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    • 3. 发明专利
    • Method for evaluating oxidation ability of nano material to biomolecule
    • 评价纳米材料对生物分子的氧化能力的方法
    • JP2011047827A
    • 2011-03-10
    • JP2009197291
    • 2009-08-27
    • Hamamatsu Photonics KkMitsubishi Chemical Medience Corp三菱化学メディエンス株式会社浜松ホトニクス株式会社
    • MATSUMOTO KENKATSUMATA MASAKAZU
    • G01N21/64B82B3/00
    • PROBLEM TO BE SOLVED: To provide a method capable of evaluating quickly and highly accurately oxidation ability of a nano material to a biomolecule. SOLUTION: This method for evaluating oxidation ability of the nano material to the biomolecule includes steps for: (a) preparing a sample by mixing the nano material with biomolecules; (b) measuring a plurality of emission quantities by performing in different light conditions and/or measuring conditions, operations wherein the sample prepared in step (a) is left as it is in the dark, exposed under a prescribed light condition, and then left as it is in the dark, and emission from the sample is measured; (c) calculating an evaluation value based on the plurality of emission quantities measured in step (b); and (d) evaluating the oxidation ability of a nano material to the biomolecule based on the evaluation value calculated in step (c). COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够快速且高度准确地评价纳米材料对生物分子的氧化能力的方法。 解决方案:用于评估纳米材料对生物分子的氧化能力的方法包括以下步骤:(a)通过将纳米材料与生物分子混合来制备样品; (b)通过在不同的光条件和/或测量条件下进行测量多个发射量,其中步骤(a)中制备的样品在黑暗中保持原样,在规定的光照条件下暴露,然后离开 因为它在黑暗中,并且测量样品的发射; (c)基于步骤(b)中测量的多个排放量计算评价值; 和(d)基于步骤(c)中计算出的评价值,评估纳米材料对生物分子的氧化能力。 版权所有(C)2011,JPO&INPIT
    • 4. 发明专利
    • Method of evaluating photosynthesis sample, and evaluation program for same
    • 评估光合作用样本的方法及其评估方案
    • JP2008116401A
    • 2008-05-22
    • JP2006301850
    • 2006-11-07
    • Hamamatsu Photonics Kk浜松ホトニクス株式会社
    • KATSUMATA MASAKAZUKAZUMURA KIMIKOTAKEUCHI AYANO
    • G01N21/64
    • PROBLEM TO BE SOLVED: To properly evaluate a photosynthesis function of a photosynthesis sample contained in an evaluation sample. SOLUTION: The evaluation sample containing the photosynthesis sample is irradiated with the first excitation light in the first irradiation condition, when the evaluation sample is evaluated. The evaluation sample is then irradiated with the second excitation light in the second irradiation condition with a light energy integrated value lower compared with that in the first irradiation condition. A light emission quantity of delay light generated from the evaluation sample is measured thereafter. Finally the evaluation sample is drawn out based on the light emission quantity measured in a measuring step, and the evaluation sample is evaluated based on an evaluation value and a standard data. The second irradiation condition is changed therein to measure light emission quantities after the first excitation step and the second excitation step, and the evaluation sample is evaluated based on the evaluated values corresponding to the measured light emission quantities and the standard data corresponding to the evaluated values. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:适当评估评估样品中包含的光合作用样品的光合作用功能。 解决方案:评估样品时,在第一照射条件下,用第一激发光照射含有光合作用样品的评价样品。 然后,与第一照射条件相比,在第二照射条件下用第二激发光照射评价样品,光能积分值较低。 此后测量从评价样品产生的延迟光的发光量。 最后,基于在测量步骤中测量的发光量来绘制评估样本,并且基于评估值和标准数据来评估评估样本。 第二照射条件在其中改变以测量第一激发步骤和第二激发步骤之后的发光量,并且基于与测量的发光量和对应于评估值的标准数据相对应的评估值来评估评估样本 。 版权所有(C)2008,JPO&INPIT
    • 6. 发明专利
    • Light emitting device
    • 发光装置
    • JP2003283038A
    • 2003-10-03
    • JP2002080960
    • 2002-03-22
    • Hamamatsu Photonics Kk浜松ホトニクス株式会社
    • KATSUMATA MASAKAZU
    • A01G7/00F21S8/04F21V29/00F21Y101/02H01S5/024
