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    • 15. 发明授权
    • Thermally assisted magnetic recording head having movable mirror for optical switching
    • 热辅助磁记录头,具有用于光切换的可移动镜
    • US07969826B2
    • 2011-06-28
    • US11940410
    • 2007-11-15
    • Irizo NaniwaYukio Kato
    • Irizo NaniwaYukio Kato
    • G11B11/00
    • G11B5/4826G11B2005/0021
    • In a thermally assisted magnetic recording head support mechanism, an increase in the temperature of a heat source for supplying an optical near-field transducer with light, due to heat generation by the heat source, is checked while holding back an increase in weight of a slider and lessening transmission loss of light.The thermally assisted magnetic recording head support mechanism is made up such that a suspension 5 has one end holding a slider 4 on which a magnetic head 3 having a read element 31, write element 32, and an optical near-field transducer 34 is mounted, and the other end of the suspension 5 is held by a carriage 6. The optical block 15 provided with one light source 10, and an optical switching mechanism capable of switching a guidance destination of irradiated light from light source 10 is attached to an arm 62 or a support 61 of the carriage 6 having a wide heat release area, thereby guiding light from the optical block 15 to the optical near-field transducer 34 via an optical waveguide 14.
    • 在热辅助磁记录头支撑机构中,检查由于热源产生热量而向光学近场换能器供给光的温度的增加,同时阻止重量增加 滑块和减轻传输损失的光。 热辅助磁记录头支撑机构被制成使得悬架5具有保持滑块4的一端,其上安装有具有读取元件31,写入元件32和光学近场换能器34的磁头3, 并且悬架5的另一端由滑架6保持。设置有一个光源10的光学块15和能够切换来自光源10的照射光的引导目的地的光学切换机构附接到臂62 或具有宽放热区域的托架6的支撑件61,从而经由光波导14将来自光学块15的光引导到光学近场换能器34。
    • 18. 发明申请
    • METHOD OF FABRICATING SHEET FOR CARTILAGE TISSUE REGENERATION
    • 制备组织再生的方法
    • US20090221076A1
    • 2009-09-03
    • US11817437
    • 2006-02-28
    • Yukio KatoKoichiro TsujiKatsuyuki Yamanaka
    • Yukio KatoKoichiro TsujiKatsuyuki Yamanaka
    • C12N5/02
    • A61L27/18A61L27/3817A61L27/3852A61L27/56A61L2430/06C12N5/0655C12N2501/15C12N2501/39C12N2533/40C08L67/04
    • An objective of the present invention is to provide a production method of a sheet for regenerating a cartilage tissue, which uses a conventional sheet-shaped porous body comprising a biological absorbency synthetic high polymer, such as polylactic acid, polyglycolic acid and a copolymer of lactic acid and glycolic acid. The sheet for regenerating the cartilage tissue can differentiate chondrocytes or stem cells without culturing the cells by pressurizing such as a pressurizing culture like the conventional method, and can accumulate the cells in a supporting carrier with high efficiency. The sheet for regenerating the cartilage tissue is produced by the steps of; seeding chondrocytes or stem cells differentiating to the chondrocytes on a sheet-shaped porous body comprising a biological absorbency synthetic high polymer; taking the porous body into a culture liquid; applying acceleration of 100 to 1000 G to the porous body for a predetermined time; and culturing the porous body without applying the acceleration.
