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    • 24. 发明申请
    • HUMAN HEALING ABILITY ENHANCING APPARATUS AND METHOD FOR ACTUATING HUMAN HEALING ABILITY ENHANCING APPARATUS
    • 人体健康能力增强装置和促进人体健康能力提高装置的方法
    • US20120266874A1
    • 2012-10-25
    • US13505919
    • 2010-11-22
    • Yukichika KawakamiMasayuki Niwa
    • Yukichika KawakamiMasayuki Niwa
    • A61G10/02
    • A61G10/023A61H33/066A61H33/14A61H2033/143A61H2201/50
    • A human healing ability enhancing apparatus includes an airtight part that is capable of being airtight; a decompression pump that decompresses air pressure in the airtight part and communicates with an exhaust port of the airtight part; and an over-decompression prevention device for preventing over-decompression in which the air pressure in the airtight part is lower than a predetermined threshold air pressure. The apparatus that can favorably provide a stimulus for enhancing healing capacity of a living body by a decompression control means sequentially and repeatedly controls a decompressing process in which air pressure in the airtight part that is capable of being airtight is changed to a decompression state that is equal to or higher than the threshold air pressure during 1 to 60 minute(s), and a pressurizing process in which the decompression state is changed to a wide-range normal pressure state that is a normal pressure or a pressure higher than the decompression state and lower than the normal pressure during 1 to 60 minute(s) can be obtained.
    • 人体愈合能力增强装置包括能够气密的气密部分; 减压泵,其对所述气密部中的气压进行减压,并与所述气密部的排气口连通; 以及用于防止气密部分中的空气压力低于预定阈值空气压力的过度减压的过减压装置。 可以有利地提供用于通过减压控制装置提高生物体的愈合能力的刺激的装置,并且反复地控制减压过程,其中气密部分中的能够气密的气压被改变为减压状态,即, 等于或高于阈值空气压力在1至60分钟内的加压过程,并且其中减压状态变为作为常压或高于减压状态的压力的大范围常压状态 并能够在1〜60分钟内低于正常压力。
    • 26. 发明授权
    • Glycolide production process, and glycolic acid oligomer for glycolide production
    • 乙交酯生产过程和乙醇酸低聚物用于乙交酯生产
    • US07235673B2
    • 2007-06-26
    • US10472719
    • 2002-04-10
    • Kazuyuki YamaneYukichika Kawakami
    • Kazuyuki YamaneYukichika Kawakami
    • C07D319/12C08F301/00
    • C07D319/12
    • The invention relates to a glycolide production process wherein a depolymerization reaction system comprising a glycolic acid oligomer or a glycolic acid oligomer and a polar organic solvent is heated to depolymerize the glycolic acid oligomer into glycolide, the resulting glycolide or the glycolide and polar organic solvent are distilled out of the depolymerization reaction system, and the glycolide is recovered from distillates obtained by distillation. The glycolic acid oligomer or the glycolic acid oligomer and polar organic solvent are continuously or intermittently charged into the depolymerization reaction system, thereby carrying out depolymerization reactions continuously or repeatedly. During the depolymerization reactions, a compound having an alcoholic hydroxyl group is permitted to exist at a specific quantitative ratio in the depolymerization reaction system. The invention is also concerned with a glycolic acid oligomer for the production of glycolide, which is obtained by condensation of glycolic acid in the presence of the compound having an alcoholic hydroxyl group.
    • 本发明涉及一种乙交酯生产方法,其中加热包含乙醇酸低聚物或乙醇酸低聚物和极性有机溶剂的解聚反应体系,使乙醇酸低聚物解聚成乙交酯,得到的乙交酯或乙交酯和极性有机溶剂为 从解聚反应体系中蒸出,从蒸馏得到的馏出物中回收乙交酯。 将乙醇酸低聚物或乙醇酸低聚物和极性有机溶剂连续或间歇地加入到解聚反应体系中,从而连续或反复进行解聚反应。 在解聚反应中,在解聚反应体系中允许具有醇羟基的化合物以特定的定量比存在。 本发明还涉及通过乙醇酸在具有醇羟基的化合物的存在下缩合而获得的用于生产乙交酯的乙醇酸低聚物。
    • 29. 发明授权
    • Glycolide production process, and glycolic acid composition
    • 乙交酯生产过程和乙醇酸组成
    • US06891048B2
    • 2005-05-10
    • US10469741
    • 2002-03-05
    • Kazuyuki YamaneYukichika Kawakami
    • Kazuyuki YamaneYukichika Kawakami
    • C07B61/00C07D319/12C08G63/08C07C59/06
    • C07D319/12C08G63/08
    • The invention provides a process for producing glycolide by depolymerization by heating of a glycolic acid oligomer in the presence or absence of a solvent, which process ensures stable depolymerization. The depolymerization reaction is carried out while the content of alkaline metal ions in a glycolic acid oligomer-containing depolymerization reaction system is controlled to 0.001% by mass or lower; a sulfate or an organic acid salt, each in the form of di- or poly-valent cations, or a mixture thereof is allowed to be present as a stabilizer in the depolymerization reaction system; or the content of alkaline metal ions in the depolymerization reaction system is controlled to 0.001% by mass or lower, and a sulfate or an organic acid salt, each in the form of di- or poly-valent cations, or a mixture thereof is allowed to be present as a stabilizer in the depolymerization reaction system.
