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    • 2. 发明授权
    • Information storage medium, terminal device, display system, and a method for controlling a terminal device
    • 信息存储介质,终端装置,显示系统以及终端装置的控制方法
    • US09160994B2
    • 2015-10-13
    • US13421458
    • 2012-03-15
    • Issei Yokoyama
    • Issei Yokoyama
    • H04N9/31H04L12/18H04M3/56
    • H04N9/3194H04L12/1822H04M3/567H04N9/3179
    • A terminal device connected with a display device includes: an input unit to which operation information is inputted; an image generating unit which generates a configuration designation image including a position designation area corresponding to a display area of the display device and an icon arrangement area where an icon corresponding to an image that can be designated in relation to the position designation area is arranged; and a setting unit which designates an icon to be arranged in the icon arrangement area in relation to the position designation area, based on the operation information, and thereby sets an image corresponding to the icon as a display image in the display area. The icon includes a first icon corresponding to an image supplied from the terminal device connected with the display device and a second icon corresponding to a predetermined pattern image.
    • 与显示装置连接的终端装置包括:输入单元,输入操作信息; 生成包括与显示装置的显示区域相对应的位置指定区域的配置指定图像的图像生成单元和配置有与该位置指定区域可指定的图像对应的图标的图标配置区域; 以及设置单元,其基于操作信息指定要布置在图标布置区域中的图标,并且将与图标相对应的图像设置为显示区域中的显示图像。 图标包括对应于从与显示装置连接的终端装置提供的图像的第一图标和与预定图案图像对应的第二图标。
    • 3. 发明申请
    • INFORMATION STORAGE MEDIUM, TERMINAL DEVICE, DISPLAY SYSTEM, AND A METHOD FOR CONTROLLING A TERMINAL DEVICE
    • 信息存储介质,终端设备,显示系统以及用于控制终端设备的方法
    • US20120236023A1
    • 2012-09-20
    • US13421458
    • 2012-03-15
    • Issei Yokoyama
    • Issei Yokoyama
    • G09G5/00
    • H04N9/3194H04L12/1822H04M3/567H04N9/3179
    • A terminal device connected with a display device includes: an input unit to which operation information is inputted; an image generating unit which generates a configuration designation image including a position designation area corresponding to a display area of the display device and an icon arrangement area where an icon corresponding to an image that can be designated in relation to the position designation area is arranged; and a setting unit which designates an icon to be arranged in the icon arrangement area in relation to the position designation area, based on the operation information, and thereby sets an image corresponding to the icon as a display image in the display area. The icon includes a first icon corresponding to an image supplied from the terminal device connected with the display device and a second icon corresponding to a predetermined pattern image.
    • 与显示装置连接的终端装置包括:输入单元,输入操作信息; 生成包括与显示装置的显示区域相对应的位置指定区域的配置指定图像的图像生成单元和配置有与该位置指定区域可指定的图像对应的图标的图标配置区域; 以及设置单元,其基于操作信息指定要布置在图标布置区域中的图标,并且将与图标相对应的图像设置为显示区域中的显示图像。 图标包括对应于从与显示装置连接的终端装置提供的图像的第一图标和与预定图案图像对应的第二图标。
    • 6. 发明授权
    • Optical measurement cell
    • 光学测量单元
    • US08390812B2
    • 2013-03-05
    • US13153228
    • 2011-06-03
    • Issei YokoyamaKimihiko Arimoto
    • Issei YokoyamaKimihiko Arimoto
    • G01N21/00
    • G01N21/05G01N21/09G01N2021/0346G01N2021/058
    • To make it possible to alter a cell length with reduction of a manufacturing cost so that a spacer can be securely positioned at a desired position, a cell includes: a pair of optical windows sandwiching a flow channel; a cell body provided with an accommodating recess and a solution introduction part and a solution deriving part; a pair of light transmitting members in the accommodating recess and forming the pair of optical windows; a spacer defining a distance between the opposing surfaces of the pair of light transmitting members; and a pressing mechanism for pressing the light transmitting members and the spacer toward the bottom surface of the accommodating recess so as to form the flow channel, wherein a positioning recess having a shape corresponding to the spacer is provided on at least one of the opposing surfaces and the spacer is fitted therein.
