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    • 7. 发明申请
    • LIVING CELL CRYOPRESERVATION TOOL
    • 生活细胞CRYOPRESERVATION工具
    • US20140234956A1
    • 2014-08-21
    • US14349208
    • 2012-10-01
    • Kitazato BioPharma Co., Ltd.
    • Futoshi Inoue
    • A01N1/02
    • A01N1/0257A01N1/0268A61D19/024
    • A living cell cryopreservation tool has a living cell holding member having a body part and a living cell holding part and a tubular accommodation member, closed at one end thereof, which is capable of accommodating the living cell holding member. The living cell holding part has a long and narrow living cell attaching and holding portion. The living cell attaching and holding portion has heat conductors extended in a longitudinal direction thereof and projected from a distal end thereof. The tubular accommodation member has a heat conductive member accommodated inside a distal portion thereof. When the living cell holding member is inserted into the tubular accommodation member from a distal side of each heat conductor thereof, a distal portion of each heat conductor contacts the heat conductive member of the tubular accommodation member.
    • 活细胞冷冻保存工具具有活体细胞保持部件,该活体细胞保持部件具有主体部分和活体单元保持部以及能够容纳活细胞保持部件的一端封闭的管状容纳部件。 活细胞保持部具有长而窄的活细胞附着保持部。 活细胞安装保持部具有沿其长度方向延伸并从其远端突出的导热体。 管状容纳构件具有容纳在其远端部分内的导热构件。 当活体单元保持构件从其每个导热体的远侧插入到管状容纳构件中时,每个导热体的远端部分与管状容纳构件的导热构件接触。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR PREVENTION OF THERMO-MECHANICAL FRACTURING IN VITRIFIED TISSUE USING RAPID COOLING AND WARMING BY PERSUFFLATION
    • 方法和装置,用于通过快速冷却和加热保护来修复维修组织中的热机械断裂
    • US20140011182A1
    • 2014-01-09
    • US13936069
    • 2013-07-05
    • Arigos Biomedical, Inc.
    • Stephen Van SickleTanya Jones
    • A01N1/02
    • A01N1/0247A01N1/021A01N1/0257A01N1/0284A01N1/0289
    • A method and apparatus are disclosed for avoiding fracturing, e.g., thermo-mechanical fracturing, in vitrified biological systems via rapid cooling and/or warming persufflation techniques, by reducing the domain size of fracturing and by reducing thermal gradients. Also disclosed is a system adapted to rapidly cool and warm vitrifiable vascular biological tissue by persufflation, significantly reducing cryoprotectant toxicity from that of surface cooled tissue, in which the system is constructed and configured to use one or more of helium gas, hydrogen gas, neon gas, argon gas, krypton gas, xenon gas, oxygen gas, or various gaseous compounds. The system can be operated under pressure to increase the density and heat capacity of the gas relative to its density and heat capacity at atmospheric pressure and to cool the gas by one or more of mechanical action and by the phase change of a material such as a cryogenic gas or solid.
    • 公开了一种方法和装置,用于通过快速冷却和/或升温渗透技术,通过减小压裂的畴尺寸和减少热梯度来避免玻璃化生物系统中的压裂,例如热机械压裂。 还公开了一种适于通过透气快速冷却和温暖玻璃化血管生物组织的系统,显着降低来自表面冷却组织的冷冻保护剂毒性,其中系统被构造和配置为使用氦气,氢气,氖中的一种或多种 气体,氩气,氪气,氙气,氧气或各种气态化合物。 该系统可以在压力下操作,以增加气体的密度和热容量相对于其在大气压力下的密度和热容量,并通过一种或多种机械作用和诸如 低温气体或固体。