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    • 1. 发明申请
    • SYSTEM FOR FORMING AND MAINTAINING BIOLOGICAL TISSUE
    • 造成和维持生物组织的系统
    • US20100261262A1
    • 2010-10-14
    • US12681049
    • 2008-10-10
    • Kiyotaka IwasakiMitsuo UmezuKoji KojimaCharles Alfred Vacanti
    • Kiyotaka IwasakiMitsuo UmezuKoji KojimaCharles Alfred Vacanti
    • A01N1/02
    • A61F2/062C12M29/12C12M29/18C12M35/04C12M41/26
    • A system (10) for forming and maintaining a biological tissue by which a biological tissue can be artificially formed by culturing cells, which comprises a pulse pump (12), a circulation pathway (13) having such a circuit structure as allowing a liquid cell culture medium discharged from the pulse pump (12) to return into the pulse pump (12), and a cell culture section (14A) and a gas exchange section (14B) provided along the circulation pathway (13). The cell culture section (14A) holds a cell holder (H) in such a manner to form a first channel wherein the liquid cell culture medium flowing in the circulation pathway (13) passes through the cell holder (H) and returns into the circulation pathway (13) and a second channel wherein the liquid cell culture medium flowing in the circulation pathway (13) passes outside the cell holder (H) and returns into the circulation pathway (13), thereby bringing about a difference in pressure between the liquid cell culture medium passing through the respective channels. The gas exchange section (14B) supplies a mixed gas containing oxygen and carbon oxide to the liquid cell culture medium circulating within the circulation pathway (13) and thus controls the pH value of the liquid cell culture medium at a definite level.
    • 一种用于形成和维持生物组织的系统(10),通过该生物组织可以通过培养细胞人造地形成生物组织,所述系统包括脉冲泵(12),具有允许液体细胞的电路结构的循环通路(13) 从脉冲泵(12)排出的返回到脉冲泵(12)的培养基,沿着循环通路(13)设置的细胞培养部(14A)和气体交换部(14B)。 细胞培养部(14A)以形成第一通道的方式保持细胞保持器(H),其中在循环路径(13)中流动的液体细胞培养基通过细胞保持器(H)并返回循环 通路(13)和第二通道,其中在所述循环通路(13)中流动的液体细胞培养基通过所述细胞保持器(H)的外部并返回到所述循环通路(13)中,从而导致所述液体 通过相应通道的细胞培养基。 气体交换部(14B)将含有氧和碳氧化物的混合气体供给到在循环路径(13)内循环的液体细胞培养基,从而将液体细胞培养基的pH值控制在一定水平。
    • 2. 发明授权
    • Data storage apparatus, memory control apparatus and method for controlling flash memories
    • 用于控制闪速存储器的数据存储装置,存储器控制装置和方法
    • US08713410B2
    • 2014-04-29
    • US13301335
    • 2011-11-21
    • Kiyotaka Iwasaki
    • Kiyotaka Iwasaki
    • G11C29/00
    • G06F11/1048G11C2029/0411
    • According to one embodiment, a data storage apparatus includes a channel controller, an error correction controller, and an additional correction module. The channel controller is configured to control writing to and reading from the nonvolatile memories of respective channels. The error correction controller is configured to use inter-channel error correction codes during any read process, performing inter-channel correction process on those of the data items read under the control of the channel controller, which have been designated. The additional correction module is configured to designate, in accordance with errors detected by the channel controller, data items to additionally correct, and to notify the data items so designated to the error correction controller while the channel controller is reading the data necessary in the inter-channel correction process.
    • 根据一个实施例,数据存储装置包括信道控制器,纠错控制器和附加校正模块。 通道控制器被配置为控制对各个通道的非易失性存储器的写入和读取。 错误校正控制器被配置为在任何读取处理期间使用信道间纠错码,对已经指定的信道控制器的控制下读取的数据项执行信道间校正处理。 附加校正模块被配置为根据由信道控制器检测到的错误来指定数据项以附加地校正,并且在信道控制器正在读取在相互之间必需的数据时将如此指定的数据项通知给纠错控制器 通道校正过程。
    • 4. 发明申请
    • DATA STORAGE APPARATUS, MEMORY CONTROL APPARATUS AND METHOD FOR CONTROLLING FLASH MEMORIES
    • 数据存储装置,存储器控制装置和控制闪速存储器的方法
    • US20120192032A1
    • 2012-07-26
    • US13301335
    • 2011-11-21
    • Kiyotaka IWASAKI
    • Kiyotaka IWASAKI
    • G11C29/00G06F11/16
    • G06F11/1048G11C2029/0411
    • According to one embodiment, a data storage apparatus includes a channel controller, an error correction controller, and an additional correction module. The channel controller is configured to control writing to and reading from the nonvolatile memories of respective channels. The error correction controller is configured to use inter-channel error correction codes during any read process, performing inter-channel correction process on those of the data items read under the control of the channel controller, which have been designated. The additional correction module is configured to designate, in accordance with errors detected by the channel controller, data items to additionally correct, and to notify the data items so designated to the error correction controller while the channel controller is reading the data necessary in the inter-channel correction process.
