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    • 32. 发明授权
    • Ultrasonic surgical system
    • 超声波手术系统
    • US07749240B2
    • 2010-07-06
    • US10900810
    • 2004-07-28
    • Hiroyuki TakahashiEiji Murakami
    • Hiroyuki TakahashiEiji Murakami
    • A61B17/32A61B17/20
    • A61B17/320068A61B17/320092A61B90/11A61B90/90A61B2017/00017A61B2017/0003A61B2017/00464A61B2017/00482
    • An ultrasonic surgical system includes a handpiece including an ultrasonic transducer and a first storage unit; a probe connected to the ultrasonic transducer; a calculation unit; and a control unit. The first storage unit stores a first parameter relating to control of the ultrasonic transducer. The probe transmits ultrasonic vibrations output from the ultrasonic transducer to a treatment target, and includes a second storage unit storing a second parameter relating to control of the ultrasonic transducer. The calculation unit calculates a control parameter for controlling the ultrasonic transducer, based on both the first parameter and the second parameter. The control unit controls the ultrasonic transducer based on the control parameter.
    • 超声波手术系统包括:手持件,其包括超声换能器和第一存储单元; 连接到超声波换能器的探针; 计算单位 和控制单元。 第一存储单元存储与超声波换能器的控制有关的第一参数。 探针将从超声换能器输出的超声波振动传递到治疗目标,并且包括存储与超声波换能器的控制有关的第二参数的第二存储单元。 计算单元基于第一参数和第二参数来计算用于控制超声换能器的控制参数。 控制单元根据控制参数控制超声波换能器。
    • 37. 发明授权
    • Treatment tool for operation
    • 治疗工具进行手术
    • US06358267B1
    • 2002-03-19
    • US09254804
    • 1999-03-12
    • Eiji MurakamiKatsumi SasakiToshihiko HashiguchiKenichi KimuraAkira Shiga
    • Eiji MurakamiKatsumi SasakiToshihiko HashiguchiKenichi KimuraAkira Shiga
    • A61B1728
    • A61B17/29A61B18/1445A61B2017/0046A61B2017/292A61B2017/2929A61B2017/2931A61B2018/00666A61B2090/064A61B2090/0813
    • A treatment tool for operation comprises an insertion section (3) inserted into a living body, an operating section (5) including a fixed handle (6) removably connected to the base end side of the insertion section and a movable handle (77) adapted to operate with respect to the fixed handle, and a treatment section drive unit (2) including a treatment section operable and arranged at the forward end side of the insertion section, a drive unit (23) for driving the treatment section and a drive shaft (24) for connecting the drive unit to the operating section and transmitting the operating force of the operating section to the drive unit for operating the treatment section. An engaging section (121) is arranged at the forward end side of the fixed handle, and an engaging/disengaging member (111) is arranged at the base end of the insertion section and is adapted to engage the engaging section as required. A biasing member 108 is provided for energizing the disengaging/engaging member toward the position of engagement between the engaging/disengaging member and the engaging section.
    • 一种用于操作的处理工具,包括插入生物体的插入部分(3),包括可移除地连接到插入部分的基端侧的固定手柄(6)的操作部分(5)和适于 相对于固定手柄操作的处理部驱动单元(2),包括可操作和布置在插入部的前端侧的处理部的处理部驱动单元(2),用于驱动处理部的驱动单元(23)和驱动轴 (24),用于将驱动单元连接到操作部分并将操作部分的操作力传递到用于操作处理部分的驱动单元。 在固定手柄的前端侧设置有接合部(121),并且在插入部的基端配置有卡合/脱离部件(111),并且能够根据需要与卡合部卡合。 偏置构件108被设置成用于使分离/接合构件朝向接合/分离构件和接合部分之间的接合位置激励。
    • 38. 发明授权
    • Method for generating exposure data for lithographic apparatus
    • 用于生成光刻设备的曝光数据的方法
    • US6047116A
    • 2000-04-04
    • US40343
    • 1998-03-18
    • Eiji MurakamiHitoshi HigurashiShigehiro HaraKiyomi KoyamaTakayuki Abe
    • Eiji MurakamiHitoshi HigurashiShigehiro HaraKiyomi KoyamaTakayuki Abe
    • G03F1/20G03F1/68H01J37/302H01L21/027G06F17/50
    • H01J37/3026H01J2237/31764
    • In a method of generating from design data the exposure data necessary for a multistage-deflection charged beam exposure device that has a main deflector and a sub-deflector and forms a pattern, before a shape larger than the size of a minimum subfield area is divided during the generation of subfield exposure data, the process of dividing the shape into shapes equal to or smaller than the size of a subfield area and restructuring the shape is performed. Moreover, after the overlapping cell arrays in the design data are changed into a cell array structure preventing the cell arrays from overlapping, the resulting cell arrays are subjected to a hierarchical shape data operation process and a formatting process, including compression, subfield division, and frame division. This makes it possible to reduce the amount of data supplied without increasing the time required to converting the design data into exposure data supplied to the charged beam exposure device.
    • 在从设计数据生成的方法中,在具有主偏转器和副偏转器并形成图案的多级偏转带电束曝光装置所需的曝光数据在大于最小子场区域的尺寸的形状之前被划分 在产生子场曝光数据期间,执行将形状分割成等于或小于子场区域的尺寸并重构形状的形状的处理。 此外,在将设计数据中的重叠单元阵列改变为防止单元阵列重叠的单元阵列结构之后,对所得单元阵列进行分层形状数据操作处理和格式化处理,包括压缩,子场划分和 框架划分。 这使得可以减少提供的数据量,而不需要将设计数据转换成提供给带电束的曝光装置的曝光数据所需的时间。