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    • 1. 发明授权
    • Ultrasonic irradiation apparatus and processing apparatus based thereon
    • 超声波照射装置及其处理装置
    • US5523058A
    • 1996-06-04
    • US240733
    • 1994-05-12
    • Shinichiro UmemuraKenichi KawabataKenko UchidaKenji YasudaYasuo WadaAtsushi Hiraiwa
    • Shinichiro UmemuraKenichi KawabataKenko UchidaKenji YasudaYasuo WadaAtsushi Hiraiwa
    • A61B17/22A61N7/00A61N7/02B01F11/02A61B8/00B06B1/00
    • A61N7/02A61B17/22004A61N2007/006A61N2007/0078A61N2007/0095
    • By providing an ultrasonic irradiation apparatus for generating acoustic cavitation efficiently, it is intended to realize an ultrasonic therapeutic apparatus for generating the action of cavitation on a living body suitable for medical treatment of malignant tumors and medical treatment of thrombi and calculi, an ultrasonic diagnostic apparatus for generating cavitation for emphasizing an ultrasonic echo image such as a blood flow and utilizing the reflection capability of the cavitation, an ultrasonic chemical reaction accelerating apparatus, an ultrasonic cleaning apparatus or an ultrasonic sterilizing apparatus. Irradiation focus/code signals for defining irradiated acoustic fields of a fundamental wave and a second harmonic wave as well as focus positions/acoustic pressure distribution forms of the respective waves are applied from an irradiation unit main control circuit to drive phase generating circuits. Generated drive phases are applied to drive signal generating circuits, generated drive signals are applied to element drive circuits and a group of fundamental frequency elements and a group of second harmonic elements are driven. The drive phases are controlled such that the fundamental wave and second harmonic wave are superimposed on each other in a medium near a focal point, thus generating acoustic caviation locally and efficiently.
    • PCT No.PCT / JP93 / 01310 Sec。 371日期:1994年5月12日 102(e)日期1994年5月12日PCT提交1993年9月14日PCT公布。 公开号WO94 / 06380 日期为1994年3月31日。通过提供用于有效产生声孔的超声波照射装置,旨在实现用于产生适于恶性肿瘤治疗的生物体上的空化作用的超声波治疗装置和血栓的治疗 和结石,用于产生用于强调超声波回波图像如血流并利用空化反射能力的超声波诊断装置,超声波化学反应加速装置,超声波清洗装置或超声波消毒装置。 用于定义基波和二次谐波的辐射声场以及各波的聚焦位置/声压分布形式的照射焦点/码信号从照射单元主控制电路施加到驱动相位产生电路。 产生的驱动相位被施加到驱动信号发生电路,所产生的驱动信号被施加到元件驱动电路,并且一组基频元件和一组二次谐波元件被驱动。 控制驱动相位使得基波和二次谐波在焦点附近的介质中彼此叠加,从而局部且有效地产生声空化。
    • 5. 发明授权
    • Micro-chamber processing apparatus for cell culture and method
    • 用于细胞培养和方法的微室处理装置
    • US08247222B2
    • 2012-08-21
    • US13036600
    • 2011-02-28
    • Akihiro HattoriKenji Yasuda
    • Akihiro HattoriKenji Yasuda
    • C12M1/00C12M1/34
    • C12M23/16B01J2219/00317B01J2219/00441B01J2219/00605B01J2219/0061B01J2219/00612B01J2219/00621B01J2219/0063B01J2219/00637B01J2219/00743B01L3/5085B01L2200/12B01L2300/0819B01L2300/12B01L2300/163
    • This invention relates to a method and apparatus for processing cell cultures. The apparatus comprises a micro-chamber comprising no more than one absorption layer and at least one gel layer, in this order, laminated on a transparent base plate having no conspicuous absorbency in visible and infrared regions, and at least one light source, the absorption layer having absorbency in visible and infrared regions, and the gel-like material being a substance which has a gel dissolution temperature of 100 degree C. or less, solates when heated and is in a gel state at room temperature and has absorbency for a specific wave length of visible and infrared regions, and the light source having a monochromatic light in the specific wave length, wherein the light source is disposed such that it irradiates on the absorption layer and/or the gel layer, with the exception that when no absorption layer is provided, at least two layers each composed of a gel-like material are laminated on the transparent base plate.
