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    • 1. 发明专利
    • Electronic endoscope apparatus
    • 电子内窥镜装置
    • JP2005065871A
    • 2005-03-17
    • JP2003297902
    • 2003-08-21
    • Olympus Corpオリンパス株式会社
    • KAWAMURA AKITOTSUNAKAWA MAKOTOMOCHIDA AKIHIKOOGASAWARA KOTAROMASUMOTO WATARU
    • G02B23/24A61B1/04H04N7/18
    • PROBLEM TO BE SOLVED: To provide an electronic endoscope apparatus which can be used by selecting a function which an electronic endoscope etc. has with respect to the electronic endoscope apparatus for performing endoscope examination etc. by using the electronic endoscope or a camera provided with a solid-state imaging device.
      SOLUTION: The electronic endoscope 2 with a built-in CCD 17 has a video signal processing part 18 for generating a standard video signal by using an FPGA 19 as a logical element, built in an operation part 12, and can be connected with an external apparatus casing part 5 through a signal cable 4. The apparatus casing part 5 is provided with a configuration data storage ROM part 25 storing a plurality of pieces of configuration data equivalent to a plurality of functions constructed in the case of giving to FPGA 19 by selecting operation by a selection switch 24A. Thus, the apparatus copes with different uses etc. by using a common electronic endoscope 2.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供一种电子内窥镜装置,其可以通过使用电子内窥镜或相机选择电子内窥镜等相对于用于进行内窥镜检查的电子内窥镜装置的功能而使用 设置有固态成像装置。 解决方案:具有内置CCD 17的电子内窥镜2具有视频信号处理部分18,用于通过内置于操作部分12中的FPGA 19作为逻辑元件产生标准视频信号,并且可以连接 通过信号电缆4具有外部设备壳体部分5.装置壳体部分5设置有配置数据存储ROM部分25,其存储与在给予FPGA的情况下构造的多个功能相当的多条配置数据 通过选择开关24A选择操作。 因此,该装置通过使用普通的电子内窥镜2来处理不同的用途等。版权所有(C)2005,JPO&NCIPI
    • 2. 发明专利
    • Endoscopic system
    • 内窥镜系统
    • JP2005168769A
    • 2005-06-30
    • JP2003412612
    • 2003-12-10
    • Olympus Corpオリンパス株式会社
    • YAMAGUCHI TAKAOOGASAWARA KOTAROTSUNAKAWA MAKOTOKAWAMURA AKITOMOCHIDA AKIHIKOMASUMOTO WATARUKURODA HIROYUKIHAGIWARA MASAHIRO
    • A61B1/06
    • PROBLEM TO BE SOLVED: To enable a user to easily recognize the interchangeability of connection across systems from the outer appearance.
      SOLUTION: Display of the interchangeability of connection can be added so that the interchangeability of connection between a probe and a processor across endoscopic systems. For example, the endoscopic system 1A comprises the processor 9A with a receptacle 8, the probe 11 with a plug 6 connected to the receptacle 8 of the processor 9A, and color cord parts 30p and 3or as interchangeability discrimination display means capable of displaying the interchangeability of connection between the processor 9A and the probe or adding the display of the interchangeability of connection.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了使用户能够从外观轻松地识别跨系统的连接的可互换性。

      解决方案:可以添加显示连接的可互换性,以便在内窥镜系统之间探头和处理器之间的连接可互换性。 例如,内窥镜系统1A包括具有插座8的处理器9A,具有连接到处理器9A的插座8的插头6的探头11和作为可互换性辨别显示装置的彩色索线部分30p和3或能够显示互换性 的处理器9A和探头之间的连接,或者增加连接的可互换性的显示。 版权所有(C)2005,JPO&NCIPI

    • 3. 发明专利
    • Electronic endoscope unit
    • 电子内窥镜单元
    • JP2005152368A
    • 2005-06-16
    • JP2003396308
    • 2003-11-26
    • Olympus Corpオリンパス株式会社
    • MOCHIDA AKIHIKOOGASAWARA KOTAROKAWAMURA AKITOTSUNAKAWA MAKOTOMASUMOTO WATARUKUSAMURA NOBORU
    • A61B1/04
    • PROBLEM TO BE SOLVED: To achieve an efficient use of an FPGA (Field Programmable Gate Array) concerning an electronic endoscope unit which can realize a plurality of extensive functions by an extensive function setting command.
