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    • 1. 发明授权
    • Positioning system for an applicator and positioning method for an applicator
    • 敷贴机定位系统及敷贴机定位方法
    • US07341583B2
    • 2008-03-11
    • US10809543
    • 2004-03-26
    • Hiroshi ShionoAkira SakaguchiShin Maki
    • Hiroshi ShionoAkira SakaguchiShin Maki
    • A61B18/18
    • A61B5/6806A61B5/05A61B8/08
    • A positioning system for an applicator includes a glove for being used for a diagnosis of the affected part, a mark body provided on the glove, an applicator for being inserted into a living body, and an energy emitter provided on the applicator for supplying energy to the living body. The positioning system further includes a sensor provided on the applicator which is capable of detecting the distance to the mark body, a control apparatus for discriminating an optimum position of the applicator based on the distance between the sensor and the mark body while the mark body is disposed in the proximity of the affected part based on a diagnosis performed using the glove, and a display apparatus for displaying a result of the discrimination by the control apparatus.
    • 一种用于涂抹器的定位系统,包括用于诊断患部的手套,设置在手套上的标记体,用于插入到生物体中的涂抹器,以及设置在涂敷器上的能量发射器,用于将能量供给到 活体。 所述定位系统还包括设置在所述施加器上的传感器,其能够检测到所述标记体的距离;控制装置,用于基于所述传感器和所述标记体之间的距离来识别所述涂抹器的最佳位置,同时所述标记体为 基于使用手套进行的诊断,设置在受影响部位附近,以及显示装置,用于显示控制装置的辨别结果。
    • 2. 发明授权
    • Medical energy irradiating apparatus
    • 医疗能量照射装置
    • US07510553B2
    • 2009-03-31
    • US11090241
    • 2005-03-28
    • Hiroshi ShionoAkira SakaguchiYuichiro Irisawa
    • Hiroshi ShionoAkira SakaguchiYuichiro Irisawa
    • A61B18/20
    • A61B18/24A61B18/18A61B2017/00088A61B2017/00274A61B2018/00023A61B2018/00547
    • A temperature measuring unit of a temperature sensor has electrodes disposed on the upper and lower surfaces of a temperature measuring element, thin-film substrates disposed on the upper and lower surfaces of the electrodes, and laser beam shield plates disposed on the upper and lower surfaces of the thin-film substrates. One of the electrodes is bonded to the temperature measuring element by a conductive adhesive, and the other electrode is not bonded to the temperature measuring element by a conductive adhesive. When the temperature sensor is bonded to a hollow cylinder of an insert, the temperature measuring unit is curved along the surface of the hollow cylinder, tending to develop tensile stresses in the other electrode. At this time, the other electrode is positionally displaced depending on the developed tensile stresses, allowing the temperature sensor to be adjusted in length. Consequently, the temperature sensor is prevented from being broken or damaged.
    • 温度传感器的温度测量单元具有设置在温度测量元件的上表面和下表面上的电极,设置在电极的上表面和下表面上的薄膜基板和设置在电极的上表面和下表面上的激光束屏蔽板 的薄膜基板。 其中一个电极通过导电粘合剂结合到温度测量元件,另一个电极不通过导电粘合剂结合到温度测量元件。 当温度传感器结合到插入件的中空圆柱体时,温度测量单元沿着中空圆柱体的表面弯曲,倾向于在另一个电极中产生拉伸应力。 此时,根据显影的拉伸应力,另一个电极位移位移,允许温度传感器的长度调节。 因此,防止温度传感器破损或损坏。
    • 4. 发明申请
    • Medical energy irradiating apparatus
    • 医疗能量照射装置
    • US20050222559A1
    • 2005-10-06
    • US11090241
    • 2005-03-28
    • Hiroshi ShionoAkira SakaguchiYuichiro Irisawa
    • Hiroshi ShionoAkira SakaguchiYuichiro Irisawa
    • A61B17/00A61B18/00A61B18/18A61B18/24A61N5/06A61B18/20
    • A61B18/24A61B18/18A61B2017/00088A61B2017/00274A61B2018/00023A61B2018/00547
    • A temperature measuring unit of a temperature sensor has electrodes disposed on the upper and lower surfaces of a temperature measuring element, thin-film substrates disposed on the upper and lower surfaces of the electrodes, and laser beam shield plates disposed on the upper and lower surfaces of the thin-film substrates. One of the electrodes is bonded to the temperature measuring element by a conductive adhesive, and the other electrode is not bonded to the temperature measuring element by a conductive adhesive. When the temperature sensor is bonded to a hollow cylinder of an insert, the temperature measuring unit is curved along the surface of the hollow cylinder, tending to develop tensile stresses in the other electrode. At this time, the other electrode is positionally displaced depending on the developed tensile stresses, allowing the temperature sensor to be adjusted in length. Consequently, the temperature sensor is prevented from being broken or damaged.
