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公开(公告)号:US20110132094A1
公开(公告)日:2011-06-09
申请号:US13055376
申请日:2009-07-17
申请人: Kozo Nakamura , Isao Onishi , Satoru Ohashi , Eiichi Minagawa , Koji Hirota , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Masaru Murashita
发明人: Kozo Nakamura , Isao Onishi , Satoru Ohashi , Eiichi Minagawa , Koji Hirota , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Masaru Murashita
IPC分类号: G01D21/00
CPC分类号: A61B8/0858 , A61B5/4514 , A61B5/4528 , A61B8/4209 , A61B8/4281 , A61B8/4405 , A61B90/50 , A61B2090/378
摘要: A mounting unit (16) is aligned by using a mounting unit frame (58) touching the thigh and a knee-contacting portion (62) touching the knee, with the knee being bent. The mounting unit is also equipped with a probe support frame (60) used for moving an ultrasonic probe along the knee cap. The probe support frame moves rotationally about the mechanical center of the knee joint, thereby allowing the ultrasonic probe (78) to move along the knee cap while facing toward the mechanical center of the knee joint and to perform scanning of an ultrasonic beam.
摘要翻译: 安装单元(16)通过使用接触大腿的安装单元框架(58)和接触膝盖的膝盖接触部分(62)而弯曲而对准。 安装单元还配备有用于沿着膝盖帽移动超声波探头的探针支撑框架(60)。 探针支撑框架围绕膝关节的机械中心旋转移动,从而允许超声波探头(78)沿着膝盖帽移动,同时面向膝关节的机械中心并执行超声波束的扫描。
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公开(公告)号:US20110126629A1
公开(公告)日:2011-06-02
申请号:US13055415
申请日:2009-07-17
申请人: Kozo Nakamura , Isao Onishi , Satoru Ohashi , Eiichi Minagawa , Koji Hirota , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Masaru Murashita
发明人: Kozo Nakamura , Isao Onishi , Satoru Ohashi , Eiichi Minagawa , Koji Hirota , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Masaru Murashita
IPC分类号: G01N29/00
CPC分类号: A61B8/4209 , A61B8/0858 , A61B8/4281
摘要: An acoustic matching device has a water bag (64) that contains water and a water bag support frame (66) that sandwiches and supports the water bag on the left and right sides of the knee and curves along the knee cap. The water bag becomes a plate shape curved along the shape of the water bag support frame, which touches the knee cap and fits the unevenness of the knee. When an ultrasonic probe is moved along the knee cap, the acoustic matching between the knee cap and the ultrasonic probe is obtained.
摘要翻译: 声学匹配装置具有含水的水袋(64)和水袋支撑框架(66),所述水袋支撑框架(66)夹持并支撑在膝盖的左侧和右侧并且沿着膝盖弯曲的水袋。 水袋成为沿着水袋支撑框架的形状弯曲的板形,其接触膝盖并适配膝盖的不平坦部分。 当超声波探头沿膝盖移动时,获得膝盖与超声波探头之间的声学匹配。
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公开(公告)号:US08522617B2
公开(公告)日:2013-09-03
申请号:US13055415
申请日:2009-07-17
申请人: Kozo Nakamura , Isao Onishi , Satoru Ohashi , Eiichi Minagawa , Koji Hirota , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Masaru Murashita
发明人: Kozo Nakamura , Isao Onishi , Satoru Ohashi , Eiichi Minagawa , Koji Hirota , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Masaru Murashita
IPC分类号: G01N29/00
CPC分类号: A61B8/4209 , A61B8/0858 , A61B8/4281
摘要: An acoustic matching device has a water bag (64) that contains water and a water bag support frame (66) that sandwiches and supports the water bag on the left and right sides of the knee and curves along the knee cap. The water bag becomes a plate shape curved along the shape of the water bag support frame, which touches the knee cap and fits the unevenness of the knee. When an ultrasonic probe is moved along the knee cap, the acoustic matching between the knee cap and the ultrasonic probe is obtained.