      SOLUTION: The electronic endoscope unit 1 has a main board 16 in which a read signal is applied to the electronic endoscope and image signals are taken in to carry out a prescribed basic image processing, and an extension board 17 in which a prescribed extension processing is carried out for the image signals processed in the main board 16. The extension board 17 has the FPGA 21 which can build up a prescribed processing function by processing function configuration data for the realization of the prescribed processing function, and a memory means 22 which has a plurality of kinds of the processing function configuration data stored for the realization of prescribed extensive function and applies the processing configuration data selected from a plurality thereof stored to the FPGA 21 by the extensive function setting command.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了实现能够通过广泛的功能设置命令实现多个广泛功能的电子内窥镜单元的FPGA(现场可编程门阵列)的有效利用。 解决方案:电子内窥镜单元1具有主电路板16,其中读取信号被施加到电子内窥镜,并且图像信号被采取以执行规定的基本图像处理;延伸板17,其中规定 对于在主板16中处理的图像信号进行扩展处理。扩展板17具有能够通过处理用于实现规定的处理功能的功能配置数据来建立规定的处理功能的FPGA21,以及存储装置 22,其具有存储用于实现规定的广泛功能的多种处理功能配置数据,并且通过广泛的功能设置命令来应用从存储在FPGA 21中的多个处理配置数据。 版权所有(C)2005,JPO&NCIPI
    • 4. 发明专利
    • Endoscopic imaging unit
    • 内窥镜成像单元
    • JP2005007073A
    • 2005-01-13
    • JP2003177292
    • 2003-06-20
    • Olympus Corpオリンパス株式会社
    • MOCHIDA AKIHIKOOGASAWARA KOTAROKAWAMURA AKITOTSUNAKAWA MAKOTOMASUMOTO WATARUKUSAMURA NOBORU
    • G02B23/24A61B1/00A61B1/04H04N7/18
    • PROBLEM TO BE SOLVED: To provide an endoscopic imaging unit for raising performance in the unit by easily fetching the voice of a patient or an operator and easily corresponding to various voice signal processing functions.
      SOLUTION: The endoscopic imaging unit 1 includes an electronic endoscope 2 and a video processor 3. The endoscope 2 comprises a first microphone arranged at the tip end of an insertion part 9, so as to fetch mainly the voice of the patient; and a second microphone 20 arranged in an operation part 8, so as to fetch mainly the voice of the operator. The first and second microphones 19, 20 are connected to a changeover circuit 24. The CPU 26 of a main board 32 communicates with the CPU 47 of a function development board 27 and acquires information of a board ID generating part 48. Based on the information, the function development board 27 determines whether a voice input is required or not . One of the microphones 19, 20 is selected when the voice input is required. A microphone selecting part 25 is controlled to changeover the changeover circuit 24 and to fetch a voice signal into the function development board 27.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种内窥镜成像单元,用于通过容易地获取患者或操作者的声音并且容易地对应于各种语音信号处理功能来提高单元中的性能。 内窥镜成像单元1包括电子内窥镜2和视频处理器3.内窥镜2包括布置在插入部9的前端的第一麦克风,以便主要获取患者的声音; 以及布置在操作部8中的第二麦克风20,以便主要获取操作者的声音。 第一麦克风19和第二麦克风20连接到切换电路24.主板32的CPU 26与功能开发板27的CPU47通信,并获取板ID生成部48的信息。基于该信息 功能开发板27确定是否需要语音输入。 当需要语音输入时,选择麦克风19,20中的一个。 控制麦克风选择部分25以切换转换电路24并将语音信号提取到功能开发板27.版权所有:(C)2005,JPO&NCIPI
    • 5. 发明专利
    • Image processing device
    • 图像处理装置
    • JP2005000454A
    • 2005-01-06
    • JP2003168381
    • 2003-06-12
    • Olympus Corpオリンパス株式会社
    • OGASAWARA KOTAROMOCHIDA AKIHIKOTSUNAKAWA MAKOTOKAWAMURA AKITOMASUMOTO WATARUKUSAMURA NOBORU
    • G02B23/24A61B1/04A61B19/00
    • PROBLEM TO BE SOLVED: To provide an image processing device that can realize high-operability peripheral equipment control with a simple constitution.
