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    • 1. 发明授权
    • Receiving apparatus and intra-subject information acquiring system
    • 接收装置和主体内信息获取系统
    • US08345089B2
    • 2013-01-01
    • US11575201
    • 2006-09-08
    • Toshiaki ShigemoriAyako Nagase
    • Toshiaki ShigemoriAyako Nagase
    • A62B1/04
    • A61B1/041A61B1/00016A61B1/273H04N5/10H04N7/18
    • To acquire much accurate image information having no noise, without increasing load in the post-processing of the image information, a receiving apparatus 3 includes: a synchronization signal detector 34 that detects a horizontal synchronization signal and a vertical synchronization signal; an image processor 35 that performs an image generation process of each frame based on the horizontal synchronization signal and the vertical synchronization signal detected by the synchronization signal detector 34; and an image deletion controller 36a that controls to delete an image of the current frame, when a horizontal synchronization signal within one frame detected by the synchronization signal detector 34 is not continuously detected by a first predetermined number or more, or when a horizontal synchronization signal within one frame detected by the synchronization signal detector 34 is not continuously detected by a second predetermined number or more, or when a vertical synchronization signal detected by the synchronization signal detector 34 is not continuously detected by a third predetermined number or more.
    • 接收装置3包括:同步信号检测器34,其检测水平同步信号和垂直同步信号;为了获得无噪声的准确的图像信息,在图像信息的后处理中不增加负载, 基于由同步信号检测器34检测的水平同步信号和垂直同步信号,执行每帧的图像生成处理的图像处理器35; 以及图像删除控制器36a,当由同步信号检测器34检测到的一帧内的水平同步信号没有被第一预定数量或更多个连续检测到时,当控制删除当前帧的图像时,或者当水平同步信号 在由同步信号检测器34检测到的一帧内,不是以第二预定数量或更多个连续检测到,或者当由同步信号检测器34检测到的垂直同步信号未被连续检测到第三预定数量以上时。
    • 4. 发明授权
    • Receiving system
    • 接收系统
    • US07912434B2
    • 2011-03-22
    • US11631469
    • 2005-06-23
    • Seiichiro KimotoManabu FujitaToshiaki ShigemoriAyako NagaseAkira MatsuiKazutaka Nakatsuchi
    • Seiichiro KimotoManabu FujitaToshiaki ShigemoriAyako NagaseAkira MatsuiKazutaka Nakatsuchi
    • H04B1/06
    • A61B5/07
    • To realize a receiving system that can excellently receive radio signals before and after a body insertable device, which is a radio signal source, is inserted into a subject, the receiving system has a first receiving antenna (1), a second receiving antenna (2), and a receiving apparatus (3). The first receiving antenna (1) is used when the body insertable device is outside the subject. The second receiving antenna (2) is used when the body insertable device is inserted into the subject. The receiving apparatus (3) performs a receiving processing on radio signals received through the first receiving antenna (1) or the second receiving antenna (2). In the receiving system, a receiving antenna connected to an antenna connector (13) provided in the receiving apparatus (3) is switched between the first receiving antenna (1) and the second receiving antenna (2) corresponding to a difference in propagation states of radio signals transmitted from the body insertable device before and after the body insertable device is inserted into the subject. Consequently, the receiving system that can excellently receive the radio signals before and after the body insertable device is inserted into the subject is realized.
    • 为了实现在作为无线电信号源的身体可插入设备之前和之后能够优良地接收无线电信号的接收系统被插入到被摄体中,接收系统具有第一接收天线(1),第二接收天线(2 )和接收装置(3)。 当身体可插入装置在对象外部时,使用第一接收天线(1)。 当身体可插入装置插入到被摄体中时,使用第二接收天线(2)。 接收装置(3)对通过第一接收天线(1)或第二接收天线(2)接收的无线信号进行接收处理。 在接收系统中,连接到设置在接收装置(3)中的天线连接器(13)的接收天线在第一接收天线(1)和第二接收天线(2)之间切换,对应于传播状态的差异 在身体插入装置插入被检体之前和之后从身体插入装置传送的无线电信号。 因此,可以实现在主体插入装置被插入到对象之前和之后能够良好地接收无线电信号的接收系统。
    • 6. 发明授权
    • Intrabody introduced device and medical device
    • Intrabody介绍了设备和医疗设备
    • US07704204B2
    • 2010-04-27
    • US11137022
    • 2005-05-24
    • Toshiaki ShigemoriTakeshi Mori
    • Toshiaki ShigemoriTakeshi Mori
    • A61B1/04
    • A61B1/0676A61B1/041A61B1/0684
    • In transmitting images picked up by an intrabody introduced device to outside a test body, synchronizing signals of the image signal are set to signal patterns in the same high-frequency band as for the image signal and not used for the image signal. This enables a receiver to stably binarize the synchronizing signal and thus to acquire favorable image signal. For example, in a clipping circuit provided in a signal processing circuit in a capsule type endoscope (an example of an intrabody introduced device), image information of a high-intensity portion is clipped out of image information acquired by an imaging section and a pattern generation circuit allocates signal patterns within the clipped intensity range as horizontal and vertical synchronizing signals.
    • 在将由体内引入的装置拾取的图像发送到测试体外部时,图像信号的同步信号被设置为与图像信号相同的高频带中的信号图案,而不用于图像信号。 这使得接收机能够稳定地二值化同步信号,从而获得有利的图像信号。 例如,在胶囊型内窥镜(体内引入装置的实例)中的信号处理电路中设置的限幅电路中,高分辨率部分的图像信息被从成像部分获取​​的图像信息和图案 发生电路将限幅强度范围内的信号模式分配为水平和垂直同步信号。
    • 7. 发明申请
    • Intra-subject information acquiring system
    • 学科内信息获取系统
    • US20090076320A1
    • 2009-03-19
    • US11658826
    • 2006-04-06
    • Toshiaki Shigemori
    • Toshiaki Shigemori
    • A61B1/04
    • A61B1/00016A61B1/00036A61B1/00045A61B1/00124A61B1/041A61B5/073A61B2560/0209
    • A viewer 4 as a compact display device displays a body cavity image picked up by a capsule endoscope 3. When a communication-cable connection detector 48 detects a communication cable connection between a receiving apparatus 2 and the viewer 4, a control unit 49 switch controls a changeover switch 44 based on this connection detection, thereby switching a display of an LCD 41 to a display of image data from wire. Next, information necessary for an examination such as image data is taken in from the receiving apparatus 2 via a communication cable 5, and is displayed in an LCD 41. With this arrangement, a display unit is not necessary in the receiving apparatus 2, and a circuit configuration becomes simple. The receiving apparatus can be made compact and light, and power consumption can be decreased.
    • 作为小型显示装置的观察者4显示由胶囊型内窥镜3拾取的体腔图像。当通信电缆连接检测器48检测到接收装置2和观察者4之间的通信电缆连接时,控制单元49切换控制 基于该连接检测的切换开关44,从而将LCD 41的显示切换为来自线的图像数据的显示。 接下来,通过通信电缆5从接收装置2取出诸如图像数据的检查所需的信息,并且显示在LCD 41中。通过这种布置,在接收装置2中不需要显示单元,并且 电路配置变得简单。 接收装置可以制造得紧凑轻巧,并且能够降低功耗。