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    • 2. 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
    • Mass spectrometer system
    • 质谱仪系统
    • US07932486B2
    • 2011-04-26
    • US12330374
    • 2008-12-08
    • Akihiro SanoAtsumu HirabayashiYasushi TeruiKinya KobayashiKiyomi YoshinariKenko UchidaToshiyuki Yokosuka
    • Akihiro SanoAtsumu HirabayashiYasushi TeruiKinya KobayashiKiyomi YoshinariKenko UchidaToshiyuki Yokosuka
    • H01J49/26
    • G01N33/6851G01N33/6848H01J49/0031H01J49/0036H01J49/004
    • During the structural analysis of a protein or peptide by tandem mass spectroscopy, a peptide ion derived from a protein that has already been measured and that is expressed in great quantities is avoided as a tandem mass spectroscopy target. A peptide derived from a minute amount of protein, which has heretofore been difficult to analyze, can be automatically determined as a tandem mass spectroscopy target within the real time of measurement. Data concerning a protein that has already been measured and a peptide derived from the protein is automatically stored in an internal database. The stored data is collated with measured data with high accuracy to determine an isotope peak. In this way, the process of selecting a peptide peak that has not been measured as the target for the next tandem analysis can be performed within the real time of measurement and a redundant measurement of peptides derived from the same protein can be avoided. The information contained in the MSn spectrum is effectively utilized in each step of the MSn involving a multi-stage dissociation and mass spectroscopy (MSn), so that the flows for the determination of the next analysis content and the selection of the parent ion for the MSn+1 analysis, for example, can be optimized within the real time of measurement and with high efficiency and accuracy. Thus, a target of concern to the user can be subjected to tandem mass spectroscopy without wasteful measurement.
    • 在通过串联质谱法对蛋白质或肽进行结构分析期间,作为串联质谱目标,可以避免衍生自已经测量并且大量表达的蛋白质的肽离子。 迄今为止难以分析的,从微量蛋白质衍生的肽可以在实时测定中作为串联质谱图目标自动确定。 关于已经测量的蛋白质和来自蛋白质的肽的数据被自动存储在内部数据库中。 存储的数据与测量数据高精度对照以确定同位素峰。 以这种方式,可以在测量的实际时间内进行未被测定为下一个串联分析的靶标的肽峰的过程,并且可以避免衍生自相同蛋白质的肽的冗余测量。 包含在MSn谱中的信息在涉及多级解离和质谱(MSn)的MSn的每个步骤中被有效地利用,使得用于确定下一个分析内容的流程和为母体离子的选择 例如,MSn + 1分析可以在实时测量和高效率和精确度下进行优化。 因此,用户关注的目标可以进行串联质谱,无需浪费测量。
    • 9. 发明申请
    • CELL COLLECTION SYSTEM
    • 细胞收集系统
    • US20140065704A1
    • 2014-03-06
    • US14111036
    • 2012-04-10
    • Masataka ShiraiHiroyuki TsunodaHiroko MatsunagaKenko Uchida
    • Masataka ShiraiHiroyuki TsunodaHiroko MatsunagaKenko Uchida
    • C12M1/26
    • C12M33/04C12M47/04
    • The present invention provides a simple and highly reliable cell collection system with high throughput and improved in cell collection efficiency. In the present invention, one or more pores are formed in a cell collection plate. One surface of the plate can be directly introduced in e.g., a petri dish, so as to be in contact with a solution containing cells. In this case, means for obtaining an optical image of collected cells from its rear surface is provided to improve reliability and convenience during a cell collection process. Alternatively, the vicinities of the pores in the cell collection plate are only hydrophilized and the other region is made water repellent to improve the efficiency of cell collection.
    • 本发明提供了一种具有高通量并提高了细胞收集效率的简单且高度可靠的细胞收集系统。 在本发明中,在细胞收集板中形成一个以上的孔。 板的一个表面可以直接引入例如陪替氏培养皿中,以便与含有细胞的溶液接触。 在这种情况下,提供用于从其后表面获得收集的细胞的光学图像的装置,以提高细胞收集过程中的可靠性和便利性。 或者,细胞收集板中的孔附近仅被亲水化,另一区域被制成防水剂,以提高细胞收集的效率。