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    • 76. 发明授权
    • Extracellular potential measuring device and its manufacturing method
    • 细胞外电位测定装置及其制造方法
    • US08257962B2
    • 2012-09-04
    • US10513392
    • 2004-03-08
    • Masaya NakataniHiroaki OkaFumiaki Emoto
    • Masaya NakataniHiroaki OkaFumiaki Emoto
    • C12M1/42C12M3/00C12N13/00
    • G01N33/48728
    • An extracellular potential measuring device includes a plate portion having a first surface and a second surface opposite to the first surface, and an electrode provided on the second surface of the plate portion. In the plate portion, a pocket having an opening which opens to the first surface is formed, and a through-hole communicating to the second surface from the pocket. The through-hole communicates from a position which is closer to the opening than a deepest point of the first pocket. The electrode is provided around of the opening of the through-hole. In this device, even if a cell to be examined does not reach the deepest point of the pocket, a cell membrane of the cell can tightly attaches onto the through-hole securely without a clearance. Hence, culture solution inside the through-hole is isolated from culture solution over an upper surface of the plate portion, thereby allowing electrochemical changes caused by activities of the cell to be detected efficiently with a detector electrode.
    • 细胞外电位测量装置包括具有第一表面和与第一表面相对的第二表面的板部分,以及设置在板部分的第二表面上的电极。 在该板部分中,形成具有向第一表面开口的开口的口袋,以及从口袋连通到第二表面的通孔。 通孔从比第一口袋的最深点更靠近开口的位置连通。 电极设置在通孔的开口周围。 在该装置中,即使要检查的细胞未达到口袋的最深点,细胞的细胞膜可以牢固地紧贴在通孔上而没有间隙。 因此,通孔内部的培养液在培养液的上表面上与培养液分离,从而能够通过检测器电极有效地检测细胞活性引起的电化学变化。
    • 77. 发明申请
    • CELLULAR POTENTIAL MEASUREMENT CONTAINER
    • 细胞电位测量容器
    • US20100019782A1
    • 2010-01-28
    • US11916947
    • 2006-06-28
    • Eiji WatanabeAkira HiguchiMasaya Nakatani
    • Eiji WatanabeAkira HiguchiMasaya Nakatani
    • G01R27/08
    • G01N33/48728
    • The present invention provides a cellular potential measurement container that can measure a cellular potential with high accuracy while suppressing noise even when the number of the cells to be subjected to the measurement is increased. The cellular potential measurement container includes a first solution reservoir 14, a second solution reservoir 15, a partition substrate 18, a first electrode 27a, a second electrode 27b, a first measurement terminal 13a, and a second measurement terminal 13b. The first solution reservoir 14 and the second solution reservoir 15 are partitioned with the partition substrate 18, and the partition substrate 18 has a through hole 19. A first end of the through hole 19 is open toward the first solution reservoir 14 while a second end of the through hole 19 is open toward the second solution reservoir 15. The opening at the first end of the through hole 19 can hold a cell. The first electrode 27a is arranged so that a first solution can come into contact with the first electrode, and the second electrode 27b is arranged so that a second solution can come into contact with the second electrode. In the cellular potential measurement container with the above configuration, an electric signal amplifying device 16 further is provided, and the first measurement terminal 13a or the second measurement terminal 13b is connected to the first electrode 27a or the second electrode 27b via this electric signal amplifying device 16.
    • 本发明提供一种细胞电位测量容器,即使在要进行测量的细胞数量增加的同时,也可以以高精度测量细胞电位,同时抑制噪声。 细胞电位测量容器包括第一溶液储存器14,第二溶液储存器15,分隔基板18,第一电极27a,第二电极27b,第一测量端子13a和第二测量端子13b。 第一溶液储存器14和第二溶液储存器15被分隔基板18分隔开,分隔基板18具有通孔19.通孔19的第一端向第一溶液储存器14开口,而第二端 通孔19朝向第二溶液储存器15开口。通孔19的第一端处的开口可以容纳电池。 第一电极27a被布置成使得第一溶液可以与第一电极接触,并且第二电极27b被布置成使得第二溶液可以与第二电极接触。 在具有上述结构的细胞电位测量容器中,还设置有电信号放大装置16,并且第一测量端子13a或第二测量端子13b经由该电信号放大与第一电极27a或第二电极27b连接 设备16。
    • 78. 发明申请
    • Vibration Piezoelectric Acceleration Sensor
    • 振动压电加速度传感器
    • US20080223132A1
    • 2008-09-18
    • US10585618
    • 2005-02-14
    • Jiro TeradaMasaya NakataniTakami Ishida
    • Jiro TeradaMasaya NakataniTakami Ishida
    • G01P15/09
    • G01P15/09G01P15/097G01P15/18G01P2015/084
    • A vibration piezoelectric acceleration sensor including a pair of diaphragms linearly and oppositely disposed on a frame, a support body supporting the diaphragm, and a holding part holding the support body slidably in a linear direction, and another pair of diaphragms disposed linearly and oppositely crossing the pair of diaphragms detecting acceleration in two axes, i.e. X and Y directions. The diaphragms are extended and retracted by the acceleration transmitted to the support body through the holding part, changing a natural oscillation frequency. Accordingly, a high change ratio of resonance frequency can be provided with the detection of the acceleration, and the acceleration in two axes directions can be detected without being affected by a change in temperature.
    • 一种振动压电加速度传感器,包括线性地并相对地设置在框架上的一对隔膜,支撑隔膜的支撑体以及沿直线方向可滑动地保持支撑体的保持部以及与线状地相反地交叉的另一对隔膜 一对隔膜检测两轴的加速度,即X和Y方向。 通过保持部分传递到支撑体的加速度使膜片伸长和缩回,改变固有的振荡频率。 因此,可以通过检测加速度来提供高谐振频率的变化率,并且可以在不受温度变化的影响的情况下检测两个轴向的加速度。