    • 为了能够以减少制造成本来改变电池长度,从而可以将间隔件牢固地定位在期望的位置,电池包括:夹持流动通道的一对光学窗口; 设置有容纳凹部的池体,溶液导入部和溶液导出部; 一对在所述容纳凹部中的透光构件,并形成所述一对光学窗; 限定所述一对光透射构件的相对表面之间的距离的间隔件; 以及用于将光透射构件和间隔件朝向容纳凹部的底表面按压以形成流动通道的按压机构,其中具有与间隔件相对应的形状的定位凹槽设置在至少一个相对表面 并且间隔件装配在其中。
    • 7. 发明申请
    • SAMPLE ANALYZING APPARATUS
    • 样品分析仪
    • US20110299083A1
    • 2011-12-08
    • US13202058
    • 2010-01-07
    • Issei Yokoyama
    • Issei Yokoyama
    • G01N21/59
    • G01N21/31G01J3/02G01J3/0208G01J3/1804G01J3/42G01N2021/0357
    • Provided is a sample analyzing apparatus by which highly accurate measurement results can be obtained. The sample analyzing apparatus is provided with: a sample cell part constituting a plurality of cell spaces; light source parts that irradiate light in wavelength regions different from each other on the cell spaces; a plurality of collimator mirrors that are arranged to correspond to the cell spaces respectively and that collimate the transmitted light that has passed through the cell spaces; a diffraction grating that disperses the reflection light collimated by the collimator mirrors; a light collecting mirror that collects the light dispersed by means of the diffraction grating; and a light detector that detects the light collected by the light collecting mirror.
    • 提供了可以获得高精度测量结果的样品分析装置。 样品分析装置具有:构成多个单元格空间的样本单元部分; 照射在细胞空间上彼此不同的波长区域中的光的光源部分; 多个准直器反射镜,其分别对应于所述单元空间并准直已经穿过所述单元空间的透射光; 衍射光栅,其分散由准直器反射镜准直的反射光; 聚光镜,其收集通过衍射光栅分散的光; 以及检测由聚光镜收集的光的光检测器。
    • 8. 发明授权
    • Measuring method of component concentration in solution
    • 溶液中组分浓度的测量方法
    • US06993444B2
    • 2006-01-31
    • US10932860
    • 2004-09-02
    • Issei YokoyamaYoshihito YuharaJunji KojimaTakaaki Yada
    • Issei YokoyamaYoshihito YuharaJunji KojimaTakaaki Yada
    • G01F1/12G01J5/02
    • G01N21/274
    • A measuring method of determining component concentration in a solution by calculating component concentrations in the solution at various temperatures in a small number of steps. The component concentration is measured at an arbitrary temperature T by using a solution absorbance spectrum and solvent absorbance spectrum at a plurality of wavelength(s)r, and preliminarily determining a calibration coefficient Mij (TO). Concentration of Ci of component i in solution at reference temperature TO, is obtained at differential spectrum of solution spectrum S (λj, T) at temperature T in j-th wavelength λj and solvent spectrum B (λj, T) at temperature T in j-th wavelength λj, calculating calibration coefficient Mij (TO) the specific component concentrations.