    • PROBLEM TO BE SOLVED: To provide a light emitting device, maintaining a light emitting element in water-tight and efficiently radiating heat generated by the light emitting element. SOLUTION: The light source part 14 of the light emitting device 10 is provided with a supporting body 22, equipped with long radiating fins 24 extended into the longitudinal direction thereof, a plurality of semiconductor laser elements 12 arranged along the longitudinal direction of the supporting body 22 and thermally connected to the supporting body 22, a light transmitting window 38, through which laser beams emitted out of the semiconductor laser elements 12 are transmitted, and a resin part 44, provided on the supporting body 22 so as to surround the semiconductor laser elements 12 and supporting the light transmitting window 38 while tightly sealing the semiconductor laser elements 12. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:为了提供一种发光器件,将发光元件保持在水密性并且有效地辐射由发光元件产生的热量。 解决方案:发光器件10的光源部分14设置有支撑体22,其具有沿其纵向方向延伸的长散热片24,沿着其纵向方向布置的多个半导体激光元件12 支撑体22,热连接到支撑体22,透射窗38,通过该透光窗38发射出半导体激光元件12的激光束;以及树脂部44,设置在支撑体22上以包围 半导体激光元件12,并且在密封半导体激光元件12的同时支撑透光窗38。版权所有(C)2004,JPO
    • 7. 发明专利
    • Method for diagnosing growing state of plant and device used for the same
    • 用于诊断用于其的植物和装置的生长状态的方法
    • JP2013183702A
    • 2013-09-19
    • JP2012052089
    • 2012-03-08
    • Hamamatsu Photonics Kk浜松ホトニクス株式会社Kyoto Univ国立大学法人京都大学
    • KATSUMATA MASAKAZUKOBAYASHI YUKOIMANISHI JUNICHI
    • A01G7/00
    • PROBLEM TO BE SOLVED: To provide a convenient method for diagnosing the growing state of a plant, capable of performing objective determination, and a device used for the same.SOLUTION: As a method for diagnosing the growing state of a plant, the growing state is diagnosed by a delayed light emission-measuring step of measuring the delayed light emission of leaves of the plant under a prescribed temperature condition to obtain delayed light emission data, a chlorophyll-measuring step of measuring the amount of chlorophyll of the leaves of the plant to obtain chlorophyll data, a delayed light emission amount-correcting step of obtaining first and second delayed light emission amounts based on the delayed light emission data and chlorophyll data, and correcting each of them with the chlorophyll amount per the prescribed area of leaves of the plant to calculate the corrected first and second delayed light emission amounts and a determining step of determining the activity of the plant at the neighborhood part of leaves of the plant based on the comparison of the corrected first and second light emission amounts calculated by the delayed light emission amount-correcting step with the corrected first and second light emission amounts becoming the standard of the plant.
    • 要解决的问题:提供用于诊断植物生长状态,能够进行客观判断的便利方法和用于其的装置。解决方案:作为用于诊断植物生长状态的方法,生长状态 通过在规定的温度条件下测定植物叶片的延迟发光的延迟发光测定步骤来诊断,得到延迟发光数据,测定植物叶片叶绿素含量的叶绿素测定步骤 以获得叶绿素数据,延迟发光量校正步骤,基于延迟发光数据和叶绿素数据获得第一和第二延迟发光量,并且每个叶片的叶片的规定面积中的叶绿素量进行校正 植物计算校正的第一和第二延迟发光量和确定植物活性的确定步骤 基于通过延迟发光量校正步骤计算的经校正的第一和第二发光量与校正的第一和第二发光量的比较将植物的叶的邻近部分变为植物的标准。
    • 8. 发明专利
    • Thawing container
    • THULING CONTAINER
    • JP2013116068A
    • 2013-06-13
    • JP2011264790
    • 2011-12-02
    • Hamamatsu Photonics Kk浜松ホトニクス株式会社
    • KOIKE TAKASHIKOBAYASHI YUKOKATSUMATA MASAKAZU
    • C12M1/02G01N1/28
    • PROBLEM TO BE SOLVED: To provide a thawing container capable of thawing a frozen sample conveniently in a short time.SOLUTION: The thawing container 1 is for thawing the frozen sample accommodated in a sample container. The thawing container 1 is provided with a holder 14, a transistor 18, a first vibration part 16, and a supporting member 19. The holder 14 presents a cylindrical shape, and accommodates at least a part of the sample container 2 internally. The transistor 18 gives heat to the holder 14. The first vibration part 16 gives vibration in a direction that intersects with the axis of the holder 14 to the holder 14. The supporting member 19 has elasticity and supports the holder 14.
