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    • 41. 发明授权
    • Biological luminal body evaluating apparatus
    • 生物体腔评估仪
    • US08343060B2
    • 2013-01-01
    • US12071873
    • 2008-02-27
    • Takeo MatsumotoKazuaki NagayamaKenji TakezawaHiroshi Masuda
    • Takeo MatsumotoKazuaki NagayamaKenji TakezawaHiroshi Masuda
    • A61B5/02
    • A61B8/0858A61B5/02007A61B5/0205A61B5/02225A61B5/0225A61B5/1075A61B8/5238A61B8/543
    • In a process of varying pressure of a pressure container (24) accommodating a forearm (22) of a subject (20) in a pressure range including negative pressure, a diameter (cross-sectional shape value) (D) of an artery 44 in the forearm (22) accommodated in the pressure container (24) is measured non-invasively by a vascular diameter calculating unit (76). In addition, a display controller (display controlling means) (80) operates to display on a displaying device (16) a variation of an internal pressure (Pc) in the pressure container (24) and a variation of the diameter (D) of the artery (44) varying depending thereon. Based on the diameter (D) of the artery (44) obtained in the high pressure region, the variation of the internal pressure Pc in the pressure container 24 and the variation of the diameter (D) of the artery 44 varying depending thereon i.e. mechanical properties of the artery (44) are displayed on the displaying device (16). The artery (44) can be evaluated accurately based on the mechanical properties.
    • 在包含受试者(20)的前臂(22)的压力容器(24)的压力变化的压力范围内,包括负压,动脉44的直径(横截面形状值)(D) 容纳在压力容器(24)中的前臂(22)由血管直径计算单元(76)非侵入性地测量。 此外,显示控制器(显示控制装置)(80)操作以在显示装置(16)上显示压力容器(24)中的内部压力(Pc)的变化和直径(D)的变化 动脉(44)随之而变化。 基于在高压区域中获得的动脉(44)的直径(D),压力容器24中的内部压力Pc的变化和动脉44的直径(D)随其变化而变化,即机械 在显示装置(16)上显示动脉(44)的特性。 动脉(44)可以根据机械性能进行准确评估。
    • 44. 发明申请
    • BLOOD VESSEL FUNCTION INSPECTING APPARATUS
    • 血管功能检查装置
    • US20120089020A1
    • 2012-04-12
    • US13377329
    • 2009-06-09
    • Naotaka NittaHiroshi Masuda
    • Naotaka NittaHiroshi Masuda
    • A61B8/06A61B5/02
    • A61B5/145A61B5/02007A61B5/02035A61B5/14535A61B8/06A61B8/4218A61B8/5223G01N11/00
    • A blood vessel function inspecting apparatus including a first blood state index value calculating portion that obtains estimated hematocrit values at a plurality of points predetermined within a blood vessel, on the basis of values of a blood viscosity and values of a shear rate at said plurality of points, which are respectively extracted from a viscosity distribution and a shear rate distribution, and according to reference relationships between a hematocrit value and the blood viscosity, which reference relationships respectively correspond predetermined different values of the shear rate; and a second blood state index value calculating portion that calculates, as said blood state index value, a value relating to an amount of difference of the estimated hematocrit values at said plurality of points with respect to each other, which amount is minimized by transforming said reference relationships at the same ratio for all of the values of the shear rate.
    • 一种血管功能检查装置,其包括:第一血液指标值计算部,其根据血液粘度的值和所述多个血压指数值的剪切速度值,求出在血管内预定的多个点处的估计的血细胞比容值 分别从粘度分布和剪切速度分布提取,并且根据血细胞比容值和血液粘度之间的参考关系,该参考关系分别对应于剪切速率的预定不同值; 以及第二血液指标值计算部,其计算与所述血液状态指标值相关的与所述多个点相对于彼此的所估计的血细胞比容值的差值相关的值,所述量通过变换所述 对于剪切速率的所有值,参考关系以相同的比例。
    • 45. 发明授权
    • EGR device for engine
    • 发动机EGR装置
    • US08146573B2
    • 2012-04-03
    • US12521818
    • 2007-11-08
    • Hiroshi OohashiHiroshi Masuda
    • Hiroshi OohashiHiroshi Masuda
    • F02B47/08F02M25/07
    • F02M26/69F02M26/38F02M26/44F02M26/71
    • It is intended to provide an EGR device for an engine in which a cooling structure such as an EGR cooler is not required and which reduces Nox contained in the exhaust gas in the whole operation areas, so as to correspond to recent exhaust gas regulation. An EGR device 30 for an engine comprises an EGR pipe 14 for continuously connecting an exhaust manifold 4 and an intake manifold 3 of an engine 1, an EGR valve 9 for controlling a passage area of the EGR pipe 14, an ECU 6 for controlling the EGR valve 9. The EGR device 30 further comprises a bypass passage 24 for bypassing the EGR valve 9 and a restrictor 25 is installed in the bypass passage 24.
