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    • 1. 发明申请
    • High-frequency treatment instrument
    • 高频治疗仪
    • US20070282328A1
    • 2007-12-06
    • US11810372
    • 2007-06-05
    • Naohisa YahagiYuta MuyariTsutomu NakamuraChika MiyajimaTsutomu Okada
    • Naohisa YahagiYuta MuyariTsutomu NakamuraChika MiyajimaTsutomu Okada
    • A61B18/14
    • A61B18/1402A61B17/32056A61B18/1492A61B2017/00269A61B2017/2212A61B2018/00214A61B2018/00898A61B2018/1407A61B2018/141A61B2018/144A61B2018/1475
    • A high-frequency treatment instrument for performing a high-frequency treatment on a pathological lesion portion includes an elongated flexible sheath 2, a pair of arm portions 3A and 3B which is disposed in the sheath 2 so as to freely extend and retract, which is in a closed state in the sheath, and which is opened in a direction moving away from a center axial line of the sheath 2 when it protrudes from the distal end of the sheath 2, a linear treatment electrode which is connected to the distal end sides of the pair of arm portions and which is stretched between the arm portions when the pair of arm portions are opened, an operating wire (elongated extension member) which is disposed in the sheath 2 so as to freely extend and retract and the distal end of which is connected to the treatment electrode, and an operating portion, to which the proximal ends of the sheath and the operating wire are connected, and which operates the operating wire to extend and retract relative to the sheath 2. According to the invention, it is possible to facilitate a procedure by enabling a treatment on a target tissue without performing a curving operation of an endoscope.
    • 用于对病理损伤部进行高频处理的高频处理器具具有细长的柔性护套2,一对臂部3A,3B,其设置在护套2内,自由伸缩, 其在护套中处于闭合状态,并且当其从护套2的远端突出时沿远离护套2的中心轴线移动的方向打开,线性治疗电极连接到远端 一对臂部的端侧,并且当一对臂部分打开时在臂部之间拉伸;操作线(细长延伸构件),其设置在护套2中以便自由伸缩;远端 其端部连接到处理电极,以及操作部分,护套和操作线的近端连接到该操作部分上,并且操作线相对于第二端部延伸和缩回 e鞘2。 根据本发明,可以通过在不进行内窥镜的弯曲操作的情况下对目标组织进行治疗来促进手术。
    • 2. 发明申请
    • Instrument for endoscope and instrument system for endoscope
    • 内窥镜仪器和内窥镜仪器系统
    • US20060276784A1
    • 2006-12-07
    • US11441731
    • 2006-05-26
    • Chika MiyajimaTsutomu Nakamura
    • Chika MiyajimaTsutomu Nakamura
    • A61B18/14
    • A61B18/1492A61B18/1477A61B2018/1422A61B2018/1425A61B2018/144A61B2018/1475
    • An instrument for an endoscope including a flexible insulative insertion section inserted in an endoscope channel, a tubular first electrode section arranged at a distal end of the insertion section with an insertion hole formed along the axis of the insertion section, a conductive electric wire inserted in the insertion section and movable forward/backward, a control section arranged on the proximal end side of the insertion section and controlling forward/backward movement of the electric wire along the axis, a rod-shaped second electrode section connected to a distal end of the electric wire and inserted so as to be movable forward/backward in the insertion hole, and an external connecting section electrically connected to a proximal end side of the electric wire and applying external currents with predetermined frequencies to the electric wire and the second electrode section.
    • 一种用于内窥镜的仪器,其包括插入到内窥镜通道中的柔性绝缘插入部分,管状第一电极部分,其布置在插入部分的远端处,具有沿插入部分的轴线形成的插入孔, 所述插入部能够前后移动;控制部,其配置在所述插入部的基端侧,并且控制所述电线沿着所述轴的前后移动;杆状的第二电极部, 电线插入,以便能够在插入孔中前后移动;以及外部连接部,其电连接到电线的基端侧,并且向电线和第二电极部施加预定频率的外部电流。
    • 4. 发明授权
    • Instrument for endoscope and instrument system for endoscope
    • 内窥镜仪器和内窥镜仪器系统
    • US07731714B2
    • 2010-06-08
    • US11441731
    • 2006-05-26
    • Chika MiyajimaTsutomu Nakamura
    • Chika MiyajimaTsutomu Nakamura
    • A61B18/14
    • A61B18/1492A61B18/1477A61B2018/1422A61B2018/1425A61B2018/144A61B2018/1475
    • An instrument for an endoscope including a flexible insulative insertion section inserted in an endoscope channel, a tubular first electrode section arranged at a distal end of the insertion section with an insertion hole formed along the axis of the insertion section, a conductive electric wire inserted in the insertion section and movable forward/backward, a control section arranged on the proximal end side of the insertion section and controlling forward/backward movement of the electric wire along the axis, a rod-shaped second electrode section connected to a distal end of the electric wire and inserted so as to be movable forward/backward in the insertion hole, and an external connecting section electrically connected to a proximal end side of the electric wire and applying external currents with predetermined frequencies to the electric wire and the second electrode section.
