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    • 1. 发明授权
    • Electronic part, electronic member connection method, and circuit connection member
    • 电子部件,电子部件连接方法和电路连接部件
    • US08653379B2
    • 2014-02-18
    • US13094846
    • 2011-04-27
    • Kazuo InoueRyouji SetakaTsuyoshi Yamakoshi
    • Kazuo InoueRyouji SetakaTsuyoshi Yamakoshi
    • H05K1/03H05K3/32
    • H05K3/325H05K3/365H05K2201/0133H05K2201/10378Y10T29/49124
    • An electronic part includes a first electronic member having a wiring side. An anisotropic conductive sheet has a first side and a second side opposite to the first side and is disposed on the first electronic member so that the wiring side contacts the first side. A second electronic member has a third side and a fourth side opposite to the third side and is disposed on the anisotropic conductive sheet so that the second side contacts the third side. The second electronic member is electrically connected to the first electronic member through the anisotropic conductive sheet. An elastic body has a fifth side and a sixth side opposite to the fifth side and is disposed on the second electronic member so that the fourth side contacts the fifth side. A pressing member is disposed on the sixth side of the elastic body.
    • 电子部件包括具有布线侧的第一电子部件。 各向异性导电片具有与第一侧相对的第一侧和第二侧,并且布置在第一电子部件上,使得布线侧接触第一侧。 第二电子部件具有与第三面相反的第三面和第四面,并设置在各向异性导电片上,使得第二面接触第三面。 第二电子部件通过各向异性导电片与第一电子部件电连接。 弹性体具有与第五面相反的第五面和第六面,并且设置在第二电子部件上,使得第四面接触第五面。 按压构件设置在弹性体的第六面上。
    • 2. 发明申请
    • Device for fluid processor and its fluid flow path setting device, fluid processor, and fluid processing method
    • 流体处理装置及其流体流路设定装置,流体处理装置及流体处理方法
    • US20050161099A1
    • 2005-07-28
    • US10514720
    • 2003-05-27
    • Hiroshi AkemaTsuyoshi Yamakoshi
    • Hiroshi AkemaTsuyoshi Yamakoshi
    • B01J19/00B01L3/00F15C1/04
    • B01J19/0093B01J2219/00783B01J2219/00822B01J2219/00831B01J2219/00833B01J2219/0086B01J2219/00862B01J2219/00873B01J2219/00889B01J2219/00891B01J2219/0095B01L3/502738B01L2300/0861B01L2300/087B01L2300/0874B01L2400/0633B01L2400/0666B33Y80/00Y10T137/2191Y10T137/2213
    • A device for fluid processor comprises a plate-shaped base material, a micro conduit network formed in the base material and formed of a first micro conduit and second micro conduits intersecting with the first micro conduit, a valve provided in each of conduit portions and a valve control mechanism. The valves in the conduit portions are closed, whereby a fluid running route is set, thereby forming a fluid processor that an intended processing is conducted by circulating a fluid through the running route. A fluid suspending cavity is preferably formed at each of the intersections of the micro conduits. A fluid running route setting apparatus is equipped with a conduit portion opening and closing mechanism having a function that individual valve control mechanisms in the device are driven, and the conduit portion opening and closing mechanism is driven by indication of fluid running route setting to a computer. A fluid processor may be provided with a stimulus application mechanism for applying stimulus to a fluid in the micro conduit or fluid suspending cavity in the device. In the fluid processor that a fluid to be processed is liquid, the running route for fluid process is set corresponding to objective processing time, the fluid to be processed is passed through a temporary running route, thereby finding passing time, and a corrected running route for fluid process is set by this time.