      SOLUTION: The image processing device 4 has a main substrate 7 and a control substrate 511 which controls the expansion of peripheral equipment and is attachably and detachably connected to the main substrate 7. The control substrate 511 is provided with a communication interface 82 which communicates with the peripheral equipment. The substrate 511 prepares a graph based on the control information of the peripheral equipment received through the communication interface 82 and superimposes the graph upon a video signal generated by the main substrate 7. At the same time, the substrate 511 changes the setting of a prescribed item contained in the control information by transiting the displayed form of the graph in accordance with the operation of switches 52a, 52b, etc.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够以简单的结构实现高可操作性的外围设备控制的图像处理装置。 解决方案:图像处理装置4具有主基板7和控制外围设备的扩展的控制基板511,并且可拆卸地连接到主基板7.控制基板511设置有通信接口82 其与外围设备通信。 基板511基于通过通信接口82接收的外围设备的控制信息来准备图,并将该图叠加到由主基板7产生的视频信号上。同时,基板511改变规定的 通过根据开关52a,52b等的操作转移图形的显示形式,包含在控制信息中的项目。(C)2005,JPO&NCIPI
    • 6. 发明专利
    • Image signal processor, and endoscopic imaging system
    • 图像信号处理器和内窥镜成像系统
    • JP2005185358A
    • 2005-07-14
    • JP2003427949
    • 2003-12-24
    • Olympus Corpオリンパス株式会社
    • MOCHIDA AKIHIKOHAGIWARA MASAHIROKURODA HIROYUKIYAMAGUCHI TAKAOKAWAMURA AKITOTSUNAKAWA MAKOTOMASUMOTO WATARUOGASAWARA KOTARO
    • G02B23/24A61B1/04H04N7/18
    • PROBLEM TO BE SOLVED: To provide an endoscopic imaging system which can respond to the case where a plurality of solid imaging elements for three primary colors are built in as well, in addition to an endoscopic imaging device with a single built-in solid imaging element.
      SOLUTION: An output signal from a single-plate type camera head as the endoscopic imaging device with the built-in signal solid imaging element is inputted in this image signal processor 7 from a terminal of a terminal number 1A of a signal connector receiver 10. An output signal from a three-plate type camera head is inputted in the image signal processor 7 from terminals of terminal numbers 1A, 1B and 2A of the signal connector receiver 10. Beyond an isolation circuit 57, an image signal is formed through a common image signal processing circuit 58, and the image signal is outputted onto a monitor 8.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种内窥镜成像系统,该内窥镜成像系统除了具有单个内置的内窥镜成像装置之外,还可以响应用于三原色的多个固体成像元件的内部的情况 固体成像元件。 解决方案:作为具有内置信号固态成像元件的内窥镜成像装置的来自单板式摄像头的输出信号从信号连接器的端子号1A的端子输入到该图像信号处理器7中 来自三板式摄像头的输出信号从信号连接器接收器10的端子号1A,1B和2A的端子输入到图像信号处理器7.在隔离电路57之外,形成图像信号 通过公共图像信号处理电路58,将图像信号输出到监视器8.版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • Electronic endoscope apparatus
    • 电子内窥镜装置
    • JP2005066129A
    • 2005-03-17
    • JP2003301956
    • 2003-08-26
    • Olympus Corpオリンパス株式会社
    • OGASAWARA KOTAROKAWAMURA AKITOMOCHIDA AKIHIKOMASUMOTO WATARUTSUNAKAWA MAKOTOHAGIWARA MASAHIROYAMAGUCHI TAKAOKURODA HIROYUKI
    • A61B1/04A61B1/00
    • PROBLEM TO BE SOLVED: To provide an endoscope imaging apparatus for acquiring a high-definition endoscope image with little deterioration in image quality, and reducing radiation noise, while securing electric insulation.
