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    • 22. 发明授权
    • Pharmaceutical composition for improving intestinal absorption
    • 用于改善肠道吸收的药物组合物
    • US08686006B2
    • 2014-04-01
    • US13124797
    • 2009-10-22
    • Masayuki UmedaAkio KimuraKenji UedaKoji Sakanaka
    • Masayuki UmedaAkio KimuraKenji UedaKoji Sakanaka
    • A61K31/44
    • A61K31/4409
    • An object of the present invention is to provide a pharmaceutical composition that improves intestinal absorption of a compound having a structure represented by the general formula [1]. The composition containing a compound represented by the general formula [1] or a salt thereof and (b) a lipophilic substance improves intestinal absorption of the compound. In the formula, A represents —(NR4)—, —(CR5R6)— or the like; B represents an alkylene group or an alkenylene group; R1 represents an alkyl group, an alkenyl group or the like; R2 represents an adamantylalkyl group or the like; R3 represents an unsaturated heterocyclic ring; R4, R5 and R6 each represent a hydrogen atom or the like; and X represents an oxygen atom or the like.
    • 本发明的目的是提供一种改善具有由通式[1]表示的结构的化合物的肠吸收的药物组合物。 包含由通式[1]表示的化合物或其盐和(b)亲脂性物质的组合物改善了化合物的肠吸收。 在该式中,A表示 - (NR 4) - , - (CR 5 R 6) - 等; B表示亚烷基或亚烯基; R1表示烷基,烯基等; R2表示金刚烷基烷基等; R3表示不饱和杂环; R4,R5和R6各自表示氢原子等; X表示氧原子等。
    • 23. 发明授权
    • Image reading device and image forming apparatus
    • 图像读取装置和图像形成装置
    • US08634116B2
    • 2014-01-21
    • US13236242
    • 2011-09-19
    • Sei AmagaiNoriko AraiKenji UedaShinji HanaokaChihiro MatsugumaAtsushi Sato
    • Sei AmagaiNoriko AraiKenji UedaShinji HanaokaChihiro MatsugumaAtsushi Sato
    • G03F3/08H04N1/04G06K9/32G03G15/01B41J2/47B41J2/45H04N9/093
    • H04N1/401H04N1/40056
    • An image reading device includes a reading unit, a first correcting unit, and a second correcting unit. The reading unit includes multiple read pixel-arrays and converts a signal charge obtained from pixels in each read pixel-array to an electric signal and outputs the electric signal as a read signal of each read pixel-array. The first correcting unit individually delays the read signals of the respective read pixel-arrays output from the reading unit so as to correct misregistration of the read signals. The second correcting unit corrects the misregistration of the read signals of the respective read pixel-arrays corrected by the first correcting unit by performing a two-point interpolation process so that a correction amount for the read signal of one specific read pixel-array among the multiple read pixel-arrays is not smaller than a correction amount for the read signal or signals of the remaining read pixel-array or pixel-arrays.
    • 图像读取装置包括读取单元,第一校正单元和第二校正单元。 读取单元包括多个读取像素阵列,并将从每个读取像素阵列中的像素获得的信号电荷转换为电信号,并将该电信号作为每个读取的像素阵列的读取信号输出。 第一校正单元单独地延迟从读取单元输出的各个读取像素阵列的读取信号,以校正读取信号的不对准。 第二校正单元通过执行两点插值处理来校正由第一校正单元校正的各个读取像素阵列的读取信号的对准,使得对于第一校正单元中的一个特定读取像素阵列的读取信号的校正量 多个读取像素阵列不小于读取信号的校正量或剩余的读取像素阵列或像素阵列的信号。
    • 28. 发明授权
    • Method of simulating rolling tire
    • 模拟轮胎的方法
    • US08200463B2
    • 2012-06-12
    • US12483924
    • 2009-06-12
    • Kenji UedaMasaki Shiraishi
    • Kenji UedaMasaki Shiraishi
    • G06G7/48
    • G01M17/02B60C99/006G06F17/5018G06F17/5095
    • A method of simulating a tire rolling on a road at a certain speed by using a computer apparatus 1 comprises the steps of: modeling a flexible tire model 2 for numerical calculation by using finite elements having at least one elastic element (step S1), changing at least one elastic element of the flexible tire model 2 to rigid elements so as to make a rigid tire model 5 (step S6), accelerating the rigid tire model 5 (step S7), returning the elasticity of each element of the rigid tire model 5 into the original elasticity when the speed of the rigid tire model 5 has reached the certain speed (step S8), and obtaining at least one physical parameter related to the flexible tire model 2 (step S10).
