会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • SUSPENDED MEMBRANE PRESSURE SENSING ARRAY
    • 悬挂膜压力传感阵列
    • US20110271772A1
    • 2011-11-10
    • US13086962
    • 2011-04-14
    • Thomas R. ParksChi Cao
    • Thomas R. ParksChi Cao
    • G01L1/14
    • G01L1/146G01L5/228
    • An accurate and low cost macro pressure sensor is described. The pressure sensor includes an array of capacitive sensing elements formed at the intersections of sets of conductors. A lower set of conductors is supported by a substrate and an upper set of conductors is supported on a flexible polymer membrane. Capacitive sensing elements are formed where a conductor in the upper set overlaps a spacer in the lower set. Separators hold the membrane away from the substrate with a separation that, because of deflection of the membrane, varies in relation to the pressure applied to the membrane. As a result, the separation of conductors, and therefore capacitance, in each cell varies in response to the applied pressure. By attaching the membrane to the separators and optionally using slits in the membrane between capacitive sensing elements, measurements made in each capacitive sensing element can be mechanically decoupled.
    • 描述了精确和低成本的宏观压力传感器。 压力传感器包括形成在导体组的交叉处的电容感测元件的阵列。 下一组导体由衬底支撑,并且上一组导体支撑在柔性聚合物膜上。 形成电容感测元件,其中上部集合体中的导体与下部组中的间隔物重叠。 分离器将膜远离基板,分离,因为膜的偏转相对于施加到膜的压力而变化。 结果,每个电池中导体的分离以及因此的电容随施加的压力而变化。 通过将膜连接到分离器并且可选地在电容感测元件之间使用膜中的狭缝,可以在每个电容感测元件中进行的测量被机械地去耦。
    • 3. 发明申请
    • SUSPENDED MEMBRANE PRESSURE SENSING ARRAY
    • 悬挂膜压力传感阵列
    • US20090004767A1
    • 2009-01-01
    • US12108479
    • 2008-04-23
    • Thomas R. ParksChi Cao
    • Thomas R. ParksChi Cao
    • H01L21/00A61B5/103
    • G01L1/146G01L5/228
    • An accurate and low cost macro pressure sensor is described. The pressure sensor includes an array of capacitive sensing elements formed at the intersections of sets of conductors. A lower set of conductors is supported by a substrate and an upper set of conductors is supported on a flexible polymer membrane. Capacitive sensing elements are formed where a conductor in the upper set overlaps a spacer in the lower set. Separators hold the membrane away from the substrate with a separation that, because of deflection of the membrane, varies in relation to the pressure applied to the membrane. As a result, the separation of conductors, and therefore capacitance, in each cell varies in response to the applied pressure. By attaching the membrane to the separators and optionally using slits in the membrane between capacitive sensing elements, measurements made in each capacitive sensing element can be mechanically decoupled.
    • 描述了精确和低成本的宏观压力传感器。 压力传感器包括形成在导体组的交叉处的电容感测元件的阵列。 下一组导体由衬底支撑,并且上一组导体支撑在柔性聚合物膜上。 形成电容感测元件,其中上部集合体中的导体与下部组中的间隔物重叠。 分离器将膜远离基板,分离,因为膜的偏转相对于施加到膜的压力而变化。 结果,每个电池中导体的分离以及因此的电容随施加的压力而变化。 通过将膜连接到隔板并且可选地在电容感测元件之间使用膜中的狭缝,可以在每个电容感测元件中进行的测量被机械地去耦。
    • 4. 发明授权
    • Suspended membrane pressure sensing array
    • 悬浮膜压力传感阵列
    • US07944008B2
    • 2011-05-17
    • US12108479
    • 2008-04-23
    • Thomas R. ParksChi Cao
    • Thomas R. ParksChi Cao
    • G01L9/00
    • G01L1/146G01L5/228
    • An accurate and low cost macro pressure sensor is described. The pressure sensor includes an array of capacitive sensing elements formed at the intersections of sets of conductors. A lower set of conductors is supported by a substrate and an upper set of conductors is supported on a flexible polymer membrane. Capacitive sensing elements are formed where a conductor in the upper set overlaps a spacer in the lower set. Separators hold the membrane away from the substrate with a separation that, because of deflection of the membrane, varies in relation to the pressure applied to the membrane. As a result, the separation of conductors, and therefore capacitance, in each cell varies in response to the applied pressure. By attaching the membrane to the separators and optionally using slits in the membrane between capacitive sensing elements, measurements made in each capacitive sensing element can be mechanically decoupled.