摘要翻译: 声学匹配装置具有含水的水袋(64)和水袋支撑框架(66),所述水袋支撑框架(66)夹持并支撑在膝盖的左侧和右侧并且沿着膝盖弯曲的水袋。 水袋成为沿着水袋支撑框架的形状弯曲的板形,其接触膝盖并适配膝盖的不平坦部分。 当超声波探头沿膝盖移动时,获得膝盖与超声波探头之间的声学匹配。
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公开(公告)号:US08453511B2
公开(公告)日:2013-06-04
申请号:US13055376
申请日:2009-07-17
申请人: Kozo Nakamura , Isao Onishi , Satoru Ohashi , Eiichi Minagawa , Koji Hirota , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Masaru Murashita
发明人: Kozo Nakamura , Isao Onishi , Satoru Ohashi , Eiichi Minagawa , Koji Hirota , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Masaru Murashita
CPC分类号: A61B8/0858 , A61B5/4514 , A61B5/4528 , A61B8/4209 , A61B8/4281 , A61B8/4405 , A61B90/50 , A61B2090/378
摘要: A mounting unit (16) is aligned by using a mounting unit frame (58) touching the thigh and a knee-contacting portion (62) touching the knee, with the knee being bent. The mounting unit is also equipped with a probe support frame (60) used for moving an ultrasonic probe along the knee cap. The probe support frame moves rotationally about the mechanical center of the knee joint, thereby allowing the ultrasonic probe (78) to move along the knee cap while facing toward the mechanical center of the knee joint and to perform scanning of an ultrasonic beam.
摘要翻译: 安装单元(16)通过使用接触大腿的安装单元框架(58)和接触膝盖的膝盖接触部分(62)而弯曲而对准。 安装单元还配备有用于沿着膝盖帽移动超声波探头的探针支撑框架(60)。 探针支撑框架围绕膝关节的机械中心旋转移动,从而允许超声波探头(78)沿着膝盖帽移动,同时面向膝关节的机械中心并执行超声波束的扫描。
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公开(公告)号:US08317710B2
公开(公告)日:2012-11-27
申请号:US13055405
申请日:2009-07-17
申请人: Kozo Nakamura , Isao Onishi , Juntaro Matsuyama , Kenji Tobita , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Eiichi Minagawa
发明人: Kozo Nakamura , Isao Onishi , Juntaro Matsuyama , Kenji Tobita , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Eiichi Minagawa
CPC分类号: A61B8/0875 , A61B5/0053 , A61B5/4504 , A61B5/6828 , A61B8/40 , A61B8/4218
摘要: Provided is a bone inspecting system for placing the lower legs (L) of an examinee (P) on a proximal support block (26) and a distal support block (28) mounted on a turning base (24). The proximal support block supports the heads of fibula, and the distal support block supports the lateral malleolus or medial malleolus of a tibial distal end of the examinee. The turning base is supported turnably on a turning axis positioned near the knees of the examinee, with respect to a main base (22), and is moved up and down by an elevating mechanism (30) disposed near the ankles. The turning base (24) is turned by the elevating mechanism while bearing the lower legs thereon, thereby positioning the lower legs horizontally.
摘要翻译: 提供了一种骨检查系统,用于将受检者(P)的下腿(L)放置在安装在转动底座(24)上的近侧支撑块(26)和远侧支撑块(28)上。 近端支撑块支撑腓骨头,并且远端支撑块支撑受检者的胫骨远端的外侧踝或内侧踝。 转动基座相对于主基座(22)可转动地支撑在位于受检者的膝盖附近的转动轴上,并且通过设置在脚踝附近的升降机构(30)上下移动。 通过升降机构转动转动基座(24),同时在其上支撑下腿,从而水平地定位下腿。
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公开(公告)号:US20110130688A1
公开(公告)日:2011-06-02
申请号:US13055405
申请日:2009-07-17
申请人: Kozo Nakamura , Isao Onishi , Juntaro Matsuyama , Kenji Tobita , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Eiichi Minagawa
发明人: Kozo Nakamura , Isao Onishi , Juntaro Matsuyama , Kenji Tobita , Ryoichi Sakai , Koji Ogawa , Koichi Miyasaka , Eiichi Minagawa
IPC分类号: A61N7/00
CPC分类号: A61B8/0875 , A61B5/0053 , A61B5/4504 , A61B5/6828 , A61B8/40 , A61B8/4218
摘要: Provided is a bone inspecting system for placing the lower legs (L) of an examinee (P) on a proximal support block (26) and a distal support block (28) mounted on a turning base (24). The proximal support block supports the heads of fibula, and the distal support block supports the lateral malleolus or medial malleolus of a tibial distal end of the examinee. The turning base is supported turnably on a turning axis positioned near the knees of the examinee, with respect to a main base (22), and is moved up and down by an elevating mechanism (30) disposed near the ankles. The turning base (24) is turned by the elevating mechanism while bearing the lower legs thereon, thereby positioning the lower legs horizontally.
