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    • 1. 发明授权
    • Biological information detector and biological information measurement device
    • 生物信息检测仪和生物信息测量装置
    • US08740791B2
    • 2014-06-03
    • US12973313
    • 2010-12-20
    • Shigemi SatoYoshitaka IijimaHideto Yamashita
    • Shigemi SatoYoshitaka IijimaHideto Yamashita
    • A61B5/00
    • A61B5/02427A61B5/14552A61B5/6824A61B5/7203A61B2562/0233A61B2562/043
    • A biological information detector includes a first sensor unit for detecting composite information including biological information of a test subject and first noise information originating in external light, having a first light-emitting part for emitting toward there, a first light-receiving part for receiving it including the biological information, reflected there, and the light including the first noise information obtained from the external light, transmitted through there, and a first reflecting and leading part for reflecting the light including the biological and the first noise information, leading it to the first light-receiving part, and a second sensor unit for detecting second noise information originating in the external light, having a second light-receiving part for receiving the light including the second noise information, obtained from the external light and transmitted through there, and a second reflecting, leading part for reflecting the external light and leading it to the second light-receiving part.
    • 一种生物信息检测器,包括用于检测复合信息的第一传感器单元,包括测试对象的生物信息和源于外部光的第一噪声信息,具有用于向其发射的第一发光部分,用于接收测试对象的第一光接收部分 包括反映在那里的生物信息,以及包含从其中透射的外部光获得的第一噪声信息的光和用于反射包括生物和第一噪声信息的光的第一反射和引导部分,将其引导到 第一光接收部分和用于检测源自外部光的第二噪声信息的第二传感器单元,具有第二光接收部分,用于接收从外部光获得的并通过其传输的包括第二噪声信息的光;以及 第二反映,反映外部光线和铅的主要部分 g到第二光接收部分。
    • 3. 发明授权
    • Image processing apparatus and image processing method, and image processing program and recording medium of the same
    • 图像处理装置和图像处理方法以及图像处理程序及其记录介质
    • US06862006B2
    • 2005-03-01
    • US10436504
    • 2003-05-12
    • Shigemi SatoAkira Kubota
    • Shigemi SatoAkira Kubota
    • G06F3/00G06F3/01G06F3/033G09G5/00
    • G06F3/016G06F3/013G06F3/014G06F3/0346
    • An image processing apparatus and an image processing method are provided which are capable of changing display from a virtual space image to a real space image or vice versa, or combining them based on the movement speed of the user's point of gaze while the user is moving in a virtual space. An image processing program and a medium recording the same are also provided. In the image processing apparatus, when the movement of a head mounted display (HMD) in the virtual space is detected (Step S111), the movement speed is calculated (Step S112) and it is determined whether the movement speed is equal to or greater than akm/h. When the movement speed is slower than akm/h, an updated virtual space image reflecting the movement of the HMD is created for display (Steps S114 and S118). When the movement speed is equal to or greater than akm/h, the real image then being taken is displayed as it is (Steps S115 and S118).
    • 提供一种图像处理装置和图像处理方法,其能够将显示从虚拟空间图像改变为真实空间图像或反之亦然,或者在用户移动时基于用户的注视点的移动速度来组合它们 在一个虚拟的空间。 还提供了图像处理程序和记录该图像处理程序的介质。 在图像处理装置中,当检测到虚拟空间中的头戴显示器(HMD)的移动时(步骤S111),计算移动速度(步骤S112),并且确定移动速度是否等于或更大 比一公里/小时。 当移动速度比akm / h慢时,创建反映HMD的移动的更新的虚拟空间图像以进行显示(步骤S114和S118)。 当移动速度等于或大于akm / h时,直接显示正在拍摄的实际图像(步骤S115和S118)。
    • 4. 发明授权
    • Sync crosstalk cancelling circuit
    • 同步串扰消除电路
    • US4945439A
    • 1990-07-31
    • US388295
    • 1989-07-25
    • Shigemi Sato
    • Shigemi Sato
    • G11B5/027G11B5/02G11B5/48G11B5/86G11B27/024G11B27/029
    • G11B5/02G11B27/024G11B27/029G11B5/488G11B5/86G11B2220/90
    • A sync crosstalk cancelling circuit features a record/playback head, capable of sync recording, molded in one piece with a record head section and playback head section and another record/playback head identically constructed. The recording head section of the record/playback heads are either connected in series or parallel at the same polarity, with the same recording current applied to both recording head sections, and at the same time, playback signals reverse in polarity to each other are obtained from the playback head sections of the record/playback heads, their gains adjusted and then applied to a mixing circuit. The mixing circuit outputs the playback signal with the crosstalk elements cancelled.
