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    • 2. 发明授权
    • Fluorescence lifetime measurement apparatus
    • 荧光寿命测量仪
    • US07215421B2
    • 2007-05-08
    • US10912784
    • 2004-08-06
    • Tadashi Kotani
    • Tadashi Kotani
    • G01J3/30
    • G01J3/4406G01N21/6408
    • A fluorescence lifetime measurement apparatus includes a first controller controlling a total gate length and a second controller controlling a start gate length of a plurality of gate lengths into which the total gate length is divided. The start gate length is a time window whose start time is when measurement of the number of fluorescence photons of a specimen starts. The apparatus also includes a measurer measuring the number of fluorescence photons for each of the gate lengths; a processor calculating a fluorescence lifetime the specimen based on the start gate length and the number of fluorescence photons; and a third controller causing, when the fluorescence lifetime does not satisfy a predetermined condition, the first and second controllers to change the start gate length and the total gate length.
    • 荧光寿命测量装置包括控制总栅极长度的第一控制器和控制总栅极长度分割成多个栅极长度的起始栅极长度的第二控制器。 启动栅极长度是开始时间是开始测量样品的荧光光子数量的时间窗口。 该装置还包括测量每个栅极长度的荧光光子数量的测量器; 处理器基于起始栅极长度和荧光光子数量来计算样品的荧光寿命; 以及第三控制器,当所述荧光寿命不满足预定条件时,所述第一和第二控制器改变所述起始栅极长度和所述总栅极长度。
    • 3. 发明申请
    • Apparatus for measuring fluorescence lifetime
    • 用于测量荧光寿命的装置
    • US20050072936A1
    • 2005-04-07
    • US10769135
    • 2004-01-30
    • Tadashi Kotani
    • Tadashi Kotani
    • G01J3/44G01N21/64
    • G01N21/6408G01J3/4406
    • An apparatus for measuring fluorescence lifetime includes a pulse laser source that generates a pulse excitation light, a detector that detects a fluorescence generated from a sample by irradiating the pulse excitation light, and outputs a detection signal corresponding to the fluorescence, a measurement unit that measures number of photons emitted in a predetermined time gate based on the detection signal, a correction unit that corrects the number of photons measured based on Poisson distribution, and a calculation unit that calculates the fluorescence lifetime of the sample based on the number of photons corrected.
    • 用于测量荧光寿命的装置包括产生脉冲激发光的脉冲激光源,通过照射脉冲激发光来检测从样品产生的荧光的检测器,并输出与荧光相对应的检测信号,测量单位,其测量 基于检测信号在预定时间门中发射的光子的数量,校正基于泊松分布测量的光子数的校正单元,以及基于校正的光子数计算样本的荧光寿命的计算单元。
    • 4. 发明申请
    • Fluorescence lifetime measurement apparatus
    • 荧光寿命测量仪
    • US20050030532A1
    • 2005-02-10
    • US10912784
    • 2004-08-06
    • Tadashi Kotani
    • Tadashi Kotani
    • G01J3/44G01N21/64G01J3/30
    • G01J3/4406G01N21/6408
    • A fluorescence lifetime measurement apparatus includes a first controller controlling a total gate length and a second controller controlling a start gate length of a plurality of gate lengths into which the total gate length is divided. The start gate length is a time window whose start time is when measurement of the number of fluorescence photons of a specimen starts. The apparatus also includes a measurer measuring the number of fluorescence photons for each of the gate lengths; a processor calculating a fluorescence lifetime the specimen based on the start gate length and the number of fluorescence photons; and a third controller causing, when the fluorescence lifetime does not satisfy a predetermined condition, the first and second controllers to change the start gate length and the total gate length.