摘要翻译: 提供了一种骨检查系统,用于将受检者(P)的下腿(L)放置在安装在转动底座(24)上的近侧支撑块(26)和远侧支撑块(28)上。 近端支撑块支撑腓骨头,并且远端支撑块支撑受检者的胫骨远端的外侧踝或内侧踝。 转动基座相对于主基座(22)可转动地支撑在位于受检者的膝盖附近的转动轴上,并且通过设置在脚踝附近的升降机构(30)上下移动。 通过升降机构转动转动基座(24),同时在其上支撑下腿,从而水平地定位下腿。
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公开(公告)号:US20110224545A1
公开(公告)日:2011-09-15
申请号:US13129605
申请日:2009-11-02
申请人: Kozo Nakamura , Isao Onishi , Juntaro Matsuyama , Kenji Tobita , Ryoichi Sakai
发明人: Kozo Nakamura , Isao Onishi , Juntaro Matsuyama , Kenji Tobita , Ryoichi Sakai
IPC分类号: A61B8/00
CPC分类号: A61B8/0875 , A61B5/0053 , A61B5/4504 , A61B8/14 , A61B8/485
摘要: An ultrasonic beam (40) for echo tracking is formed for a healthy portion (52a) of a bone (50) containing healthy portions (52a, 52b) and a fractured portion (54). Echo tracking processing is executed over the state where a load F is not applied to the bone (50) and the state where the load F is applied to the bone (50) so as to calculate a distortion amount of the bone (50) accompanying the load F via the ultrasonic beam (40) formed for the healthy portion (52a). The state of union of the fractured portion (54) is evaluated in accordance with the distortion amount obtained via the healthy portion (52a).
摘要翻译: 对于包含健康部分(52a,52b)和断裂部分(54)的骨骼(50)的健康部分(52a)形成用于回波跟踪的超声波束(40)。 在负荷F不施加到骨骼(50)的状态和负荷F施加到骨骼(50)的状态下执行回波跟踪处理,以便计算伴随着骨骼(50)的变形量 通过为健康部分(52a)形成的超声波束(40)的负载F。 根据通过健康部分(52a)获得的失真量来评价断裂部(54)的结合状态。
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公开(公告)号:US20060241447A1
公开(公告)日:2006-10-26
申请号:US11390788
申请日:2006-03-28
申请人: Akimitsu Harada , Ryoichi Sakai , Kozo Nakamura , Isao Ohnishi
发明人: Akimitsu Harada , Ryoichi Sakai , Kozo Nakamura , Isao Ohnishi
IPC分类号: A61B8/00
CPC分类号: A61B8/0875 , A61B5/6843 , A61B8/485 , A61B2562/0204 , A61B2562/046 , G01S7/52017 , G01S15/8925
摘要: An ultrasonic diagnostic apparatus according to the present invention comprises a plurality of transducer units which are two-dimensionally arranged to transmit/receive an ultrasonic wave to/from hard tissue; a transceiver unit which receives an echo signal for each transducer unit from the plurality of transducer units; a surface point specifying unit which specifies a surface point corresponding to a surface of the hard tissue for each echo signal; and a form data generator unit which generates form data of hard tissue surface on the basis of a plurality of surface points obtained two-dimensionally from the echo signals of the plurality of transducer units.