    • 通过在少量步骤中通过在各种温度下计算溶液中的组分浓度来测定溶液中组分浓度的测量方法。 通过使用多个波长r处的溶液吸收光谱和溶剂吸收光谱,在任意温度T测量组分浓度,并且初步确定校准系数M ij(T) O )。 在溶液光谱S(λN,T)的差分光谱下获得在参考温度T O 0下在溶液中浓度的组分i的C i )在第j个波长λN和第二波长λλ下的温度T和溶剂光谱B(λ,j,T)中,在第j个波长λ< 计算特定组分浓度的校准系数M ij(T O O)。
    • 9. 发明授权
    • Method of analyzing the concentration of components in a solution
    • 分析溶液中组分浓度的方法
    • US5729342A
    • 1998-03-17
    • US787648
    • 1997-01-23
    • Issei YokoyamaMasaru Inoue
    • Issei YokoyamaMasaru Inoue
    • G01N21/25G01N21/31G01N21/59G01N21/90
    • G01N21/314
    • A method of analyzing the concentration of components in a fluid solution that can be contaminated with gas bubbles includes applying a spectrum of light to a test cell holding a sample fluid solution and detecting the measurement of the intensity of light passing through the test cell. A gas of the type that would be found in the sample fluid solution can be initially inserted into the test cell with light of a predetermined range of wavelengths scanning the test cell to obtain a reference spectrum. The test cell is then filled with the sample fluid solution and the light measurement is again conducted to obtain a sample spectrum. Data processing can occur to derive a light absorbance spectrum from the reference spectrum and sample spectrum to enable a determination of the percentage of concentrations of each component from the light absorbance spectrum, including the percentage of gas. Adding the determined percentages of concentration will provide a total amount, and comparing this total amount with a predetermined value can verify the accuracy of the concentration of components. If the data is contaminated as a result of an excess presence of gas bubbles, this data can be discarded to insure that the proper amount of concentrations is determined.
    • 分析可能被气泡污染的流体溶液中的组分的浓度的方法包括向保持样品流体溶液的测试电池施加一束光,并检测通过测试电池的光的强度的测量。 可以在扫描测试电池的预定波长范围内的光中首先将样品流体溶液中将发现的类型的气体插入到测试电池中,以获得参考光谱。 然后用试样流体溶液填充测试电池,并再次进行光测量以获得样品光谱​​。 可以进行数据处理以从参考光谱和样品光谱导出吸光度光谱,以便能够从光吸收光谱(包括气体百分比)确定每个组分的浓度百分比。 添加确定的浓度百分比将提供总量,并将该总量与预定值进行比较可以验证组分浓度的准确性。 如果由于气泡过剩而导致数据被污染,则可以丢弃该数据,以确保确定适当的浓度。
    • 10. 发明授权
    • Composite multi-image display device, composite multi-image information processing device, composite multi-image display system, composite multi-image display method, and composite multi-image formation processing method
    • 复合多图像显示装置,复合多图像信息处理装置,复合多图像显示系统,复合多图像显示方法和复合多图像形成处理方法
    • US08687019B2
    • 2014-04-01
    • US13072067
    • 2011-03-25
    • Mitsuru KubotaIssei Yokoyama
    • Mitsuru KubotaIssei Yokoyama
    • G09G5/00G06F3/00
    • G09G5/397G09G2340/12
    • An image display system includes an image display device and an image information processing device. The image display device includes a display side input section receiving a plurality of pieces of image information and cursor position information, an image combining/displaying section for displaying a composite image of the plurality of pieces of image information, and a cursor display section for displaying a cursor based on the cursor position information. The image information processing device includes an output section for outputting the image information and the cursor position information, a processing side input section for receiving input of composite image information, and a cursor position information processing section selecting either of a first cursor correspondence process corresponding to the image information sent to the image display device and a second cursor correspondence process corresponding to the composite image information and then performing the cursor correspondence process thus selected.
    • 图像显示系统包括图像显示装置和图像信息处理装置。 图像显示装置包括:接收多个图像信息和光标位置信息的显示侧输入部,用于显示多张图像信息的合成图像的图像合成/显示部;以及用于显示多个图像信息的光标显示部 基于光标位置信息的光标。 图像信息处理装置包括用于输出图像信息和光标位置信息的输出部分,用于接收合成图像信息的输入的处理侧输入部分和选择对应于第一光标对应处理的光标位置信息处理部分 发送到图像显示装置的图像信息和对应于合成图像信息的第二光标对应处理,然后执行如此选择的光标对应处理。