    • 用于流体处理器的装置包括板状基材,形成在基材中并由第一微导管和与第一微导管相交的第二微导管形成的微导管网络,设置在每个导管部分中的阀和 阀门控制机构。 管道部分中的阀关闭,由此设置流体运行路线,从而形成流体处理器,其通过使流体通过运行路线循环来进行预期的处理。 优选地,在微管道的每个交叉点处形成流体悬挂腔。 流体运行路径设定装置配备有导管部分开闭机构,其具有驱动装置中的各个阀控制机构的功能,并且通过向计算机指示流体运行路线设置来驱动管道部分开闭机构 。 流体处理器可以设置有刺激施加机构,用于将刺激施加到装置中的微管道或流体悬挂腔中的流体。 在待处理流体为液体的流体处理器中,流体处理的运行路径对应于目标处理时间设定,待处理流体通过临时运行路径,从而找到通过时间,并且修正运行路线 对于流体过程是这个时候设定的。
    • 3. 发明授权
    • Device for fluid processor and its fluid flow path setting device, fluid processor, and fluid processing method
    • 流体处理装置及其流体流路设定装置,流体处理装置及流体处理方法
    • US07537028B2
    • 2009-05-26
    • US10514720
    • 2003-05-27
    • Hiroshi AkemaTsuyoshi Yamakoshi
    • Hiroshi AkemaTsuyoshi Yamakoshi
    • F15C1/04
    • B01J19/0093B01J2219/00783B01J2219/00822B01J2219/00831B01J2219/00833B01J2219/0086B01J2219/00862B01J2219/00873B01J2219/00889B01J2219/00891B01J2219/0095B01L3/502738B01L2300/0861B01L2300/087B01L2300/0874B01L2400/0633B01L2400/0666B33Y80/00Y10T137/2191Y10T137/2213
    • A device for fluid processor comprises a plate-shaped base material, a micro conduit network formed in the base material and formed of a first micro conduit and second micro conduits intersecting with the first micro conduit, a valve provided in each of conduit portions and a valve control mechanism. The valves in the conduit portions are closed, whereby a fluid running route is set, thereby forming a fluid processor that an intended processing is conducted by circulating a fluid through the running route. A fluid suspending cavity is preferably formed at each of the intersections of the micro conduits.A fluid running route setting apparatus is equipped with a conduit portion opening and closing mechanism having a function that individual valve control mechanisms in the device are driven, and the conduit portion opening and closing mechanism is driven by indication of fluid running route setting to a computer.A fluid processor may be provided with a stimulus application mechanism for applying stimulus to a fluid in the micro conduit or fluid suspending cavity in the device.In the fluid processor that a fluid to be processed is liquid, the running route for fluid process is set corresponding to objective processing time, the fluid to be processed is passed through a temporary running route, thereby finding passing time, and a corrected running route for fluid process is set by this time.
    • 用于流体处理器的装置包括板状基材,形成在基材中并由第一微导管和与第一微导管相交的第二微导管形成的微导管网络,设置在每个导管部分中的阀和 阀门控制机构。 管道部分中的阀关闭,由此设置流体运行路线,从而形成流体处理器,其通过使流体通过运行路线循环来进行预期的处理。 优选地,在微管道的每个交叉点处形成流体悬挂腔。 流体运行路径设定装置配备有导管部分开闭机构,其具有驱动装置中的各个阀控制机构的功能,并且通过向计算机指示流体运行路线设置来驱动管道部分开闭机构 。 流体处理器可以设置有刺激施加机构,用于将刺激施加到装置中的微管道或流体悬挂腔中的流体。 在待处理流体为液体的流体处理器中,流体处理的运行路径对应于目标处理时间设定,待处理流体通过临时运行路径,从而找到通过时间,并且修正运行路线 对于流体过程是这个时候设定的。
    • 4. 发明申请
    • Apparatus for cell reaction examination and method of cell reaction examination
    • 细胞反应检测装置及细胞反应检测方法
    • US20060166184A1
    • 2006-07-27
    • US10524663
    • 2003-08-21
    • Kenji YasudaTsuyoshi Yamakoshi
    • Kenji YasudaTsuyoshi Yamakoshi
    • C12M1/34C12Q1/00
    • G01N35/1097B01L3/5025B01L3/502738B01L2300/0861B01L2400/0622B01L2400/0633G01N15/1456G01N35/08G01N2035/0097
    • Disclosed herein are an inspection apparatus for cell reaction by a device for liquid processor, which can set a fluid running route to a cell reaction site required according to the kind of an inspection of a cell reaction to be conducted with a great degree of freedom, and an inspection method of a cell reaction using the inspection apparatus for cell reaction. The inspection apparatus for cell reaction is composed of a device for liquid processor comprising a base material, micro conduits formed in the base material, micro spaces, valves and a valve control mechanism, and is used in an inspection of a cell reaction, in which a liquid medium is fed through a micro conduit linked to a micro space, in which cells are placed, and a test liquid containing a cell stimulator is fed to inspect a cell reaction caused by the test liquid. The inspection method of the cell reaction utilizes the inspection apparatus having the construction described above.
    • 本发明公开了一种用于液体处理装置的电池反应的检查装置,其可以根据要进行的电池反应的检查的种类,将流体流动路径设定为要求的流通路径, 以及使用细胞反应检查装置的细胞反应的检查方法。 电池反应检查装置由液体处理装置构成,包括基材,形成在基材中的微导管,微空间,阀和阀控制机构,用于检测电池反应,其中 液体介质通过连接到其上放置细胞的微空间的微导管进料,并且供给含有细胞刺激剂的测试液体以检查由测试液体引起的细胞反应。 电池反应的检查方法利用具有上述结构的检查装置。