    • 根据一个实施例,数据存储装置包括信道控制器,纠错控制器和附加校正模块。 通道控制器被配置为控制对各个通道的非易失性存储器的写入和读取。 错误校正控制器被配置为在任何读取处理期间使用信道间纠错码,对已经指定的信道控制器的控制下读取的数据项执行信道间校正处理。 附加校正模块被配置为根据由信道控制器检测到的错误来指定数据项以附加地校正,并且在信道控制器正在读取在相互之间必需的数据时将如此指定的数据项通知给纠错控制器 通道校正过程。
    • 7. 发明授权
    • System for forming and maintaining biological tissue
    • 用于形成和维持生物组织的系统
    • US08748166B2
    • 2014-06-10
    • US12681049
    • 2008-10-10
    • Kiyotaka IwasakiMitsuo UmezuKoji KojimaCharles Alfred Vacanti
    • Kiyotaka IwasakiMitsuo UmezuKoji KojimaCharles Alfred Vacanti
    • C12M3/00A61F2/04
    • A61F2/062C12M29/12C12M29/18C12M35/04C12M41/26
    • A system (10) for forming and maintaining a biological tissue by which a biological tissue can be artificially formed by culturing cells, which comprises a pulse pump (12), a circulation pathway (13) having such a circuit structure as allowing a liquid cell culture medium discharged from the pulse pump (12) to return into the pulse pump (12), and a cell culture section (14A) and a gas exchange section (14B) provided along the circulation pathway (13). The cell culture section (14A) holds a cell holder (H) in such a manner to form a first channel wherein the liquid cell culture medium flowing in the circulation pathway (13) passes through the cell holder (H) and returns into the circulation pathway (13) and a second channel wherein the liquid cell culture medium flowing in the circulation pathway (13) passes outside the cell holder (H) and returns into the circulation pathway thereby bringing about a difference in pressure between the liquid cell culture medium passing through the respective channels.
    • 一种用于形成和维持生物组织的系统(10),通过该生物组织可以通过培养细胞人造地形成生物组织,所述系统包括脉冲泵(12),具有允许液体细胞的电路结构的循环通路(13) 从脉冲泵(12)排出的返回到脉冲泵(12)的培养基,沿着循环通路(13)设置的细胞培养部(14A)和气体交换部(14B)。 细胞培养部(14A)以形成第一通道的方式保持细胞保持器(H),其中在循环路径(13)中流动的液体细胞培养基通过细胞保持器(H)并返回循环 通路(13)和第二通道,其中在循环通路(13)中流动的液体细胞培养基通过细胞保持器(H)的外部并返回到循环通道中,从而导致液体细胞培养基通过之间的压力差 通过各自的渠道。
    • 8. 发明授权
    • Endurance test apparatus for medical instrument and endurance test method
    • 医疗器械耐久试验装置及耐力试验方法
    • US08491308B2
    • 2013-07-23
    • US12676735
    • 2008-02-29
    • Kiyotaka IwasakiMitsuo UmezuAkira NishikohriShunsuke Tsubouchi
    • Kiyotaka IwasakiMitsuo UmezuAkira NishikohriShunsuke Tsubouchi
    • G09B23/28
    • G01N3/32A61F2/86A61F2240/008G01N2203/0017
    • It is intended to provide an endurance test apparatus whereby the behaviors of a vessel caused by a biomechanical burden can be simulated using a relatively simple constitution so that the endurance of a medical instrument (for example, a stent or an artificial vessel after anastomosis) can be tested in a similar state to an actual vessel, and an endurance test method therefor. Namely, an endurance test apparatus (10) comprises a simulated vessel (31) made of an elastic body, first and second holding members (32, 33) respectively supporting the both ends in the axial direction of the simulated vessel (31) and making the both ends relatively rotatable and interval-adjustable, and first and second motors (14, 15) operating these holding members (32, 33). The simulated vessel (31) is supported by the first and second holding members (32, 33) in a state stretched from its inherent length under a tensile force. Due to the driving motors (14, 15), the holding members (32, 33) elongate and contract the simulated vessel (31), which is in the stretched state as described above, while twisting it.
    • 旨在提供一种耐久性测试装置,由此可以使用相对简单的结构来模拟由生物力学负担引起的血管的行为,使得医疗器械(例如支架或吻合后的人造血管)的耐久性可以 以与实际船舶类似的状态进行测试,以及其耐久性测试方法。 也就是说,耐久性试验装置(10)包括由弹性体制成的模拟容器(31),分别支撑模拟容器(31)的轴向两端的第一和第二保持构件(32,33),并使 两端相对旋转并可间隔地调节,第一和第二电动机(14,15)操作这些保持构件(32,33)。 模拟容器(31)由第一和第二保持构件(32,33)以其拉伸力从其固有长度拉伸的状态支撑。 由于驱动马达(14,15),保持构件(32,33)在被扭转的同时使处于处于拉伸状态的模拟容器(31)伸长并收缩。