    • 描述了精确和低成本的宏观压力传感器。 压力传感器包括形成在导体组的交叉处的电容感测元件的阵列。 下一组导体由衬底支撑,并且上一组导体支撑在柔性聚合物膜上。 形成电容感测元件,其中上部集合体中的导体与下部组中的间隔物重叠。 分离器将膜远离基板,分离,因为膜的偏转相对于施加到膜的压力而变化。 结果,每个电池中导体的分离以及因此的电容随施加的压力而变化。 通过将膜连接到分离器并且可选地在电容感测元件之间使用膜中的狭缝,可以在每个电容感测元件中进行的测量被机械地去耦。
    • 7. 发明申请
    • METHOD OF MEASURING AND DISPLAYING THE POSITION OF RADIOGRAPHICALLY CONTRASTED MATERIAL WITHIN LUMINAL BODY ORGANS
    • 测量和显示放射性物质在体外机体中的位置的方法
    • US20090257554A1
    • 2009-10-15
    • US12249805
    • 2008-10-10
    • Thomas R. Parks
    • Thomas R. Parks
    • G01N23/223G01N23/04H05G1/64
    • A61B6/481A61B5/036A61B6/12A61B6/487A61B8/481A61B2090/064A61B2090/364
    • A system and method for obtaining a quantitative measurement of the location and size of a contrast material within a bodily organ, such as the GI tract of a person. A contrast material is introduced into the organ and a plurality of images is obtained. A curve representing the bodily organ is formed based on the images. Local image fields are defined along the curve and a field intensity is found for each by integrating the intensity of the image in the field. An intensity profile along the length of the curve is thus obtained for each image and provides a quantitative representation of contrast material along the bodily organ. The profiles are displayed in any suitable way. In some embodiments, identification of the curve may be aided by introduction of targets are into the organ. The target locations can be identified in each image. In some embodiments, an image obtained without the contrast material is subtracted from each of the plurality of images to cancel the background radiopacity and isolate the contrast material in each profile.
    • 用于获得身体器官(例如人的胃肠道)内的造影剂的位置和尺寸的定量测量的系统和方法。 将造影材料引入器官,并获得多个图像。 基于图像形成表示身体器官的曲线。 沿着曲线定义局部图像场,并通过对场中的图像的强度进行积分来找到每个场强。 因此,对于每个图像,获得沿着曲线长度的强度分布,并且提供沿着身体器官的造影材料的定量表示。 配置文件以任何合适的方式显示。 在一些实施方案中,可以通过将靶标引入器官来辅助曲线的鉴定。 可以在每个图像中识别目标位置。 在一些实施例中,从多个图像中的每一个中减去没有对比度材料获得的图像,以消除背景辐射不透性并隔离每个轮廓中的对比度材料。
    • 8. 发明授权
    • Visualization of values of a physical property detected in an organism over time
    • 随着时间的推移,在生物体中检测到的物理性质的值的可视化
    • US07476204B2
    • 2009-01-13
    • US10281068
    • 2002-10-24
    • Thomas R. ParksJae S. Son
    • Thomas R. ParksJae S. Son
    • A61B5/103A61B5/117A61B5/04A61B5/02
    • G06F3/044A61B5/037A61B2562/0247A61B2562/043
    • A system for visually indicating, in real time or post hoc, values of a physical property detected over a period of time along a dimension of an organism to a user on a temporal plot and a profile plot, either individually or concurrently. The detected values may be visually indicated on the temporal plot using any of a variety of techniques, including, but not limited to, a contour technique, a line trace technique or a mesh plot technique. Further, the detected values may be visually indicated on the profile plot using any of a variety of techniques, including, but not limited to a contour technique, a line trace technique or a histogram technique. To provide a finer spatial resolution, values may be interpolated for locations between the locations at which values were detected, and these values may be displayed on the temporal plot and the profile plot.
