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1)  Electronic endoscope
电子内窥镜
1.
Basic structure,the principle of work and conventional maintenance of medical electronic endoscope;
医用电子内窥镜的基本结构工作原理及常规维护
2.
The structure of Couple Charge Device (CCD), the technical application of the video processor, the technical level, exploitation and clinical application of the electronic endoscope are analyzed and discussed respectively.
本文介绍了近年来电子内窥镜的技术发展进程。
3.
This paper introduces the study and implementation of real-time capturing and displaying system for electronic endoscope.
介绍了医用电子内窥镜图像实时采集与显示系统的设计与实现 。
2)  endoscope [英]['endəskəʊp]  [美]['ɛndə'skop]
电子内窥镜
1.
Emphasis is put on the application of FPGA to ECG,ultrasonic instruments and endoscope.
介绍了现场可编程门阵列(FPGA)的原理与结构,其优良的性能以及有力的开发系统极大地降低了数字系统的设计开发成本,促使现代医疗仪器向微型化、多功能化、系列化方向发展,主要分析了FPGA在心电设备、超声设备和电子内窥镜中的重要应用。
2.
In this paper, we studied and analyzed the structure and special requests of image processing system in medical endoscope.
本文对电子内窥镜彩色图像处理系统的结构和特殊要求进行了分析,研究了电子内窥镜的色度变换、畸变校正、白平衡处理的算法和理论。
3)  Electronic endoscopy
电子内窥镜
1.
Describes the composition, working principle of electronic endoscopy and practical measures of the maintenance in operation.
电子内窥镜已在国内大中型医院普遍使用,在诊疗活动中起着重要的作用。
4)  electronic endoscopy room
电子内窥镜室
1.
Dangerous factors of the electronic endoscopy room personnel s health and its protective measures;
影响电子内窥镜室人员健康的危险因素及防护
5)  medical electronic endoscope
医用电子内窥镜
1.
Research on Real-Time Distortion Correction and Automatic Brightness Control Hardware System for Medical Electronic Endoscope;
医用电子内窥镜畸变实时校正与自动亮度控制硬件系统的研究
2.
Research on Real-Time Distortion Correction Hardware System of Color Image for Medical Electronic Endoscope;
医用电子内窥镜彩色图像畸变实时校正硬件系统的研究
3.
In order to solve the opto-distortion problems of medical electronic endoscope, the theory of real-time distortion correction system of medical electronic endoscope and the realization of hardware system are introduced.
针对内窥镜系统光学畸变问题,提出了医用电子内窥镜畸变实时校正系统的原理和硬件系统的实现。
6)  Wireless electronic endoscope
无线电子内窥镜
补充资料:电子-电子双共振
      在垂直静磁场H的方向,施加两个微波电磁场:①较弱的微波电磁场,激发电子从能级2向能级3跃迁,不致于饱和;②强的微波电磁场,激发电子从能级1向能级4跃迁,使达到饱和,从而导致能级4的电子转移至能级3,以观察反映2→3跃迁的电子自旋共振信号强度的变化,故称为电子-电子双共振。它与电子-核双共振不同之处是不涉及核的跃迁,并且观察的与电子自旋共振有关的能级和未观察的跃迁能级之间无共享的公共能级。
  

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