      SOLUTION: The endoscope imaging apparatus includes a camera head 3 consisting of an A/D converter 14 to convert an imaging signal picked-up by a CCD 12 arranged in an endoscope 2 into a digital time sequential multiplex signal and output it, and of a P/S converter 15; a CCU 4 consisting of an S/P converter 21 to generate a reference driving signal for driving and controlling the CCD 12 and generate an endoscope image signal from the digital time sequential multiplex signal from the camera head, and of a DSP 23; and E/O converters 16, 28 and O/E converters 17, 21 by which the signal exchanged between the camera head and the CCU is converted into an optical signal and transceiving.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供一种内窥镜摄像装置,用于在确保电绝缘的同时获取图像质量差的几率劣化的高分辨率内窥镜图像,并降低辐射噪声。 解决方案:内窥镜成像装置包括由A / D转换器14构成的相机头3,用于将安装在内窥镜2中的由CCD12拾取的摄像信号转换为数字时序复用信号并输出​​, 和P / S转换器15; 由S / P转换器21构成的CCU4,生成用于驱动和控制CCD 12的基准驱动信号,并根据来自摄像头的数字时序多路复用信号和DSP23产生内窥镜图像信号; 以及E / O转换器16,28和O / E转换器17,21,通过它们将相机头和CCU之间交换的信号转换成光信号和收发信号。 版权所有(C)2005,JPO&NCIPI
    • 8. 发明专利
    • Video signal processing apparatus and endoscope imaging system
    • 视频信号处理设备和内窥镜成像系统
    • JP2005191710A
    • 2005-07-14
    • JP2003427948
    • 2003-12-24
    • Olympus Corpオリンパス株式会社
    • MOCHIDA AKIHIKOHAGIWARA MASAHIROKURODA HIROYUKIYAMAGUCHI TAKAOKAWAMURA AKITOTSUNAKAWA MAKOTOOGASAWARA KOTAROMASUMOTO WATARUSUDO MASARU
    • G02B23/24A61B1/04H04N5/225H04N7/18
    • PROBLEM TO BE SOLVED: To provide a video signal processing apparatus and an endoscope imaging system capable of coping with an endoscope imaging apparatus independently of whether the endoscope imaging apparatus is equipped with a correlation double sampling circuit.
      SOLUTION: The video signal processing apparatus 7 receives an output signal from a camera head as the endoscope imaging apparatus equipped with the correlation double sampling circuit from a terminal 1A or terminals 1A, 1B, 2A, the captions 1A, 1B, 2A being pin numbers of a signal connector receptacle 10, and the video signal processing apparatus 7 receives an output signal from a video scope not equipped with the correlation double sampling circuit from a terminal with a pin number 17B and the output signals are subjected to passing/non-passing control by tri-state buffers 53, 56, 64 to 67 without intervention of a changeover means respectively. Thus, the video signal processing apparatus with a compact configuration can cope with the endoscope imaging apparatus independently of whether the endoscope imaging apparatus is equipped with the correlation double sampling circuit.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决问题:提供能够独立于内窥镜成像装置是否配备有相关双重采样电路的内窥镜成像装置的视频信号处理装置和内窥镜成像系统。 解决方案:视频信号处理装置7从终端1A或终端1A,1B,2A,标题1A,1B,2A,从图像信号处理装置7接收来自照相机头的输出信号作为配备有相关双重采样电路的内窥镜成像装置 是信号连接器插座10的插针号,并且视频信号处理装置7从具有针号17B的端子接收来自未配备有相关双重采样电路的视频范围的输出信号,并且输出信号经过/ 三态缓冲器53,56,64至67的不通过控制,而不介入切换装置。 因此,具有紧凑配置的视频信号处理设备可以独立于内窥镜成像设备是否配备有相关双重采样电路来处理内窥镜成像设备。 版权所有(C)2005,JPO&NCIPI
    • 9. 发明专利
    • Medical image recording device
    • 医学图像记录装置
    • JP2005044004A
    • 2005-02-17
    • JP2003200812
    • 2003-07-23
    • Olympus Corpオリンパス株式会社
    • TSUNAKAWA MAKOTOMOCHIDA AKIHIKOOGASAWARA KOTAROKAWAMURA AKITOMASUMOTO WATARU
    • A61B1/00A61B1/04G06T1/00H04N5/91
    • G06F19/00
    • PROBLEM TO BE SOLVED: To provide a medical image recording device for enabling easy explanation to a patient or easy storage of a recorded image by ensuring recording of a moving image in addition to a static image when recording the static image of an endoscope image.