    • 温度传感器的温度测量单元具有设置在温度测量元件的上表面和下表面上的电极,设置在电极的上表面和下表面上的薄膜基板和设置在电极的上表面和下表面上的激光束屏蔽板 的薄膜基板。 其中一个电极通过导电粘合剂结合到温度测量元件,另一个电极不通过导电粘合剂结合到温度测量元件。 当温度传感器结合到插入件的中空圆柱体时,温度测量单元沿着中空圆柱体的表面弯曲,倾向于在另一个电极中产生拉伸应力。 此时,根据显影的拉伸应力,另一个电极位移位移,允许温度传感器的长度调节。 因此,防止温度传感器破损或损坏。
    • 6. 发明授权
    • Thermal therapy apparatus
    • 热疗仪
    • US06695871B1
    • 2004-02-24
    • US09637331
    • 2000-08-10
    • Shin MakiAkira SakaguchiShigeki Ariura
    • Shin MakiAkira SakaguchiShigeki Ariura
    • A61N506
    • A61N5/0601A61B2017/00274A61B2018/00547A61B2018/2283A61N2005/067
    • In a thermal therapy apparatus for treating a vital tissue by irradiating the tissue with a laser beam, a display unit displays a figure indicating the shape of a diseased part to be heated on the basis of information concerning the diseased part. Heating regions are arranged in the displayed figure indicating the diseased part shape by using identifiers corresponding to individual heating conditions. In accordance with size/position information of these heating regions arranged, heating conditions such as the laser intensity laser irradiation time and laser irradiation angle are set. Laser beam irradiation is performed by controlling the irradiation in accordance with the set heating conditions. The information pertaining to the diseased part can also be input on the basis of an ultrasonic signal from an ultrasonic probe separated from or installed in the laser irradiation portion.
    • 在通过用激光束照射组织来治疗重要组织的热治疗装置中,显示单元根据与患病部位有关的信息显示表示被加热部位的形状的图。 加热区域通过使用与各个加热条件相对应的标识符来布置在显示的图中,表示患病部位形状。 根据配置的这些加热区域的尺寸/位置信息,设定激光强度激光照射时间和激光照射角度等加热条件。 通过根据设定的加热条件控制照射来进行激光束照射。 还可以基于从与激光照射部分分离或安装在激光照射部分的超声波探头的超声波信号输入与病变部分有关的信息。
    • 8. 发明授权
    • Medical energy irradiation apparatus
    • 医疗能量照射装置
    • US07022118B2
    • 2006-04-04
    • US10180291
    • 2002-06-27
    • Shigeki AriuraAkira SakaguchiShin Maki
    • Shigeki AriuraAkira SakaguchiShin Maki
    • A61B18/20
    • A61B1/00091A61B1/126A61B1/127A61B18/201A61B18/22A61B90/70A61B2017/00274A61B2018/00011A61B2018/00547A61B2018/00982A61B2018/208A61B2018/2283A61B2090/3937A61B2090/701G02B23/2476
    • To provide a medical energy irradiation apparatus which permits easy and accurate establishment of a site of tissues of a living body targeted for irradiation with energy, when doctors use the medical energy irradiation apparatus to perform a cure for a prostatic hyperplasia or the like. The doctors insert an applicator 110 of the medical energy irradiation apparatus to an urinary bladder 161 and fix an endoscope 135 near to an entrance of an urethra. In this arrangement, when observing with the endoscope (135), a seminal colliculas 144 observed through a side-observation window 130 is observed toward a lower part of an observed image (schematic diagram) displayed on a display unit, and a positioning marker 140 in an interior of the applicator is observed toward an upper part of an observed image. The doctors can accurately determine a position to be irradiated with laser light from positions of the seminal colliculas 144 and the positioning marker 140 observed, and a direction of irradiation with laser light from a position of a direction marker 142, respectively.
    • 为了提供医疗能量照射装置,其能够容易且准确地建立目标为能量照射的生物体的组织部位,医生使用医疗用能量照射装置进行前列腺增生等的治愈时。 医生将医疗能量照射装置的施用器110插入到膀胱161中,并将内窥镜135固定在尿道入口附近。 在这种布置中,当利用内窥镜(135)观察时,朝向显示在显示单元上的观察图像(示意图)的下部观察通过侧观察窗130观察到的精液菌落144,并且定位标记器140 在观察图像的上部观察到施用器的内部。 医生可以准确地确定从被观察到的精液菌落144和定位标记物140的位置用激光照射的位置,以及分别从方向标记物142的位置照射激光的方向。