    • 要解决的问题:提供能够在短时间内方便地解冻冷冻样品的解冻容器。 解冻装置:解冻容器1用于解冻容纳在样品容器中的冷冻样品。 解冻容器1设置有保持器14,晶体管18,第一振动部16和支撑部件19.保持器14呈圆筒状,内部容纳至少一部分检体容器2。 晶体管18向保持器14施加热量。第一振动部分16沿着与保持器14的轴线相交的方向向保持器14产生振动。支撑部件19具有弹性并且支撑保持器14。 (C)2013,JPO&INPIT
    • 9. 发明专利
    • Reference light source
    • 参考光源
    • JP2013113635A
    • 2013-06-10
    • JP2011258101
    • 2011-11-25
    • Hamamatsu Photonics Kk浜松ホトニクス株式会社
    • KOIKE TAKASHIKOBAYASHI YUKOKATSUMATA MASAKAZU
    • G01N21/64F21S2/00F21Y101/02
    • PROBLEM TO BE SOLVED: To provide a reference light source for stably emitting weak light evenly over the surface.SOLUTION: Light emitted by an LED 5 is guided by a light guide member 4 and outputted forward by a first light output surface 41, and is detected by an SPD 6 provided to face the LED 5 via the light guide member 4. A quantity of light emitted by the LED 5 is controlled by a control unit 9 on the basis of the detected quantity of emitted light. A first dimmer filter 10A, a microlens array 13, a first diffuser panel 14, a second dimmer filter 15, and a second diffuser panel 16 are provided on the first light output surface 41 in this order in the direction that they go away from the first light output surface 41. Thus, the light outputted by the first light output surface 41 is dimmed so that it becomes smaller than light quantity of light detected by the SPD 6 and diffused.
    • 要解决的问题:提供用于在表面上均匀地发射弱光的参考光源。 解决方案:由LED5发出的光由导光构件4引导,并由第一光输出面41向前方输出,并且经由导光构件4提供给面向LED 5的SPD6检测。 基于检测出的发光量,由控制单元9控制LED5发出的光量。 第一调光器滤波器10A,微透镜阵列13,第一扩散板14,第二调光滤光器15和第二扩散板16沿着它们离开的方向依次设置在第一光输出表面41上 第一光输出面41.因此,由第一光输出面41输出的光变暗,使其变得小于由SPD6检测出的光的光量并扩散。 版权所有(C)2013,JPO&INPIT
    • 10. 发明专利
    • Cell culture apparatus and method therefor
    • 细胞培养装置及其方法
    • JP2004065051A
    • 2004-03-04
    • JP2002226436
    • 2002-08-02
    • Hamamatsu Photonics Kk浜松ホトニクス株式会社
    • TSUCHIYA KOJIAKIKUSA FUMIKATSUMATA MASAKAZUSUZUKI HITOSHIOKANO YOHEIYAMADA MAYUKO
    • A01H4/00C12M3/00C12N5/07C12N5/071G01N21/64C12N5/06
    • PROBLEM TO BE SOLVED: To provide a cell culture apparatus which can project different kinds of light having different projection areas, strengths, wavelengths, and projection times on culture containers, respectively, and can simultaneously search light projection conditions suitable for the growth or differentiation of cultured cells in parallel for the culture containers, respectively. SOLUTION: This cell culture apparatus 1 comprises the culture contains 20 put in a tray 10 having a plurality of sections and used for arranging the culture containers therein, a CCD (charge coupled device) camera 30 for obtaining the images of the culture containers 20 and the images of the calluses placed in the culture containers 20, an operation section 40 for determining projection areas 120 for projecting the light on the bases of the culture containers 20 and the calluses 110, a projector 50 for selectively projecting the light on the calluses 110 from three primary color sources on the projection areas 120 determined by the operation section 40, and a memory 60 for memorizing the images of the calluses 110, the light projection areas 120, and the strengths, wavelengths, and projection times of the light. COPYRIGHT: (C)2004,JPO
    • 解决的问题:提供一种细胞培养装置,其能够分别投影在培养容器上具有不同投影面积,强度,波长和投影时间的不同种类的光,并且可以同时搜索适合生长的光投射条件 或分别培养细胞分化培养容器。 解决方案:该细胞培养装置1包括将放入具有多个部分的托盘10中的20个培养物用于在其中排列培养容器的CCD(电荷耦合器件)相机30,用于获得培养物的图像 容器20和放置在培养容器20中的愈伤组织的图像,用于确定用于在培养容器20和愈伤组织110的基部上投射光的投影区域120的操作部分40,用于选择性地将光投射到的投影仪50 由操作部分40确定的投影区域120上的来自三个原色源的愈伤组织110,以及用于存储愈伤组织110的图像的存储器60,光投影区域120以及光源投影区域120的强度,波长和投影时间 光。 版权所有(C)2004,JPO