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    • 13. 发明授权
    • Transducer for embedded bio-sensor using body energy as a power source
    • 用于将身体能量作为电源的嵌入式生物传感器的传感器
    • US07241266B2
    • 2007-07-10
    • US10850315
    • 2004-05-20
    • Peter ZhouDexing PangWilliam Li
    • Peter ZhouDexing PangWilliam Li
    • A61B5/00A61B5/05
    • A61B5/14865A61B5/0031A61B5/14532A61B2562/08G06F19/00G06F19/3418
    • Provided is a bio-sensor system which utilizes radio frequency identification technology and which includes a remote transponder in wireless communication with an implantable on-chip transponder. A power supply collects alternating current voltage pulses from an electro-active polymer generator embedded in muscle tissue for generating power for the on-chip transponder. The power supply is specifically adapted to provide a stable and precise sensor reference voltage to a sensor assembly to enhance the accuracy of measurements of a physiological parameter of a patient. The remote transponder receives data representative of the physiological parameter such as glucose concentration levels. The data is processed and transmitted to the remote transponder by the on-chip transponder. The precision and stability of the sensor reference voltage is enhanced by the specific circuit architecture of a glucose sensor to allow for relatively accurate measurement of glucose concentration levels without the use of a microprocessor.
    • 提供了一种利用射频识别技术的生物传感器系统,其包括与可植入片上转发器无线通信的远程转发器。 电源从嵌入在肌肉组织中的电活性聚合物发生器收集交流电压脉冲,以产生用于片上转发器的功率。 电源专门适用于向传感器组件提供稳定和精确的传感器参考电压,以增强患者生理参数的测量精度。 远程转发器接收代表诸如葡萄糖浓度水平的生理参数的数据。 数据被片上转发器处理并发送到远程转发器。 传感器参考电压的精度和稳定性通过葡萄糖传感器的具体电路结构得到增强,以允许在不使用微处理器的情况下相对精确地测量葡萄糖浓度水平。
    • 14. 发明申请
    • Method of three dimensional surface coating
    • 三维表面涂层方法
    • US20050053726A1
    • 2005-03-10
    • US10658088
    • 2003-09-10
    • William LiJeffrey MerzaMichael KidakarnShu-Ming Ho
    • William LiJeffrey MerzaMichael KidakarnShu-Ming Ho
    • B29C63/00B44C1/175B44C3/02B32B31/00
    • B29C63/0073B44C1/175B44C3/025
    • A coating method for a work piece includes the steps of: coating a coating film as a base color layer on a treating surface of the work piece, wherein the coating film has a predetermined color provided thereon; coating a first transparent protective layer on the coating film to protect the coating film; attaching a sticker layer having a predetermined character pattern on the first transparent protective layer under a water treatment such that the character pattern of the sticker layer is projected from the coating film to form a three-dimensional appearance; and coating a second transparent protective layer on the first transparent protective layer to sealedly enclose the sticker layer between the first transparent protective layer and the second protective layer so as to form a three-dimensional customary coating layer on the work piece.
    • 工件的涂布方法包括以下步骤:在工件的处理表面上涂覆作为基色层的涂膜,其中所述涂膜具有设置在其上的预定颜色; 在涂膜上涂覆第一透明保护层以保护涂膜; 在第一透明保护层上的水处理附着具有预定字符图案的贴纸层,使得贴纸层的字符图案从涂膜投影形成三维外观; 在第一透明保护层上涂布第二透明保护层,密封地将第一透明保护层和第二保护层之间的粘合层封闭,以在工件上形成三维常规涂层。
    • 17. 发明申请
    • Embedded Bio-Sensor System
    • 嵌入式生物传感器系统
    • US20080033273A1
    • 2008-02-07
    • US11872553
    • 2007-10-15
    • Peter ZhouDexing PangWilliam Li
    • Peter ZhouDexing PangWilliam Li
    • A61B5/145
    • A61B5/14865A61B5/0031A61B5/14532A61B2562/08G06F19/3418
    • Provided is a bio-sensor system which utilizes radio frequency identification technology and which includes a remote transponder in wireless communication with an implantable passively-powered on-chip transponder. The bio-sensor system is specifically adapted to provide a substantially stable and precise sensor reference voltage to a sensor assembly that is included with the on-chip transponder. The remote transponder is also configured to remotely receive data representative of a physiological parameter of the patient as well as identification data and may enable readout of one or more of the physiological parameters that are measured, processed and transmitted by the on-chip transponder upon request by the remote transponder. The precision and stability of the sensor reference voltage is enhanced by the specific circuit architecture of the glucose sensor to allow for relatively accurate measurement of the physiological parameter such as measurement of glucose concentration by a glucose sensor without the use of a microprocessor.