    • 本发明提供通过在存在或不存在溶剂的情况下加热乙醇酸低聚物来解聚生产乙交酯的方法,该方法确保了稳定的解聚。 在使含乙醇酸低聚物的解聚反应体系中的碱金属离子的含量控制在0.001质量%以下的同时进行解聚反应; 在二聚或多价阳离子形式的硫酸盐或有机酸盐或其混合物作为稳定剂存在于解聚反应体系中; 或将解聚反应体系中的碱金属离子的含量控制为0.001质量%以下,并且允许分别为二价或多价阳离子形式的硫酸盐或有机酸盐或其混合物 作为解聚反应体系中的稳定剂存在。
    • 30. 发明授权
    • Injection-molded product of polyglycolic acid and production process
thereof
    • 聚乙醇酸注射成型品及其制备方法
    • US6046251A
    • 2000-04-04
    • US844361
    • 1997-04-18
    • Yukichika KawakamiNobuo SatoMitsuru HoshinoToshitaka KouyamaZenya Shiiki
    • Yukichika KawakamiNobuo SatoMitsuru HoshinoToshitaka KouyamaZenya Shiiki
    • C08J5/00B29C45/00B29K67/00B29L22/00C08G63/08C08L67/04C08L101/16A61L31/00
    • C08G63/08B29C45/0001C08L67/04
    • An injection-molded product is obtained by injection molding a thermoplastic resin material. The thermoplastic resin material comprises a polyglycolic acid homopolymer or copolymer having a repeating unit represented by the following formula (1): ##STR1## in a proportion not lower than 70 wt. % and a repeating unit derived from at least one cyclic comonomer selected from the group consisting of ethylene oxalate and lactide in a proportion not higher than 30 wt. %, and having the following physical properties: (a) a melt viscosity, n*, measured at a temperature of the melting point, Tm, of the polyglycolic acid homopolymer or copolymer +20.degree. C. and a shear rate of 1,000/sec, of 30-10,000 Pa.multidot.s; (b) a melting point, Tm, of at least 150.degree. C.; (c) a melt enthalpy, .DELTA.Hm, of at least 20 J/g; and (d) a density of at least 1.50 g/cm.sup.3 as measured in an unoriented, crystallized form. The injection-molded product has Izod impact strength, unnotched, 25.degree. C., of at least 20 kJ/m.sup.2, tensile strength of a least 60 MPa, tensile elongation of at least 5%, flexural strength of at least 100 MPa, and flexural modulus of at least 5 GPa, and is obtained by injection molding at an injection temperature ranging from the melting point, Tm, of the homopolymer or copolymer to 255.degree. C.
    • 通过注射成型热塑性树脂材料获得注塑产品。 热塑性树脂材料包括具有由下式(1)表示的重复单元的聚乙醇酸均聚物或共聚物:比例不低于70wt。 %的重复单元和来自选自草酸亚乙酯和丙交酯的至少一种环状共聚单体的重复单元,其比例不高于30wt。 %,具有以下物理性质:(a)在聚乙醇酸均聚物或共聚物+ 20℃的熔点温度Tm下测定的熔融粘度n *,剪切速率为1000 /秒 ,30-10,000元; (b)熔点Tm为至少150℃。 (c)至少20J / g的熔体焓DELTA Hm; 和(d)以非取向的结晶形式测量的至少1.50g / cm 3的密度。 注塑产品具有悬臂梁式冲击强度,25℃,至少20kJ / m 2,拉伸强度至少为60MPa,拉伸伸长率至少为5%,弯曲强度至少为100MPa, 弯曲模量为至少5GPa,并且通过在从均聚物或共聚物的熔点Tm到255℃的注射温度下注射成型获得。