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    • 2. 发明授权
    • Image recording apparatus having reversal sheet feeding device and
control means for starting image recording operation in connection with
the reversal sheet feed
    • 具有反转片材进给装置的图像记录装置和用于与反转片材进给结合起动图像记录操作的控制装置
    • US5049919A
    • 1991-09-17
    • US599981
    • 1990-10-19
    • Kenji SakakibaraYumio MatsumotoTakashi Nakata
    • Kenji SakakibaraYumio MatsumotoTakashi Nakata
    • G03B27/32G03B27/58G03F7/00
    • G03F7/0022G03B27/32G03B27/587G03B2227/325
    • An image recording apparatus using an elongated photosensitive recording medium stored in a sheet cartridge in a rolled fashion. The apparatus provides an exposure stand and a reversal sheet feeding arrangement for reversely feeding completely unexposed microcapsule sheet to a position upstream of the exposure stand for the purpose of a subsequent exposure operation. A control means is further provided for automatically starting the subsequent copying operation. In one embodiment, the control means stores therein a copy start signal and automatically starts the next copying operation upon completion of the reversal sheet feeding operation. The copy start signal is generated by the manipulation of the copy start key manipulated at the reversal sheet feeding phase. In another embodiment of this invention, the control means forcibly stops the reversal sheet feeding operation in response to the copy start signal so as to automatically start the copying operation. The copy start signal is generated by the manipulation of the copy start key manipulated at the reversal sheet feeding phase.
    • 一种图像记录装置,其使用以滚动方式存储在片材盒中的细长光敏记录介质。 该装置提供了曝光台和反转片材馈送装置,用于将完全未曝光的微胶囊片材反向进给到曝光台的上游位置,以便进行后续曝光操作。 还提供了一种用于自动开始后续复印操作的控制装置。 在一个实施例中,控制装置在其中存储复印开始信号,并且在反转送纸操作完成时自动开始下一个复印操作。 复制开始信号是通过操纵在反转送纸阶段操作的复印开始键产生的。 在本发明的另一个实施例中,控制装置响应于复制开始信号强制地停止反转送纸操作,以便自动开始复印操作。 复制开始信号是通过操纵在反转送纸阶段操作的复印开始键产生的。
    • 8. 发明授权
    • Metal core multilayer printed wiring board
    • 金属芯多层印刷线路板
    • US07087845B2
    • 2006-08-08
    • US10508538
    • 2004-01-28
    • Hiroshi TohkairinKenji SakakibaraHideki Kabune
    • Hiroshi TohkairinKenji SakakibaraHideki Kabune
    • H05K1/00
    • H05K1/0207H01L2924/0002H05K1/0206H05K3/4623H05K3/4641H05K2201/09354H05K2201/09509H05K2201/09536H05K2201/09781H05K2201/10689H01L2924/00
    • The present invention is characterized in that in a metal-core multilayer printed wiring board (1) which is obtained by forming one or more of at least inner layers of a laminate having a insulating layer and a conductor layer stacked alternately from a metal plate and has the metal plate as a core, the metal plate (13) is disposed below a site on which a heating element (10) is to be mounted, a surface layer over which the heating element (10) is to be mounted is connected to the metal plate (13) of the inner layer via a BVH (12) and a heat radiation layer (14) is formed over the surface layer. The present invention makes it possible to efficiently radiate heat, which has been released from the heating element, to the outside of the printed wiring board without impairing the packaging density of circuits and at the same time, to mount another element on the side opposite to the side on which the heating element exists.
    • 本发明的特征在于,在金属芯多层印刷电路板(1)中,所述金属芯多层印刷电路板(1)通过形成由金属板交替堆叠的具有绝缘层和导体层的层叠体的至少内层中的一个或多个而获得, 将金属板作为芯,将金属板(13)设置在要安装加热元件(10)的位置的下方,将要安装加热元件(10)的表面层连接到 通过BVH(12)和散热层(14)在内层的金属板(13)上形成。 本发明使得可以有效地将已经从加热元件释放的热量辐射到印刷电路板的外部,而不会损害电路的封装密度,同时在另一个元件的相反侧安装另一个元件 加热元件所在的一侧。
    • 9. 发明申请
    • Endoscopic image pickup method and magnetic resonance imaging device using the same
    • 内窥镜摄像方法及使用其的磁共振成像装置
    • US20050033164A1
    • 2005-02-10
    • US10483444
    • 2002-07-12
    • Takeshi YatsuoHisako NagaoKenji Sakakibara
    • Takeshi YatsuoHisako NagaoKenji Sakakibara
    • G01R33/34A61B5/055A61B19/00G01R33/32G01R33/36G06T1/00G06T5/00G06T7/00A61B6/00
    • A61B34/20A61B5/06A61B90/361A61B2090/365A61B2090/374A61B2090/3954A61B2090/3958G01R33/286G06T5/006G06T7/73G06T2207/30004
    • An endoscope-like image taking method of the present invention includes a preparation step of providing at least one peculiar index, which can be discriminated from other portions on an MR image, at the tip of a catheter, a first step (S1) of previously inserting a metal guide wire for guiding the catheter into a body cavity of a patient into which the catheter is inserted, a second step (S2) of inserting the catheter into the body cavity along the guide wire, a third step (S3) of executing an MR imaging sequence of a plurality of sliced images intersecting the guide wire, a fourth step (S4) of reconstructing three-dimensional image data based upon the nuclear magnetic resonance signals, which are generated from the patient when the sequence is executed and are received by the guide wire, and determining the tip position and the inserting direction of the catheter by detecting the peculiar index provided at the tip of the catheter based upon the three-dimensional image data, and a fifth step (S5) of reconstructing the center projected image using the three-dimensional image data and setting the tip position and the inserting direction of the catheter as a view point and a line-of-sight direction and displaying the center projected image on a display means, thereby an endoscope-like image, which is observed from the catheter in the body cavity of the patient, is taken and displayed in real time or semi-real time so that the insertion of the catheter is supported.
    • 本发明的内窥镜检查方法包括制备步骤,在导管的尖端处提供至少一种可以与MR图像上的其它部分区分开的特有指标,前者的第一步骤(S1) 插入用于将导管引导到其中插入导管的患者的体腔中的金属导丝;沿着导丝将导管插入体腔的第二步骤(S2);执行第三步骤 与引导线相交的多个切片图像的MR成像序列;第四步骤(S4),用于根据核磁共振信号重构基于核心磁共振信号的三维图像数据,所述核磁共振信号在执行和接收时由患者生成 并且通过基于三维图像数据检测设置在导管的尖端处的特有指标来确定导管的尖端位置和插入方向,并且通过引导线 h步骤(S5),使用三维图像数据重建中心投影图像,并将导管的尖端位置和插入方向设置为视点和视线方向,并将中心投影图像显示在 从而从患者的体腔内的导管观察到的内窥镜状图像被实时或半实时地取出并显示,从而支撑导管的插入。