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
    • 3. 发明授权
    • 3-dimensional imaging by acoustic warping and defocusing
    • 通过声学翘曲和散焦三维成像
    • US07715018B2
    • 2010-05-11
    • US11784304
    • 2007-04-05
    • Morteza GharibJoshua Adams
    • Morteza GharibJoshua Adams
    • G01B11/24
    • G01S15/8993G01N29/06G01N2291/106G01S7/52026G01S7/5205G01S15/8977
    • The present invention relates to a system for three-dimensional (3-D) acoustic imaging of a scattering structure using information from a two-dimensional (2-D) image. The system uses a characterized sensor array to emit a signal from the sensor array into an object of interest to generate at least one 2-D representation of the object of interest. The 2-D representation comprises a plurality of x and y coordinate pairs and at least one candidate scattering structure. The candidate scattering structure comprises a shape defined by at least one pair of x and y coordinates. The candidate scattering structure shape is restricted to at least one pair of x and y coordinates. The pair of x and y coordinates of the candidate scattering structure shape are then compared with a first coordinate-dependent response function to assign an x, y, and z position of a scattering structure in 3-D space.
    • 本发明涉及使用来自二维(2-D)图像的信息的散射结构的三维(3-D)声学成像系统。 该系统使用表征的传感器阵列将来自传感器阵列的信号发射到感兴趣的对象中,以产生感兴趣对象的至少一个2-D表示。 2-D表示包括多个x和y坐标对以及至少一个候选散射结构。 候选散射结构包括由至少一对x和y坐标定义的形状。 候选散射结构形状被限制为至少一对x和y坐标。 然后将候选散射结构形状的一对x和y坐标与第一坐标依赖响应函数进行比较,以在3-D空间中分配散射结构的x,y和z位置。
    • 4. 发明申请
    • 3-Dimensional imaging by acoustic warping and defocusing
    • 通过声学翘曲和散焦三维成像
    • US20070236694A1
    • 2007-10-11
    • US11784304
    • 2007-04-05
    • Morteza GharibJoshua Adams
    • Morteza GharibJoshua Adams
    • G01B11/00G01B11/24
    • G01S15/8993G01N29/06G01N2291/106G01S7/52026G01S7/5205G01S15/8977
    • The present invention relates to a system for three-dimensional (3-D) acoustic imaging of a scattering structure using information from a two-dimensional (2-D) image. The system uses a characterized sensor array to emit a signal from the sensor array into an object of interest to generate at least one 2-D representation of the object of interest. The 2-D representation comprises a plurality of x and y coordinate pairs and at least one candidate scattering structure. The candidate scattering structure comprises a shape defined by at least one pair of x and y coordinates. The candidate scattering structure shape is restricted to at least one pair of x and y coordinates. The pair of x and y coordinates of the candidate scattering structure shape are then compared with a first coordinate-dependent response function to assign an x, y, and z position of a scattering structure in 3-D space.
    • 本发明涉及使用来自二维(2-D)图像的信息的散射结构的三维(3-D)声学成像系统。 该系统使用表征的传感器阵列将来自传感器阵列的信号发射到感兴趣的对象中,以产生感兴趣对象的至少一个2-D表示。 2-D表示包括多个x和y坐标对以及至少一个候选散射结构。 候选散射结构包括由至少一对x和y坐标定义的形状。 候选散射结构形状被限制为至少一对x和y坐标。 然后将候选散射结构形状的一对x和y坐标与第一坐标依赖响应函数进行比较,以在3-D空间中分配散射结构的x,y和z位置。
    • 6. 发明授权
    • Modular plug with two piece housing
    • 带两件式外壳的模块插头
    • US06368143B1
    • 2002-04-09
    • US09502275
    • 2000-02-11
    • Joshua Adams
    • Joshua Adams
    • H01R424
    • H01R13/26H01R4/2433H01R13/506
    • An enhanced performance modular plug with a two piece housing is provided. The plug comprises a plurality of contact members each having an insulation displacement contact (IDC) end and a distal end. A first housing portion includes a plurality of slots for receiving the distal end of the plurality of contact members, a first latching assembly for mating the plug with a telecommunications outlet, and a second latching assembly. A second housing portion includes a first end for receiving the second latching assembly and a second end for receiving a cable, the first end having a plurality of channels for receiving a plurality of wires disposed in the cable.