    • 提供了一种利用射频识别技术的生物传感器系统,其包括与可植入式被动供电的片上转发器进行无线通信的远程转发器。 生物传感器系统特别地适于向片上转发器附带的传感器组件提供基本上稳定和精确的传感器参考电压。 远程转发器还被配置为远程接收表示患者的生理参数的数据以及识别数据,并且可以使得能够读出由片上应答器根据请求测量,处理和发送的生理参数中的一个或多个 由远程转发器。 传感器参考电压的精度和稳定性通过葡萄糖传感器的具体电路结构得到增强,以允许相对精确地测量生理参数,例如葡萄糖传感器测量葡萄糖浓度而不使用微处理器。
    • 18. 发明申请
    • CONTAINER LID WITH PUSH BUTTON OPERATION
    • 带按钮操作的集装箱
    • US20070278229A1
    • 2007-12-06
    • US11733657
    • 2007-04-10
    • William Li
    • William Li
    • B65D41/00B65D17/50
    • B65D43/26
    • A container assembly having a lid with a push button actuator that opens the lid with a first push of the button and closes the lid with a second push of the button is provided. The lid assembly includes a lower member threadedly attachable to a container and an up member hingedly or rotatably attached to the lower member. The lower member includes a horizontal aperture therethrough. A button member may be received within the aperture which includes a main shaft that is engageable with the hinge member of the upper member above the pivot point to open the lid when the button is first pushed. The main shaft includes an axially-extending recess that receives a rod member. The rod member is slidably attached to the main shaft on one end, and engageable with one or more bosses on the other end that are located below the pivot point.
    • 一种容器组件,其具有带有按钮致动器的盖,该按钮致动器通过第一按压按钮来打开盖子,并且通过第二按钮来关闭盖子。 盖组件包括可螺纹连接到容器的下构件和铰接或可旋转地附接到下构件的上构件。 下部构件包括穿过其中的水平孔。 按钮构件可以容纳在孔内,该孔包括主轴,该主轴可在枢转点上方与上部构件的铰链构件接合以在按钮被按压时打开盖子。 主轴包括容纳杆构件的轴向延伸的凹部。 杆构件在一端可滑动地附接到主轴,并且可与位于枢转点下方的另一端上的一个或多个凸起接合。
    • 19. 发明申请
    • Method of hemoglobin correction due to temperature variation
    • 由于温度变化引起的血红蛋白校正方法
    • US20070054404A1
    • 2007-03-08
    • US11222457
    • 2005-09-08
    • Ziling HuoWilliam LiCheng Qian
    • Ziling HuoWilliam LiCheng Qian
    • G01N33/72
    • G01N33/721G01N33/726
    • A method of measuring a hemoglobin parameter of a test sample of blood comprises diluting and lysing a test sample. Then, a temperature corresponding to the test sample is obtained. The diluted and lysed test sample is then delivered to a cuvette, and a spectrophotometer determines the absorbance and/or transmittance of the sample in the cuvette. With the absorbance and/or transmittance of the test sample, a first measurement of the hemoglobin parameter of the test sample is obtained. After a first measurement of the hemoglobin parameter is obtained, a processor determines a corrected measurement of the hemoglobin parameter of the test sample. The corrected measurement is a function of the measured temperature that corresponds to the test sample and the first measurement of the hemoglobin parameter. The method of measuring a hemoglobin parameter is valid over a range of test sample temperatures.
    • 测量血液的测试样品的血红蛋白参数的方法包括稀释和裂解测试样品。 然后,获得与测试样品相对应的温度。 稀释并裂解的测试样品然后输送到比色皿,分光光度计确定样品在比色杯中的吸光度和/或透射率。 利用测试样品的吸光度和/或透射率,获得测试样品的血红蛋白参数的第一次测量。 在获得血红蛋白参数的第一次测量之后,处理器确定测试样品的血红蛋白参数的校正测量值。 校正的测量值是对应于测试样品的测量温度和血红蛋白参数的第一次测量的函数。 测量血红蛋白参数的方法在测试样品温度范围内有效。
    • 20. 发明申请
    • Transducer for embedded bio-sensor using body energy as a power source
    • 用于将身体能量作为电源的嵌入式生物传感器的传感器
    • US20050261563A1
    • 2005-11-24
    • US10850315
    • 2004-05-20
    • Peter ZhouDexing PangWilliam Li
    • Peter ZhouDexing PangWilliam Li
    • A61B5/00A61B5/05A61B5/07
    • A61B5/14865A61B5/0031A61B5/14532A61B2562/08G06F19/00G06F19/3418
    • Provided is a bio-sensor system which utilizes radio frequency identification technology and which includes a remote transponder in wireless communication with an implantable on-chip transponder. A power supply collects alternating current voltage pulses from an electro-active polymer generator embedded in muscle tissue for generating power for the on-chip transponder. The power supply is specifically adapted to provide a stable and precise sensor reference voltage to a sensor assembly to enhance the accuracy of measurements of a physiological parameter of a patient. The remote transponder receives data representative of the physiological parameter such as glucose concentration levels. The data is processed and transmitted to the remote transponder by the on-chip transponder. The precision and stability of the sensor reference voltage is enhanced by the specific circuit architecture of a glucose sensor to allow for relatively accurate measurement of glucose concentration levels without the use of a microprocessor.
    • 提供了一种利用射频识别技术的生物传感器系统,其包括与可植入片上转发器无线通信的远程转发器。 电源从嵌入在肌肉组织中的电活性聚合物发生器收集交流电压脉冲,以产生用于片上转发器的功率。 电源专门适用于向传感器组件提供稳定和精确的传感器参考电压,以增强患者生理参数的测量精度。 远程转发器接收代表诸如葡萄糖浓度水平的生理参数的数据。 数据被片上转发器处理并发送到远程转发器。 传感器参考电压的精度和稳定性通过葡萄糖传感器的具体电路结构得到增强,以允许在不使用微处理器的情况下相对精确地测量葡萄糖浓度水平。