    • 本发明涉及一种用于处理细胞培养物的方法和装置。 该装置包括一个微室,该微室包括不超过一个吸收层和至少一个凝胶层,依次层叠在透明基板上,在可见光和红外区域中没有明显的吸收性,以及至少一个光源,吸收 在可见光和红外区域具有吸收性的层,凝胶状材料是凝胶溶解温度为100℃以下的物质,加热时的溶胶化物,在室温下处于凝胶状态,具有特定的吸光度 可见光和红外区域的波长,以及具有特定波长的单色光的光源,其中光源被设置成使其照射在吸收层和/或凝胶层上,除了当没有吸收 在透明基板上层叠由凝胶状材料构成的至少两层。
    • 9. 发明申请
    • Cell measuring and sorting chip
    • 电池测量和分选芯片
    • US20060194307A1
    • 2006-08-31
    • US11317004
    • 2005-12-27
    • Kenji YasudaAkihiro HattoriKazunori Okano
    • Kenji YasudaAkihiro HattoriKazunori Okano
    • C12M1/34B07C5/00
    • G01N15/147B01L3/502761B01L2200/0647B01L2300/0681B01L2300/0816B01L2300/0864B01L2400/0415B01L2400/0487C12M47/04G01N35/085G01N2015/149G06T7/0012G06T2207/10056G06T2207/30024
    • The present invention provides a cell sorting device using an inexpensive chip capable of being exchanged for each sample for cell sorting. The cell sorting device uses flow paths formed on the substrate and has the following structure. The chip includes: a first flow path allowing a buffer fluid containing cells to flow down; second and third flow paths which put the first flow path therebetween and allow a buffer fluid not containing cells to flow down from both sides of the first flow path; a fourth flow path which allows the buffer fluid as a single flow path formed by the join of the buffer fluid in the first flow path and the buffer fluid in the second and third flow paths; a cell detecting region for detecting cells flowing with a buffer fluid down the fourth flow path; a cell sorting region for sorting the cells according to a type of the cells detected. The first flow path, the second and the third flow paths, the fourth flow path, the cell detecting region and the cell sorting region provided in a cascade. Two flow paths are provided to allow the cells sorted to flow downstream of the cell sorting region. The buffer fluid flowing in the first to the fourth flow paths is supplied from reservoirs having the same fluid level. The first flow path and the fourth flow path are structured to have substantially the same width or cross-section area.
    • 本发明提供一种使用廉价的芯片的细胞分选装置,其能够用于每个样品进行细胞分选。 细胞分选装置使用形成在基板上的流路,具有以下结构。 芯片包括:允许包含电池的缓冲流体向下流动的第一流路; 第二和第三流动路径,其将第一流动路径放置在其间并允许不含有电池的缓冲流体从第一流动路径的两侧向下流动; 第四流动路径,其允许缓冲流体作为由第一流动路径中的缓冲流体的连接和第二和第三流动路径中的缓冲流体形成的单个流动路径; 细胞检测区域,用于检测在第四流路下方以缓冲液流动的细胞; 用于根据检测到的细胞的类型对细胞进行分选的细胞分选区域。 第一流路,第二流路,第三流路,第四流路,单元检测区域和电池排列区域。 提供了两个流动路径以允许排序的细胞流动到细胞分选区域的下游。 在第一至第四流动路径中流动的缓冲流体从具有相同流体液位的储存器供应。 第一流路和第四流路被构造成具有基本相同的宽度或横截面面积。
    • 10. 发明申请
    • Apparatus and method for machining microchamber for cell culture
    • 用于细胞培养微孔加工的装置和方法
    • US20060141619A1
    • 2006-06-29
    • US10544799
    • 2004-02-19
    • Akihiro HattoriKenji Yasuda
    • Akihiro HattoriKenji Yasuda
    • C12N5/06C12M1/00
    • C12M23/16B01J2219/00317B01J2219/00441B01J2219/00605B01J2219/0061B01J2219/00612B01J2219/00621B01J2219/0063B01J2219/00637B01J2219/00743B01L3/5085B01L2200/12B01L2300/0819B01L2300/12B01L2300/163
    • There is provided a processing apparatus and a processing method for micro-chamber for cell culture having a desired culturing space. The micro-chamber processing apparatus for cell culture of the present invention comprises a micro-chamber comprising no more than one absorption layer and at least one gel layer, in this order, laminated on a transparent base plate having no conspicuous absorbency in visible and infrared regions, and at least one light source, said absorption layer having absorbency in visible and infrared regions, and said gel-like material being a substance which has a gel dissolution temperature of 100 degree C. or less, solates when heated and is in a gel state at room temperature and has absorbency for a specific wave length of visible and infrared regions, and said light source having a monochromatic light in said specific wave length, wherein said light source is disposed such that it irradiates on said absorption layer and/or said gel layer, with the exception that when no absorption layer is provided, at least two layers each composed of a gel-like material are laminated on said transparent base plate.
    • 提供了具有期望的培养空间的用于细胞培养的微室的处理装置和处理方法。 本发明的细胞培养用微细胞处理装置,具有不超过一个吸收层和至少一层凝胶层的微室,依次层叠在透明基板上,在可见光和红外线中不具有明显的吸收性 区域和至少一个光源,所述吸收层在可见光和红外区域具有吸收性,所述凝胶状材料是凝胶溶解温度为100℃以下的物质,加热时的溶胶化物 在具有特定波长的可见光和红外区域具有吸收能力,并且所述光源具有所述特定波长的单色光,其中所述光源被设置成使得其照射在所述吸收层和/或 所述凝胶层除了没有设置吸收层之外,将由凝胶状材料构成的至少两层层合在所述透明体b上 灰板