    • 一种系统,用于在时间图上绘制在生物体的维度上一段时间内检测到的物理属性的值,并且在实时或者事后处理单独地或同时地指示用户的物理特性值。 可以使用各种技术中的任一种在时间图上可视地指示检测值,包括但不限于轮廓技术,线迹技术或网格绘图技术。 此外,使用各种技术中的任何一种可以在轮廓图上可视地指示检测到的值,包括但不限于轮廓技术,线迹技术或直方图技术。 为了提供更精细的空间分辨率,可以对检测到值的位置之间的位置插值,并且可以在时间图和轮廓图上显示这些值。
    • 9. 发明申请
    • VISUALIZATION OF VALUES OF A PHYSICAL PROPERTY DETECTED IN AN ORGANISM OVER TIME
    • 在有机体内检测到的物理价值的可视化
    • US20120071786A1
    • 2012-03-22
    • US13301197
    • 2011-11-21
    • Thomas R. ParksJae S. Son
    • Thomas R. ParksJae S. Son
    • A61B5/03G06F3/048
    • G06F3/044A61B5/037A61B2562/0247A61B2562/043
    • A system for visually indicating, in real time or post hoc, values of a physical property detected over a period of time along a dimension of an organism to a user on a temporal plot and a profile plot, either individually or concurrently. The detected values may be visually indicated on the temporal plot using any of a variety of techniques, including, but not limited to, a contour technique, a line trace technique or a mesh plot technique. Further, the detected values may be visually indicated on the profile plot using any of a variety of techniques, including, but not limited to a contour technique, a line trace technique or a histogram technique. To provide a finer spatial resolution, values may be interpolated for locations between the locations at which values were detected, and these values may be displayed on the temporal plot and the profile plot.
    • 一种系统,用于在时间图上绘制在生物体的维度上一段时间内检测到的物理属性的值,并且在实时或者事后处理单独地或同时地指示用户的物理特性值。 可以使用各种技术中的任一种在时间图上可视地指示检测值,包括但不限于轮廓技术,线迹技术或网格绘图技术。 此外,使用各种技术中的任何一种可以在轮廓图上可视地指示检测到的值,包括但不限于轮廓技术,线迹技术或直方图技术。 为了提供更精细的空间分辨率,可以对检测到值的位置之间的位置插值,并且可以在时间图和轮廓图上显示这些值。
    • 10. 发明授权
    • Visualization of values of a physical property detected in an organism over time
    • 随着时间的推移,在生物体中检测到的物理性质的值的可视化
    • US08075502B2
    • 2011-12-13
    • US12352064
    • 2009-01-12
    • Thomas R. Parks
    • Thomas R. Parks
    • A61B5/103A61B5/117A61B5/00
    • G06F3/044A61B5/037A61B2562/0247A61B2562/043
    • A system for visually indicating, in real time or post hoc, values of a physical property detected over a period of time along a dimension of an organism to a user on a temporal plot and a profile plot, either individually or concurrently. The detected values may be visually indicated on the temporal plot using any of a variety of techniques, including, but not limited to, a contour technique, a line trace technique or a mesh plot technique. Further, the detected values may be visually indicated on the profile plot using any of a variety of techniques, including, but not limited to a contour technique, a line trace technique or a histogram technique. To provide a finer spatial resolution, values may be interpolated for locations between the locations at which values were detected, and these values may be displayed on the temporal plot and the profile plot.
    • 一种系统,用于在时间图上绘制在生物体的维度上一段时间内检测到的物理属性的值,并且在实时或者事后处理单独地或同时地指示用户的物理特性值。 可以使用各种技术中的任一种在时间图上可视地指示检测值,包括但不限于轮廓技术,线迹技术或网格绘图技术。 此外,使用各种技术中的任何一种可以在轮廓图上可视地指示检测到的值,包括但不限于轮廓技术,线迹技术或直方图技术。 为了提供更精细的空间分辨率,可以对检测到值的位置之间的位置插值,并且可以在时间图和轮廓图上显示这些值。