    • 一种用于内窥镜的仪器,其包括插入到内窥镜通道中的柔性绝缘插入部分,管状第一电极部分,其布置在插入部分的远端处,具有沿插入部分的轴线形成的插入孔, 所述插入部能够前后移动;控制部,其配置在所述插入部的基端侧,并且控制所述电线沿着所述轴的前后移动;杆状的第二电极部, 电线插入,以便能够在插入孔中前后移动;以及外部连接部,其电连接到电线的基端侧,并且向电线和第二电极部施加预定频率的外部电流。
    • 5. 发明授权
    • Rare earth metal-based permanent magnet
    • 稀土金属永磁体
    • US09287027B2
    • 2016-03-15
    • US12990341
    • 2008-05-14
    • Yukimitsu MiyaoTsutomu Nakamura
    • Yukimitsu MiyaoTsutomu Nakamura
    • H01F1/057B32B15/04C22C9/00C22C13/00H01F41/02
    • H01F1/0577C22C9/00C22C13/00H01F41/026Y10T428/32Y10T428/325
    • An objective of the present invention is to provide a rare earth metal-based permanent magnet with improved adhesion properties. A rare earth metal-based permanent magnet of the present invention as a means for achieving the objective has a laminated plating film, and is characterized in that the plating film comprises as an outermost surface layer a SnCu alloy plating film having a film thickness in a range from 0.1 μm to 2 μm, the composition of the SnCu alloy plating film is 35 mass % or more but less than 55 mass % of Sn and the rest being Cu, and a base plating film having two or more layers including at least a Ni plating film and a Cu plating film which are formed as the lower layer under the SnCu alloy plating film, and among the base plating film, the Ni plating film is located just below the SnCu alloy plating film. A joined structure fabricated using the rare earth metal-based permanent magnet of the present invention exhibits favorable initial adhesion strength when combined with a silicone-based adhesive, and is less deteriorated in adhesion strength even after a moisture resistance test.
    • 本发明的目的是提供一种具有改进的粘合性能的稀土金属基永磁体。 本发明的稀土金属类永磁体作为实现目的的手段具有叠层电镀膜,其特征在于,所述镀膜包含作为最外表面层的SnCu合金镀膜,膜厚度为 在0.1μm〜2μm的范围内,SnCu合金镀膜的成分为Sn的35质量%以上且小于55质量%,其余为Cu,并且具有两层以上的基底镀膜至少含有 Ni镀覆膜和Cu电镀膜,在SnCu合金镀膜之下形成为下层,并且在底镀膜中,Ni镀膜位于SnCu合金镀膜的正下方。 使用本发明的稀土类金属类永磁体制造的接合结构,与硅酮类粘合剂组合时,表现出良好的初期粘合强度,即使在耐湿试验之后,粘合强度也劣化。
    • 8. 发明申请
    • SPECTROPHOTOMETER, SPECTROPHOTOMETER TOOL, SPECTROPHOTOMETRIC METHOD, AND RECORDING MEDIUM
    • 分光光度计,分光光度计工具,分光光度法和记录介质
    • US20130010293A1
    • 2013-01-10
    • US13542543
    • 2012-07-05
    • Akio OkuboTsutomu Nakamura
    • Akio OkuboTsutomu Nakamura
    • G01J3/42G01N21/01
    • G01N21/274G01J3/0267G01J3/027G01J3/10G01J3/32G01J3/42G01N21/31G01N21/78
    • A light emitter emits light with a plurality of wavelengths towards a test object held in a spectrophotometer tool. A light receiver receives the light passing through the test object. A detector detects absorbances of wavelength components from the light received by the receiver. An optical path length calculator compares, in the absorbances of the wavelength components detected, a wavelength component absorbance of light absorbed by a pigment that absorbs light with a wavelength other than a wavelength of light absorbed by an analyte in the test object and a predetermined value of the wavelength component absorbance to calculate an optical path length passing through the test object. A corrector corrects the wavelength component absorbance detected excluding the wavelength of the light absorbed by the pigment using the optical path length calculated by the optical path length calculator to calculate a corrected wavelength component absorbance in a reference optical length.
    • 光发射器向保持在分光光度计工具中的测试对象发射具有多个波长的光。 光接收器接收通过测试对象的光。 检测器检测由接收器接收的光的波长分量的吸光度。 光路长度计算器在检测到的波长成分的吸光度中,比较吸收被测试对象物中被分析物所吸收的光波长以外的波长的光吸收的光的波长成分吸光度和预定值 的波长分量吸光度,以计算通过测试对象的光路长度。 校正器使用由光程长度计算器计算出的光路长度,校正除了由颜料吸收的光的波长之外的波长分量吸光度,以计算参考光学长度的校正波长分量吸光度。
    • 9. 发明申请
    • DRY TEST STRIP AND METHOD FOR MEASURING CREATININE
    • 干燥测试条和测量CREATININE的方法
    • US20120276568A1
    • 2012-11-01
    • US13457295
    • 2012-04-26
    • Tsutomu Nakamura
    • Tsutomu Nakamura
    • C12Q1/34
    • G01N33/526G01N33/70
    • A dry test strip for measuring creatinine comprises: a support; a reagent layer that is disposed on the support; a reagent holding layer that is disposed on the reagent layer; and a connection layer that is composed of an adhesive which adhesively bonds the reagent layer to the reagent holding layer and is formed in spot form, wherein the reagent layer contains creatininase and 4-aminoantipyrine; the reagent holding layer contains creatinase, sarcosine oxidase, peroxidase, and N-ethyl-N-(2-hydroxy-3-sulfopropyl)-3,5-dimethoxyaniline; and the connection layer delays arrival of a liquid sample spot-deposited on the reagent holding layer at the reagent layer.
    • 用于测量肌酸酐的干试条包括:支持体; 设置在所述支撑体上的试剂层; 试剂保持层,其设置在所述试剂层上; 以及连接层,其由将试剂层粘合到试剂保持层并形成点状的粘合剂构成,其中试剂层含有肌酸酐酶和4-氨基安替比林; 试剂保持层含有肌酸酐酶,肌氨酸氧化酶,过氧化物酶和N-乙基-N-(2-羟基-3-磺丙基)-3,5-二甲氧基苯胺; 并且连接层延迟点样沉积在试剂层上的试剂保持层上的液体样品的到达。