    • 同步串扰消除电路具有记录/回放头,能够同步记录,与记录头部分和回放头部分成一体,并且相同构造的另一个记录/回放头。 记录/重放头的记录头部分以相同的极性串联或并联连接,同时将记录电流施加到两个记录头部分,并且同时获得彼此极性相反的重放信号 从记录/重放头的回放头部分,调整它们的增益,然后将其应用于混合电路。 混合电路输出消除串音元件的重放信号。
    • 7. 发明授权
    • Hot Isostatic pressing of a planar optical waveguide
    • 平面光波导的热等静压
    • US6122934A
    • 2000-09-26
    • US175137
    • 1998-10-19
    • Takeshi NaritaShigeru KawaguchiShigemi Sato
    • Takeshi NaritaShigeru KawaguchiShigemi Sato
    • G02B6/13G02B6/12G02B6/132C03B11/00C03B29/02
    • G02B6/132G02B2006/12038G02B2006/12147G02B2006/1215
    • An optical waveguide device is provided with a core formed on a substrate and a clad layer. A low-temperature film-forming method, such as the CVD or PVD method, is used in a core forming process for forming the core and a clad forming process for forming the clad layer. The surface of the clad layer is coated with a protective film of chrome or the like in a protective film forming process that is carried out after the clad forming process. In a heating/pressurizing process that is carried out after the protective film forming process, the clad layer is heated and pressurized from its outside by the HIP (hot isostatic pressing) method. This heating/pressurizing process substantially eliminates voids in the clad layer and the like, and enhances or improves the density of a buffer layer, core, and upper clad layer and the transparency of the core layer. The protective film is removed by etching or the like in a removing process.
    • 光波导器件设置有形成在基板和覆层上的芯。 在用于形成芯的芯形成工艺和用于形成包覆层的包层形成工艺中使用诸如CVD或PVD方法的低温成膜方法。 包覆层的表面在包层形成工序后进行的保护膜形成工序中涂覆有铬等保护膜。 在保护膜形成处理之后进行的加热/加压工序中,通过HIP(热等静压)法从外部对包覆层进行加热加压。 该加热/加压工艺基本上消除了包覆层等中的空隙,并且提高或提高了缓冲层,芯和上包层的密度以及芯层的透明度。 在除去过程中通过蚀刻等除去保护膜。
    • 8. 发明授权
    • Fixing assembly of a temperature responsive element and its fixing method
    • 温度敏感元件的固定装置及其固定方法
    • US5483216A
    • 1996-01-09
    • US065115
    • 1993-05-20
    • Yasukazu MizutaniShigemi SatoHideki KosekiRyuhei TanigakiTakayuki Iio
    • Yasukazu MizutaniShigemi SatoHideki KosekiRyuhei TanigakiTakayuki Iio
    • F25B49/02G01K1/14G01K13/02H01H37/52
    • G01K13/02G01K1/14
    • A fixing method and assembly of a temperature responsive element capable of detecting variation in temperature of discharge cooling medium of a compressor exactly and rapidly and preventing the compressor from being burned. A through hole is formed in a cover 6 which covers a path 7B for discharge cooling medium of the compressor. A plug 9 is fixed to the through hole from the side of the path by a fixing member 13. In this case, it is sealed airtightly by means of a packing. Lead terminal pins penetrating the plug 9 is insulatively fixed in the plug airtightly. Leads are connected to one ends of the lead terminal pins projecting outside and the temperature responsive clement 8 is connected to the other ends of the lead terminal pins projecting on the side of the discharge path. The temperature responsive clement 8 is disposed not to come into direct contact with a vessel and the cover 6 of the compressor and is exposed to discharge cooling medium as a whole. Consequently, the temperature responsive element can detect a temperature of the discharge cooling medium exactly and rapidly without influence of external disturbance such as heat from the outside and a path 7A for suction cooling medium.
    • 能够精确,快速地检测压缩机的排出冷却介质的温度变化的温度响应元件的固定方法和组装,并防止压缩机燃烧。 在覆盖用于压缩机的排出冷却介质的路径7B的盖6中形成有通孔。 插头9通过固定构件13从路径侧固定到通孔。在这种情况下,通过密封件密封地密封。 穿过插头9的引线端子针密封地绝对固定在插头中。 引线连接到突出在外部的引线端子引脚的一端,并且温度响应元件8连接到在放电路径侧突出的引线端子引脚的另一端。 温度敏感元件8设置成不与容器和压缩机的盖6直接接触并且作为整体暴露于排放冷却介质。 因此,温度响应元件可以精确而快速地检测排出冷却介质的温度,而不受外部干扰(例如来自外部的热量)和吸入冷却介质的路径7A的影响。
    • 10. 发明授权
    • Optical device and biological information detector
    • 光学装置和生物信息检测器
    • US08932228B2
    • 2015-01-13
    • US13031896
    • 2011-02-22
    • Shigemi Sato
    • Shigemi Sato
    • A61B5/02A61B5/024A61B5/1455A61B5/00
    • A61B5/02427A61B5/14551A61B5/6898
    • An optical device including a contact part having a contact surface and an opposing surface, the contact surface coming into contact with a test subject and the opposing surface being opposite the contact surface; a support body installed on the opposing surface; a first element supported by the support body; and a second element disposed between the opposing surface and the support body; wherein one of the first element and the second element is a light-emitting element for emitting light towards a detection site of the test subject; another of the first element and the second element is a light-receiving element for receiving reflected light, the reflected light being light emitted by the light-emitting element and reflected at the detection site; and the contact part is formed from a material that is transparent with respect to a wavelength of the light emitted by the light-emitting element.
    • 一种光学装置,包括具有接触表面和相对表面的接触部分,所述接触表面与测试对象接触并且所述相对表面与所述接触表面相对; 安装在相对表面上的支撑体; 由支持机构支持的第一个元素; 以及设置在所述相对表面和所述支撑体之间的第二元件; 其中所述第一元件和所述第二元件中的一个是用于朝向所述测试对象的检测位置发射光的发光元件; 第一元件和第二元件中的另一个是用于接收反射光的光接收元件,反射光是由发光元件发射并在检测位置反射的光; 并且所述接触部由相对于由所述发光元件发射的光的波长透明的材料形成。