    • 荧光寿命测量装置包括控制总栅极长度的第一控制器和控制总栅极长度分割成多个栅极长度的起始栅极长度的第二控制器。 启动栅极长度是开始时间是开始测量样品的荧光光子数量的时间窗口。 该装置还包括测量每个栅极长度的荧光光子数量的测量器; 处理器基于起始栅极长度和荧光光子数量来计算样品的荧光寿命; 以及第三控制器,当所述荧光寿命不满足预定条件时,所述第一和第二控制器改变所述起始栅极长度和所述总栅极长度。
    • 5. 发明授权
    • Three-dimensional model deformation system, method and computer readable program, and computer readable storage medium storing that program
    • 三维模型变形系统,方法和计算机可读程序,以及存储该程序的计算机可读存储介质
    • US07924277B2
    • 2011-04-12
    • US11816187
    • 2006-03-28
    • Kazuyuki HattoriHitoshi MisawaJunji IshidaTadashi KotaniTakaya Hashimoto
    • Kazuyuki HattoriHitoshi MisawaJunji IshidaTadashi KotaniTakaya Hashimoto
    • G06T15/00
    • G06T19/20G06T2219/2021Y10S715/964
    • A three-dimensional model modification system for modifying a three-dimensional model, defined by a plurality of surfaces and representing an arbitrary object is disclosed. The system includes a base-curve generating unit fitting skeleton lines, representing a prerecorded approximate outline of the object, to a three-dimensional model to be modified and generating base curves, representing an approximate outline of the three-dimensional model; a first polygon forming unit generating a group of points from the three-dimensional model; a base-curve modifying unit arbitrarily modifying the base curves of the three-dimensional model, according to an instruction from an operator; a group-of-points displacing/determining unit displacing the group of points based on base curve displacements from the base curves before arbitral modification to the base curves after arbitrary modification; and a second polygon forming unit generating a three-dimensional model defined by a plurality of surfaces formed from the group of points.
    • 公开了一种用于修改由多个表面定义并表示任意对象的三维模型的三维模型修改系统。 所述系统包括基准曲线生成单元,将表示所述对象的预先记录的近似轮廓的骨架线拟合为要修改的三维模型,并生成表示所述三维模型的近似轮廓的基本曲线; 产生来自所述三维模型的一组点的第一多边形形成单元; 基准曲线修改单元根据来自操作者的指令任意修改三维模型的基本曲线; 一组点位移/确定单元,在任意修改之后,基于基准曲线位移从仲裁修改前的基本曲线移位到基本曲线; 以及第二多边形形成单元,其生成由由所述一组点形成的多个表面限定的三维模型。
    • 8. 发明授权
    • Apparatus for measuring fluorescence lifetime
    • 用于测量荧光寿命的装置
    • US07265825B2
    • 2007-09-04
    • US10769135
    • 2004-01-30
    • Tadashi Kotani
    • Tadashi Kotani
    • G01N21/64
    • G01N21/6408G01J3/4406
    • An apparatus for measuring fluorescence lifetime includes a pulse laser source that generates a pulse excitation light, a detector that detects a fluorescence generated from a sample by irradiating the pulse excitation light, and outputs a detection signal corresponding to the fluorescence, a measurement unit that measures number of photons emitted in a predetermined time gate based on the detection signal, a correction unit that corrects the number of photons measured based on Poisson distribution, and a calculation unit that calculates the fluorescence lifetime of the sample based on the number of photons corrected.
    • 用于测量荧光寿命的装置包括产生脉冲激发光的脉冲激光源,通过照射脉冲激发光来检测从样品产生的荧光的检测器,并输出与荧光相对应的检测信号,测量单位,其测量 基于检测信号在预定时间门中发射的光子的数量,校正基于泊松分布测量的光子数的校正单元,以及基于校正的光子数计算样本的荧光寿命的计算单元。
    • 9. 发明授权
    • Antenna unit and watch having the antenna unit
    • 具有天线单元的天线单元和手表
    • US07167134B2
    • 2007-01-23
    • US10996258
    • 2004-11-23
    • Narutoshi MinamiTakashi SanoSoh KimuraTadashi Kotani
    • Narutoshi MinamiTakashi SanoSoh KimuraTadashi Kotani
    • H01Q1/12
    • H01Q1/273G04R60/06
    • In one antenna unit, a non-electrically conductive resin layer is provided on a core portion of electrically conductive material and a winding portion is configured by a coil wound on the layer. The antenna unit is housed in a band attaching portion of a watch case of a watch, and a watch module is housed in the watch case. In another antenna unit, a core portion and a winding portion wound on the core portion are arranged in a cover case. Openings are formed in side walls of the cover case oppositely positioned to each other, and parts of the outer circumferential surface of the winding portion are arranged in the openings. The winding portion together with the core portion is supported to the inner surface of the cover case by adhesive portions interposed between the cover case and the winding portion.
    • 在一个天线单元中,在导电材料的芯部上设置非导电树脂层,并且绕组部分由缠绕在该层上的线圈构成。 天线单元被容纳在手表的表壳的带附接部分中,并且手表模块容纳在表壳中。 在另一个天线单元中,缠绕在芯部上的芯部分和绕组部分布置在盖壳中。 开口形成在彼此相对定位的盖壳的侧壁中,并且绕组部分的外周表面的一部分布置在开口中。 卷绕部与芯部一起通过插入在盖壳和卷绕部之间的粘合部支撑在盖壳的内表面。