    • 旨在提供一种用于发动机的EGR装置,其中不需要诸如EGR冷却器的冷却结构,并且可以减少整个操作区域中排气中包含的Nox,以便对应于最近的废气调节。 用于发动机的EGR装置30包括用于连续地连接发动机1的排气歧管4和进气歧管3的EGR管14,用于控制EGR管14的通道面积的EGR阀9, EGR阀9. EGR装置30还包括用于旁路EGR阀9的旁通通道24,并且限制器25安装在旁通通道24中。
    • 46. 发明申请
    • EXHAUST GAS PURIFIER
    • 排气净化器
    • US20110120104A1
    • 2011-05-26
    • US12736472
    • 2008-09-10
    • Hiroshi MasudaMichihiko HaraShuji ShiozakiHiroshi Matsuyama
    • Hiroshi MasudaMichihiko HaraShuji ShiozakiHiroshi Matsuyama
    • F01N3/023F01N11/00
    • F02D41/029B01D53/944B01D2255/1021B01D2258/012F01N3/023F01N2430/00F01N2560/08F02D29/04F02D2041/026F02D2200/0812
    • In an exhaust gas purifier provided in an engine, a filter regeneration control recovering a PM collecting capacity of filter means on the basis of a chemical reaction can be efficiently executed by a simple structure. An exhaust gas purifier in accordance with the present invention is provided with a particulate filter (50) for purifying an exhaust gas arranged in an exhaust path of an engine (5), an actuation portion hydraulic pump (101) driving on the basis of a power of the engine (5), a pressure sensor (68) capable of detecting a clogging state of the particulate filter (50), and a pressure control valve (104) and a switching solenoid valve (106) for forcibly increasing an actuation amount of the actuation portion hydraulic pump (101). The filter regeneration control increasing an engine load is executed by increasing a discharge pressure of the actuation portion hydraulic pump (101) in accordance with a pressure control of the pressure control valve (104) on the basis of detection information of the pressure sensor (68).
    • 在设置在发动机中的排气净化器中,可以通过简单的结构有效地执行基于化学反应回收过滤装置的PM收集能力的过滤器再生控制。 根据本发明的废气净化器设置有用于净化布置在发动机(5)的排气路径中的废气的微粒过滤器(50),基于发动机(5)驱动的致动部分液压泵(101) 发动机(5)的功率,能够检测微粒过滤器(50)的堵塞状态的压力传感器(68)以及用于强制增加致动量的压力控制阀(104)和切换电磁阀(106) 的驱动部液压泵(101)。 通过根据压力传感器(68)的检测信息,根据压力控制阀(104)的压力控制来增大致动部液压泵(101)的排出压力,来实现提高发动机负荷的过滤器再生控制 )。
    • 50. 发明授权
    • Substrate processing apparatus
    • 基板加工装置
    • US07549428B2
    • 2009-06-23
    • US11190620
    • 2005-07-27
    • Hiroshi MasudaHiroyuki Araki
    • Hiroshi MasudaHiroyuki Araki
    • B08B3/04
    • H01L21/67057Y10S134/902
    • A substrate processing apparatus includes a photosensor for detecting the presence/absence of a substrate in each place within a carrier cassette, a pair of processing tanks for performing the same process at the same time, and a supply mechanism for supplying a processing solution to the processing tanks independently. The number of substrates is detected in accordance with the result of the detection of the photosensor. If the number of substrates detected is not greater than an allowable number for one of the processing tanks, the processing solution is supplied to only the one processing tank to perform the process. This reduces the consumption of the processing solution in a batch process.
    • 基板处理装置包括用于检测载体盒内的各处的基板的有无的光传感器,用于同时执行相同处理的一对处理槽,以及用于将处理液提供给 处理罐独立。 根据光电传感器的检测结果检测基板的数量。 如果检测到的基板的数量不大于其中一个处理槽的允许数量,则处理溶液仅提供给一个处理槽以执行处理。 这减少了批处理中处理溶液的消耗。