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. 发明授权
    • Method for delivering energy to tissue and apparatus
    • 将能量传递给组织和设备的方法
    • US07074233B1
    • 2006-07-11
    • US10877811
    • 2004-06-25
    • Ashok GowdaRoger J. McNicholsMassoud MotamediPankaj J. Pasricha
    • Ashok GowdaRoger J. McNicholsMassoud MotamediPankaj J. Pasricha
    • A61N5/067
    • A61B18/18A61B18/1815A61B2017/22051A61B2018/00023A61B2018/2261
    • Disclosed is a method for delivering energy to a tissue. The method includes providing an apparatus which includes an energy delivery component and an inflatable member disposed around the energy delivery component. At a minimum, the inflatable member is constructed of a flexible inner wall and a flexible outer wall, which, taken together, enclose a cavity therebetween. The inflatable member is expanded such that the inflatable member's outer wall contacts the tissue's surface. Cooling fluid is disposed in the cavity, and energy is delivered to the energy delivery component so that at least a portion of the energy delivered to the energy delivery component passes through the inflatable member's inner wall, through the cooling fluid disposed in the cavity, through the inflatable member's outer wall, and into the tissue. Various apparatus suitable for use in delivering energy to tissues are also disclosed, as is a method for treating GERD or otherwise reducing reflux of a subject's stomach contents into the subject's esophagus.
    • 公开了一种向组织输送能量的方法。 该方法包括提供一种包括能量输送部件和围绕能量输送部件设置的可充气部件的装置。 至少,可膨胀构件由柔性内壁和柔性外壁构成,它们一起在其间包围空腔。 可膨胀构件被膨胀,使得可膨胀构件的外壁接触组织的表面。 冷却流体设置在空腔中,并且能量被输送到能量输送部件,使得输送到能量输送部件的能量的至少一部分通过可膨胀构件的内壁,穿过设置在空腔中的冷却流体,通过 充气构件的外壁,并进入组织。 还公开了适用于向组织递送能量的各种装置,以及用于治疗GERD或以其它方式减少受试者的胃内容物回流到受试者的食道中的方法。
    • 2. 发明授权
    • Method for delivering energy to tissue and apparatus
    • 将能量传递给组织和设备的方法
    • US06755849B1
    • 2004-06-29
    • US10109540
    • 2002-03-28
    • Ashok GowdaRoger J. McNicholsMassoud MotamediPankaj J. Pasricha
    • Ashok GowdaRoger J. McNicholsMassoud MotamediPankaj J. Pasricha
    • A61N5067
    • A61B18/18A61B18/1815A61B2017/22051A61B2018/00023A61B2018/2261
    • Disclosed is a method for delivering energy to a tissue. The method includes providing an apparatus which includes an energy delivery component and an inflatable member disposed around the energy delivery component. At a minimum, the inflatable member is constructed of a flexible inner wall and a flexible outer wall, which, taken together, enclose a cavity therebetween. The inflatable member is expanded such that the inflatable member's outer wall contacts the tissue's surface. Cooling fluid is disposed in the cavity, and energy is delivered to the energy delivery component so that at least a portion of the energy delivered to the energy delivery component passes through the inflatable member's inner wall, through the cooling fluid disposed in the cavity, through the inflatable member's outer wall, and into the tissue. Various apparatus suitable for use in delivering energy to tissues are also disclosed, as is a method for treating GERD or otherwise reducing reflux of a subject's stomach contents into the subject's esophagus.
    • 公开了一种向组织输送能量的方法。 该方法包括提供一种包括能量输送部件和围绕能量输送部件设置的可充气部件的装置。 至少,可膨胀构件由柔性内壁和柔性外壁构成,它们一起在其间包围空腔。 可膨胀构件被膨胀,使得可膨胀构件的外壁接触组织的表面。 冷却流体设置在空腔中,并且能量被输送到能量输送部件,使得输送到能量输送部件的能量的至少一部分通过可膨胀构件的内壁,穿过设置在空腔中的冷却流体,通过 充气构件的外壁,并进入组织。 还公开了适用于向组织递送能量的各种装置,以及用于治疗GERD或以其它方式减少受试者的胃内容物回流到受试者的食道中的方法。
    • 5. 发明授权
    • Implantable biosensor from stratified nanostructured membranes
    • 来自分层纳米结构膜的可植入生物传感器
    • US07863038B2
    • 2011-01-04
    • US10403845
    • 2003-03-31
    • Massoud MotamediNicholas A. KotovJames P. WickstedRinat Esenaliev
    • Massoud MotamediNicholas A. KotovJames P. WickstedRinat Esenaliev
    • C12M1/36
    • A61B5/14532A61B5/1459C12Q1/006G01N33/54373
    • A new class of biosensors and methods for making and using same are disclosed. The biosensors are multi-layered membrane composites, where at least one layer is prepared by the layer-by-layer process and at least one layer is responsive to changes is a property of a biological system such as changes in the concentration of an atom, ion, molecule or molecular assembly. Because the biosensors are multi-layered, a single biosensor is capable monitor a number of different properties of a biological system simultaneously. The biosensors are monitored by systems that impinge an excitation waveform on the biosensors and analyze a reflected and/or a transmitted resultant waveform. Additionally, the biosensors can be associated with field activated electronic components so that implantable, self-contained analytical devices can be constructed and monitored by field generators, where data is transmitted to an analyzer after field activation.
    • 公开了一类新的生物传感器及其制造和使用方法。 生物传感器是多层膜复合材料,其中至少一层通过逐层工艺制备,并且至少一层对变化有反应是生物系统的性质,例如原子浓度的变化, 离子,分子或分子组装。 由于生物传感器是多层次的,所以单个生物传感器能够同时监测生物系统的许多不同性质。 通过在生物传感器上引发激发波形的系统监测生物传感器,并分析反射和/或发射的合成波形。 此外,生物传感器可以与场激活的电子部件相关联,使得可以由现场发生器构建和监测可植入的,独立的分析装置,其中在场激活之后将数据传输到分析器。