    • 通过使用计算机装置1以一定速度模拟在道路上滚动的轮胎的方法包括以下步骤:通过使用具有至少一个弹性元件的有限元(步骤S1)对柔性轮胎模型2进行建模以进行数值计算,步骤S1 将柔性轮胎模型2的至少一个弹性元件连接到刚性元件以制成刚性轮胎模型5(步骤S6),加速刚性轮胎模型5(步骤S7),返回刚性轮胎模型的每个元件的弹性 当刚性轮胎模型5的速度达到一定速度时(步骤S8),并且获得与柔性轮胎模型2相关的至少一个物理参数(步骤S10),5变为原始弹性。
    • 29. 发明申请
    • DESICCANT AIR-CONDITIONING SYSTEM
    • 冷却空调系统
    • US20120023988A1
    • 2012-02-02
    • US13049332
    • 2011-03-16
    • Yoshie ToganoKenji Ueda
    • Yoshie ToganoKenji Ueda
    • F25D17/04F25B27/00
    • F24F3/147B01D53/06B01D53/261B01D2253/106B01D2253/202B01D2253/3425B01D2257/80B01D2258/06B01D2259/4009F24F3/1423F24F12/003F24F2203/1016F24F2203/1032F24F2203/104Y02B30/52Y02B30/563
    • To reduce energy consumption, a desiccant air-conditioning system is provided with: an air supply channel 1 that supplies outside air A1 that flows from the outside, to an object to be air-conditioned; an exhaust channel 2 that exhausts return air A2 that flows from the object to be air-conditioned, to the outside; a desiccant portion 10 that adsorbs moisture from the outside air A1 passing through the air supply channel 1, and that desorbs the adsorbed moisture to the return air A2 passing through the exhaust channel 2; a first cooling portion 31 which is installed between the desiccant portion 10 and the object to be air-conditioned in the air supply channel, and which cools the outside air A1; a second cooling portion 44 which is installed between the desiccant portion 10 and the first cooling portion 31 in the air supply channel, and which absorbs the heat from the outside air A1 to cool it; a heating portion 45 which is installed between the desiccant portion 10 and the object to be air-conditioned in the exhaust channel 2, and which heats the return air A2 up to at least the regeneration temperature at which the desiccant portion 10 desorbs the moisture; and a heat supplying portion 50 that supplies the heat absorbed from the outside air A1 by the second cooling portion 44, to the heating portion 45.
    • 为了降低能量消耗,干燥剂空调系统具有:供给从外部流入的外部空气A1的空气供给通道1到要进行空调的物体; 将从被空气调节的物体流出的返回空气A2排出到外部的排气通道2; 干燥剂部分10,其吸收通过供气通道1的外部空气A1中的水分,并且将吸附的水分解吸到通过排气通道2的返回空气A2; 第一冷却部分31,安装在干燥剂部分10和空气供应通道中被空气调节的物体之间,并冷却外部空气A1; 第二冷却部分44,其安装在空气供应通道中的干燥剂部分10和第一冷却部分31之间,并且吸收来自外部空气A1的热量以使其冷却; 安装在干燥剂部分10和排气通道2中被空气调节的物体之间的加热部分45,并将返回空气A2加热至少达到干燥剂部分10解吸湿度的再生温度; 以及将由外部空气A1吸收的第二冷却部44的热量供给到加热部45的供热部50。