摘要翻译: 根据本发明的超声波诊断装置包括多个传感器单元,其被二维布置以向/从硬组织传送/接收超声波; 收发器单元,其从所述多个换能器单元接收每个换能器单元的回波信号; 表面点指定单元,其针对每个回波信号指定对应于硬组织的表面的表面点; 以及形成数据生成单元,其基于从所述多个换能器单元的回波信号二维地获得的多个表面点,生成硬质组织表面的形式数据。
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公开(公告)号:US20060074311A1
公开(公告)日:2006-04-06
申请号:US10951322
申请日:2004-09-27
申请人: Ryoichi Sakai , Akimitsu Harada , Kozo Nakamura , Isao Ohnishi , Jyuntaro Matsuyama , Toshiro Uehara
发明人: Ryoichi Sakai , Akimitsu Harada , Kozo Nakamura , Isao Ohnishi , Jyuntaro Matsuyama , Toshiro Uehara
IPC分类号: A61B8/00
CPC分类号: A61B8/0875 , A61B5/0048 , A61B5/4504 , A61B8/485
摘要: An echo tracking processor unit detects a bone surface section based on an echo signal and tracks a position of the bone surface section. An interpolation line generator unit generates an interpolation line connecting tracking points which represent the tracked bone surface section. A translational displacement corrector unit removes a translational displacement component between an interpolation line corresponding to a time phase of a no-load state stored in a memory and an interpolation line corresponding to a time phase in a loaded state output from the interpolation line generator unit. A strain calculator unit calculates an amount of strain of bone for each time phase and outputs to a characteristic curve generator unit. The characteristic curve generator unit generates a characteristic curve related to the strain of bone based on a load value output from a load measurement device and the amount of strain of bone output from the strain calculator unit.
摘要翻译: 回波跟踪处理器单元基于回波信号检测骨表面部分并跟踪骨表面部分的位置。 内插线发生器单元产生连接表示跟踪骨表面部分的跟踪点的内插线。 平移位移校正单元去除与存储在存储器中的空载状态的时间相位相对应的内插线和与从内插线发生器单元输出的加载状态中的时间相对应的内插线之间的平移位移分量。 应变计算器单元计算每个时间相位的骨骼的应变量,并输出到特征曲线发生器单元。 特征曲线发生器单元基于从负载测量装置输出的负载值和从应变计算器单元输出的骨的应变量,生成与骨骼的应变有关的特性曲线。
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公开(公告)号:US07841983B2
公开(公告)日:2010-11-30
申请号:US11390788
申请日:2006-03-28
申请人: Akimitsu Harada , Ryoichi Sakai , Kozo Nakamura , Isao Ohnishi
发明人: Akimitsu Harada , Ryoichi Sakai , Kozo Nakamura , Isao Ohnishi
IPC分类号: A61B8/00
CPC分类号: A61B8/0875 , A61B5/6843 , A61B8/485 , A61B2562/0204 , A61B2562/046 , G01S7/52017 , G01S15/8925
摘要: An ultrasonic diagnostic apparatus according to the present invention comprises a plurality of transducer units which are two-dimensionally arranged to transmit/receive an ultrasonic wave to/from hard tissue; a transceiver unit which receives an echo signal for each transducer unit from the plurality of transducer units; a surface point specifying unit which specifies a surface point corresponding to a surface of the hard tissue for each echo signal; and a form data generator unit which generates form data of hard tissue surface on the basis of a plurality of surface points obtained two-dimensionally from the echo signals of the plurality of transducer units.
摘要翻译: 根据本发明的超声波诊断装置包括多个传感器单元,其被二维布置以向/从硬组织传送/接收超声波; 收发器单元,其从所述多个换能器单元接收每个换能器单元的回波信号; 表面点指定单元,其针对每个回波信号指定对应于硬组织的表面的表面点; 以及形成数据生成单元,其基于从所述多个换能器单元的回波信号二维地获得的多个表面点,生成硬质组织表面的形式数据。
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