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    • 21. 发明授权
    • Hemoglobins with intersubunit disulfide bonds
    • 血红蛋白与亚基间二硫键
    • US5776890A
    • 1998-07-07
    • US453666
    • 1995-05-30
    • Stephen J. HoffmanKiyoshi Nagai
    • Stephen J. HoffmanKiyoshi Nagai
    • A61K38/00C07K14/805
    • C07K14/805A61K38/00C07K2319/00Y10S514/832Y10S514/833
    • Cysteine substitution mutants of alpha and/or beta globin mutants are produced by recombinant DNA techniques and used in the construction, intracellularly or otherwise, of mutant hemoglobins in which alpha- and beta-globin like subunits are crosslinked by disulfide bonds. Solutions of these mutant hemoglobins are used as blood substitutes. Preferably, these mutant hemoglobins contain further mutations which reduce their affinity for oxygen. Hemoglobins are preferably obtained by recombinant DNA techniques. Both alpha and beta globin chains can now be readily expressed, making possible the commercial production of wholly artificial hemoglobin, whether conventional or mutant in form. Solutions of wholly artificial hemoglobins are also used as blood substitutes. Expression of the alpha globin gene was substantially improved by means of a beta globin gene "header".
    • α和/或β球蛋白突变体的半胱氨酸取代突变体通过重组DNA技术产生并用于构建,细胞内或其它突变体血红蛋白,其中α和β-珠蛋白样亚基通过二硫键交联。 这些突变体血红蛋白的溶液用作血液代用品。 优选地,这些突变体血红蛋白含有进一步降低其对氧的亲和力的突变。 血红蛋白优选通过重组DNA技术获得。 现在可以容易地表达α和β球蛋白链,使得完全人造血红蛋白的商业生产成为可能,无论是常规的还是突变形式。 完全人造血红蛋白的溶液也用作血液代用品。 通过β球蛋白基因“头”,α球蛋白基因的表达显着改善。
    • 22. 发明授权
    • Semiconductor memory device having redundancy memory cells for replacing
defective
    • 具有用于替换有缺陷的冗余存储单元的半导体存储器件
    • US5373471A
    • 1994-12-13
    • US934332
    • 1992-08-25
    • Makoto SaekiKiyoshi NagaiHisae YamamuraTadashi AbeTakeshi Fukazawa
    • Makoto SaekiKiyoshi NagaiHisae YamamuraTadashi AbeTakeshi Fukazawa
    • G11C11/413G11C11/401G11C11/407G11C29/00G11C29/04G11C7/00
    • G11C29/846
    • In case an address is to access a defective memory cell, a defective memory cell in a memory cell area contained in one of paired memory mats is selected in parallel with a redundant memory cell in a redundant memory cell area contained in the other memory mat. At this time of selecting the redundant main word line for selecting the redundant memory cell, there is not required the logical operation for deciding whether or not the redundant use of the access address fed from the outside is proper. For example, the redundant main word line is set to the select level on the basis of a chip select signal. As a result, the drive start timing of the redundant main word line is not delayed in the least from the drive start timing of the main word line. Thus, it is possible to prevent the event that the select drive timing of the redundant sub word line is delayed on account of the delay in the drive timing of the redundant main word line.
    • 在地址要访问有缺陷的存储单元的情况下,在包含在其中一个存储器堆中的存储单元区域中的有缺陷的存储器单元与冗余存储器单元并联地选择在另一存储器堆中所包含的冗余存储单元区域中。 在选择用于选择冗余存储单元的冗余主字线时,不需要用于判断从外部馈送的访问地址的冗余使用是否合适的逻辑操作。 例如,基于片选信号将冗余主字线设定为选择电平。 结果,冗余主字线的驱动开始定时至少不会从主字线的驱动开始定时延迟。 因此,可以防止由于冗余主字线的驱动定时的延迟而使冗余子字线的选择驱动定时被延迟的事件。
    • 24. 发明授权
    • Hermetically sealed flat-type piezo-electric oscillator assembly
    • 密封平型压电振荡器组件
    • US4405875A
    • 1983-09-20
    • US253043
    • 1981-04-10
    • Kiyoshi Nagai
    • Kiyoshi Nagai
    • H03H3/02H03H9/10H01L41/08
    • H03H9/1021
    • A hermetically sealed flat-type piezo-electric oscillator assembly comprising a flat-type package and a piezo-electric oscillator encased in the package.The flat-type package comprises metal frame, an insulating material portion united to the frame to form the package, and a plurality of lead wires passing through the insulating material portion to provide terminals inside of the package, and having opening for insertion of the piezo-electric oscillator element therein such that the piezo-electric oscillator element is mounted on the terminals of the lead wires. A lid is placed over the opening of the package so as to hermetically seal the package with the oscillator element encased therein. At least two side faces of the insulating material portion are, at least in part, positioned within the space defined by the metal frame to engage with an inwardly facing surface of the metal frame.
