamplifier (212), a differentiator (214), a digital pulse circuit (216), and a deblank circuit (218). The transit time, phase, or frequency is measured of the propagating energy waves and correlated to the parameter being measured.
    • 传感器系统使用正闭环反馈来向介质提供能量波。 传感器包括换能器(604),传播结构(602)和反射表面(606)。 将参数应用于影响介质的传播结构。 传感器耦合到与传感器形成正闭环反馈路径的传播调谐振荡器(416)。 传播调谐振荡器(416)包括边缘检测接收器(200),其在感测传播结构(602)中的能量波的波前时产生脉冲。 边缘检测接收器(100)处于继续将能量波发射到传播结构(602)中的反馈路径中。 边缘检测接收器(200)包括前置放大器(212),微分器(214),数字脉冲电路(216)和除铅电路(218)。 传播时间,相位或频率是测量传播的能量波,并与所测量的参数相关。