      SOLUTION: This medical image recording device 1 is provided with a video processor 10 having a function expansion board 29. A CPU 200 of the function expansion board 29 supplies a video signal outputted from a signal changeover part 30 to a static image codec part 202 and a moving image codec part 203 through a function expansion connector 18 and a data selector 206, controls the static image codec part 202 to generate a static image file from the inputted video signal, and simultaneously controls the moving image codec part 203 to generate a moving image file from the inputted video signal and a sound signal. Thereafter, the CPU 200 controls a file association part 204 to associate file names of the generated static image file and moving image file, and records them into a recording medium 205 through a connector 209.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种医疗图像记录装置,用于当记录内窥镜的静态图像时,通过确保除了静态图像之外的静态图像的记录,能够容易地解释患者或容易地存储记录图像 图片。 解决方案:该医用图像记录装置1设置有具有功能扩展板29的视频处理器10.功能扩展板29的CPU 200将从信号切换部30输出的视频信号提供给静态图像编解码器 通过功能扩展连接器18和数据选择器206,部分202和运动图像编解码器部分203控制静态图像编解码器部分202从输入的视频信号生成静态图像文件,同时控制运动图像编解码器部分203 从输入的视频信号和声音信号生成运动图像文件。 此后,CPU200控制文件关联部分204将所生成的静态图像文件和运动图像文件的文件名称相关联,并通过连接器209将它们记录到记录介质205中。(C)2005年,JPO和NCIPI
    • 10. 发明专利
    • Endoscope system
    • 内窥镜系统
    • JP2005021457A
    • 2005-01-27
    • JP2003191395
    • 2003-07-03
    • Olympus Corpオリンパス株式会社
    • SUDO MASARUKUSAMURA NOBORUOGASAWARA KOTAROKAWAMURA AKITOMOCHIDA AKIHIKOMASUMOTO WATARUTSUNAKAWA MAKOTO
    • G02B23/24A61B1/04
    • PROBLEM TO BE SOLVED: To make it possible to output only the image signal of the image format required by a user.
      SOLUTION: An image signal processing circuit of CCU 4 consists of a main board 60 and a sub board 80. The main board 60 consists of a floating circuit 61 and a secondary circuit 62. The secondary circuit 62 is provided with a CPU 73, a DSP 74 and a D/A conversion circuit 75. The sub board 80 is equipped with a format converter 81. The format converter 81 inputs digital basic image signals output from the DSP 74 of the main board 60, converts them into various image signals, and output transformed image signals. The CCU 4 is constituted so that a board for selectively performing necessary format conversion can be attached as its sub board 80. From the CCU 4, the signals other than the standard TV signals are output by the sub board 80 of the other board.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:使得仅可以仅输出用户所需的图像格式的图像信号。 解决方案:CCU4的图像信号处理电路由主板60和子板80组成。主板60由浮置电路61和次级电路62组成。次级电路62设置有CPU 73,DSP 74和D / A转换电路75.子板80配备有格式转换器81.格式转换器81输入从主板60的DSP 74输出的数字基本图像信号,将它们转换为各种 图像信号和输出变换图像信号。 CCU4构成为可以附加用于选择性地执行必要的格式转换的板作为其子板80.从CCU 4,除标准TV信号之外的信号由另一板的子板80输出。 版权所有(C)2005,JPO&NCIPI