    • 一种气密密封的扁平型压电振荡器组件,包括平面型封装和封装在封装中的压电振荡器。 扁平型封装包括金属框架,与框架结合以形成封装的绝缘材料部分,以及穿过绝缘材料部分提供端子的多个引线,并具有用于插入压电元件的开口 其中压电振荡器元件安装在引线的端子上。 将盖子放置在包装的开口上方,以便封装有封装在其中的振荡器元件的封装。 绝缘材料部分的至少两个侧面至少部分地定位在由金属框架限定的空间内,以与金属框架的面向内的表面接合。
    • 26. 发明授权
    • Method and apparatus for measuring spectroscopic absorbance
    • 用于测量光谱吸光度的方法和装置
    • US07767969B2
    • 2010-08-03
    • US12319332
    • 2009-01-06
    • Kiyoshi NagaiHarumi ShibataSayaka Hamaguchi
    • Kiyoshi NagaiHarumi ShibataSayaka Hamaguchi
    • G01J5/06
    • G01J3/45G01N21/3563G01N2021/3568G01N2021/3595
    • An object of the present invention is to provide a spectroscopic method and an apparatus which can measure a trace element accurately with high sensitivity. In order to achieve this object, for example, in Fourier transformation infrared spectroscopy (FT-IR), a reference spectrum and a measurement spectrum including an impurity spectrum are measured in order to obtain a differential spectrum comprising the impurity spectrum and a flat baseline, correction including a frequency shift of the reference spectrum before calculating a differential spectrum, is performed on the reference spectrum. This makes it possible to remove baseline deformation due to phonon absorbance of silicon included in the conventional differential spectrum, and to obtain an infrared absorption spectrum of the substitutional carbon with high accuracy and high sensitivity.
    • 本发明的目的是提供一种能够以高灵敏度精确地测量微量元素的分光方法和装置。 为了实现该目的,例如在傅里叶变换红外光谱(FT-IR)中,测量参考光谱和包含杂质光谱的测量光谱,以获得包含杂质光谱和平坦基线的差分光谱, 在参考光谱上执行包括计算差分光谱之前的参考光谱的频移的校正。 这使得可以消除由常规差分光谱中包含的硅的声子吸收引起的基线变形,并以高精度和高灵敏度获得取代碳的红外吸收光谱。
    • 27. 发明申请
    • Method and apparatus for measuring spectroscopic absorbance
    • 用于测量光谱吸光度的方法和装置
    • US20090173884A1
    • 2009-07-09
    • US12319332
    • 2009-01-06
    • Kiyoshi NagaiHarumi ShibataSayaka Hamaguchi
    • Kiyoshi NagaiHarumi ShibataSayaka Hamaguchi
    • G01J5/02G01J3/45
    • G01J3/45G01N21/3563G01N2021/3568G01N2021/3595
    • An object of the present invention is to provide a spectroscopic method and an apparatus which can measure a trace element accurately with high sensitivity. In order to achieve this object, for example, in Fourier transformation infrared spectroscopy (FT-IR), a reference spectrum and a measurement spectrum including an impurity spectrum are measured in order to obtain a differential spectrum comprising the impurity spectrum and a flat baseline, correction including a frequency shift of the reference spectrum before calculating a differential spectrum, is performed on the reference spectrum. This makes it possible to remove baseline deformation due to phonon absorbance of silicon included in the conventional differential spectrum, and to obtain an infrared absorption spectrum of the substitutional carbon with high accuracy and high sensitivity.
    • 本发明的目的是提供一种能够以高灵敏度精确地测量微量元素的分光方法和装置。 为了实现该目的,例如在傅里叶变换红外光谱(FT-IR)中,测量参考光谱和包含杂质光谱的测量光谱,以获得包含杂质光谱和平坦基线的差分光谱, 在参考光谱上执行包括计算差分光谱之前的参考光谱的频移的校正。 这使得可以消除由常规差分光谱中包含的硅的声子吸收引起的基线变形,并以高精度和高灵敏度获得取代碳的红外吸收光谱。