    • 提供了具有两件式外壳的增强型性能模块化插头。 插头包括多个接触构件,每个接触构件具有绝缘位移接触端(IDC)端和远端。 第一壳体部分包括用于容纳多个接触构件的远端的多个狭槽,用于将插头与电信插座配合的第一闭锁组件和第二闭锁组件。 第二壳体部分包括用于接收第二闩锁组件的第一端和用于接收电缆的第二端,所述第一端具有用于接收设置在电缆中的多根电线的多个通道。
    • 7. 发明授权
    • 3-dimensional imaging by acoustic warping and defocusing
    • 通过声学翘曲和散焦三维成像
    • US08169621B2
    • 2012-05-01
    • US12729100
    • 2010-03-22
    • Morteza GharibJoshua Adams
    • Morteza GharibJoshua Adams
    • G01B11/24
    • G01S15/8993G01N29/06G01N2291/106G01S7/52026G01S7/5205G01S15/8977
    • The present invention relates to a system for three-dimensional (3-D) acoustic imaging of a scattering structure using information from a two-dimensional (2-D) image. The system uses a characterized sensor array to emit a signal from the sensor array into an object of interest to generate at least one 2-D representation of the object of interest. The 2-D representation comprises a plurality of x and y coordinate pairs and at least one candidate scattering structure. The candidate scattering structure comprises a shape defined by at least one pair of x and y coordinates. The candidate scattering structure shape is restricted to at least one pair of x and y coordinates. The pair of x and y coordinates of the candidate scattering structure shape are then compared with a first coordinate-dependent response function to assign an x, y, and z position of a scattering structure in 3-D space.
    • 本发明涉及使用来自二维(2-D)图像的信息的散射结构的三维(3-D)声学成像系统。 该系统使用表征的传感器阵列将来自传感器阵列的信号发射到感兴趣的对象中,以产生感兴趣对象的至少一个2-D表示。 2-D表示包括多个x和y坐标对以及至少一个候选散射结构。 候选散射结构包括由至少一对x和y坐标定义的形状。 候选散射结构形状被限制为至少一对x和y坐标。 然后将候选散射结构形状的一对x和y坐标与第一坐标依赖响应函数进行比较,以在3-D空间中分配散射结构的x,y和z位置。
    • 10. 发明申请
    • APPARATUS AND METHODS FOR MONITORING A TOOTH
    • 用于监测牙齿的装置和方法
    • US20100143861A1
    • 2010-06-10
    • US12524554
    • 2008-01-25
    • Morteza GharibJoshua AdamsBjarne BergheimAdam E. Piotrowski
    • Morteza GharibJoshua AdamsBjarne BergheimAdam E. Piotrowski
    • A61C15/02
    • A61B5/4547A61B5/113A61B8/08A61C5/40A61C19/04A61C19/042
    • Apparatus and methods for monitoring a tooth may include sensing acoustic energy propagating from regions (such as a root canal system) in and/or near a tooth. The apparatus and methods may be used with root canal cleaning treatments to determine the efficacy of the treatment and/or to reduce risk of post-treatment complications. An acoustic source (e.g., an acoustic transducer and/or a high-speed liquid jet) may be used to transmit energy into a tooth and/or regions near a tooth. An acoustic receiver may be used to detect acoustic signatures of acoustic events (e.g., acoustic echoes and/or acoustic cavitation) occurring in the tooth. The acoustic signatures may be used, for example, to determine the progress of a root canal cleaning treatment and/or the presence or movement of material toward a periapical region of the tooth. Apparatus and methods for monitoring a tooth may include detecting impact of a first jet on a tooth and actuating a second jet in response to detection of the impact.
    • 用于监测牙齿的装置和方法可以包括感测从牙齿内和/或附近的区域(例如根管系统)传播的声能。 该设备和方法可用于根管清洁处理以确定治疗的功效和/或降低治疗后并发症的风险。 可以使用声源(例如,声换能器和/或高速液体射流)将能量传递到齿和/或牙齿附近的区域。 声学接收器可用于检测出现在牙齿中的声学事件(例如,声学回声和/或声空泡)的声学特征。 声学特征可以用于例如确定根管清洁治疗的进展和/或材料向牙根尖周区域的存在或移动。 用于监测牙齿的装置和方法可以包括检测第一射流对牙齿的影响并响应于冲击的检测而致动第二射流。