    • 本发明的目的是提供一种用于再生软骨组织的片材的制造方法,其使用包含生物吸收性合成高分子如聚乳酸,聚乙醇酸和乳酸共聚物的常规片状多孔体 酸和乙醇酸。 用于再生软骨组织的片材可以分化软骨细胞或干细胞,而不用像常规方法那样通过加压培养细胞而不培养细胞,并且可以将细胞以高效率积累在支持载体中。 用于再生软骨组织的片材通过以下步骤制备: 在包含生物吸收性合成高分子的片状多孔体上接种与软骨细胞分化的软骨细胞或干细胞; 将多孔体吸入培养液中; 对多孔体施加100〜1000G的加速度一定时间; 并且在不施加加速度的情况下培养多孔体。
    • 19. 发明申请
    • THERMALLY ASSISTED MAGNETIC RECORDING HEAD SUPPORT MECHANISM
    • 热辅助记录头辅助机构
    • US20080130155A1
    • 2008-06-05
    • US11940410
    • 2007-11-15
    • Irizo NaniwaYukio Kato
    • Irizo NaniwaYukio Kato
    • G11B5/02
    • G11B5/4826G11B2005/0021
    • [Problem] In a thermally assisted magnetic recording head support mechanism, an increase in the temperature of a heat source for supplying an optical near-field transducer with light, due to heat generation by the heat source, is checked while holding back an increase in weight of a slider and lessening transmission loss of light.[Solution] The thermally assisted magnetic recording head support mechanism is made up such that a suspension 5 has one end holding a slider 4 on which a magnetic head 3 having a read element 31, write element 32, and an optical near-field transducer 34 is mounted, and the other end of the suspension 5 is held by a carriage 6. The optical block 15 provided with one light source 10, and an optical switching mechanism capable of switching a guidance destination of irradiated light from light source 10 is attached to an arm 62 or a support 61 of the carriage 6 having a wide heat release area, thereby guiding light from the optical block 15 to the optical near-field transducer 34 via an optical waveguide 14.
    • 在热辅助磁记录头支撑机构中,检查由于热源产生的光源近光传感器供给光的温度的增加,同时保持增加 滑块的重量和减轻传输损失的光。 解决方案热辅助磁记录头支撑机构被制成使得悬架5具有保持滑块4的一端,在该滑块4上具有读取元件31,写入元件32和光学近场换能器34的磁头3 并且悬架5的另一端由托架6保持。 具有一个光源10的光学块15和能够切换来自光源10的照射光的引导目的地的光学切换机构被附接到具有宽放热区域的滑架6的臂62或支撑件61, 从而通过光波导14将光从光学块15引导到光学近场换能器34。
    • 20. 发明申请
    • Resin composition and molded object formed from the resin composition
    • 由树脂组合物形成的树脂组合物和成型体
    • US20060148969A1
    • 2006-07-06
    • US10531952
    • 2003-10-22
    • Kazuya TanakaJun TakagiAkihiro OhashiYukio Kato
    • Kazuya TanakaJun TakagiAkihiro OhashiYukio Kato
    • C09B67/00
    • C08L67/04C08K3/013C08L67/02C08L2205/02C08L2666/18C08L2666/02
    • Disclosed is a resin composition that has excellent impact resistance and excellent heat resistance without substantially deteriorating biodegradability that the lactic acid based resin has inherently. The resin composition includes (A) a lactic acid based resin; (B) an aromatic aliphatic polyester having a glass transition temperature (Tg) of 0° C. or less and a heat of crystal melting (AHm) of 5 J/g to 30 J/g, and/or an aliphatic polyester other than the lactic acid based resin, having a glass transition temperature (Tg) of 0° C. or less and a heat of crystal melting (ΔHm) of 5 J/g to 30 J/g, and (B) an aromatic aliphatic polyester having a glass transition temperature (Tg) of 0° C. or less and a heat of crystal melting (ΔHm) of 5 J/g to 30 J/g, and/or an aliphatic polyester other than the lactic acid based resin, having a glass transition temperature (Tg) of 0C or less and a heat of crystal melting (ΔHm) of 5 J/g to 30 J/g, has a content of 5 mass % to 25 mass %.
    • 公开了具有优异的耐冲击性和优异的耐热性的树脂组合物,而基本上不降低乳酸类树脂的生物降解性。 树脂组合物包含(A)乳酸类树脂; (B)玻璃化转变温度(Tg)为0℃以下,结晶熔解热(AHm)为5J / g〜30J / g的芳族脂肪族聚酯,和/或除了 玻璃化转变温度(Tg)为0℃以下,结晶熔化热(DeltaHm)为5J / g〜30J / g的乳酸类树脂,(B)具有 玻璃化转变温度(Tg)为0℃以下,结晶熔融热(DeltaHm)为5J / g〜30J / g,和/或乳酸类树脂以外的脂肪族聚酯,具有 玻璃化转变温度(Tg)为0℃以下,结晶熔解热(ΔHm)为5J / g〜30J / g,含量为5质量%〜25质量%。