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Computer-aided diagnosis workstation and telemedicine network system for chest diagnosis based on multislice CT images

机译:基于多层CT图像的胸腔诊断计算机辅助诊断工作站和远程医疗网络系统

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Mass screening based on multi-helical CT images requires a considerable number of images to be read. It is this time-consuming step that makes the use of helical CT for mass screening impractical at present. Moreover, the doctor who diagnoses a medical image is insufficient in Japan. To overcome these problems, we have provided diagnostic assistance methods to medical screening specialists by developing a lung cancer screening algorithm that automatically detects suspected lung cancers in helical CT images, a coronary artery calcification screening algorithm that automatically detects suspected coronary artery calcification and a vertebra body analysis algorithm for quantitative evaluation of osteoporosis likelihood by using helical CT scanner for the lung cancer mass screening. The functions to observe suspicious shadow in detail are provided in computer-aided diagnosis workstation with these screening algorithms. We also have developed the telemedicine network by using Web medical image conference system with the security improvement of images transmission, Biometric fingerprint authentication system and Biometric face authentication system. Biometric face authentication used on site of telemedicine makes "Encryption of file" and "Success in login" effective. As a result, patients' private information is protected. We can share the screen of Web medical image conference system from two or more web conference terminals at the same time. An opinion can be exchanged mutually by using a camera and a microphone that are connected with workstation. Based on these diagnostic assistance methods, we have developed a new computer-aided workstation and a new telemedicine network that can display suspected lesions three-dimensionally in a short time. The results of this study indicate that our radiological information system without film by using computer-aided diagnosis workstation and our telemedicine network system can increase diagnostic speed, diagnostic accuracy and security improvement of medical information.
机译:基于多螺旋CT图像的质量筛选需要读取大量图像。正是这一耗时的步骤使得目前无法使用螺旋CT进行质量筛查。此外,在日本,诊断医学图像的医生不足。为了克服这些问题,我们通过开发自动在螺旋CT图像中检测可疑肺癌的肺癌筛查算法,自动检测可疑冠状动脉钙化和椎体的冠状动脉钙化筛查算法,为医学筛查专家提供了诊断辅助方法。螺旋CT扫描仪对肺癌进行大规模筛查的定量评估骨质疏松症可能性的分析算法。使用这些筛选算法的计算机辅助诊断工作站提供了详细观察可疑阴影的功能。我们还通过使用Web医学图像会议系统开发了远程医疗网络,以提高图像传输的安全性,Biometric指纹认证系统和Biometric人脸认证系统。远程医疗站点上使用的生物特征面部认证使“文件加密”和“登录成功”有效。结果,保护了患者的私人信息。我们可以同时从两个或多个Web会议终端共享Web医学图像会议系统的屏幕。通过使用与工作站连接的摄像头和麦克风,可以相互交换意见。基于这些诊断辅助方法,我们开发了一种新的计算机辅助工作站和新的远程医疗网络,可以在短时间内三维显示可疑病变。这项研究的结果表明,通过使用计算机辅助诊断工作站的无胶片放射信息系统和我们的远程医疗网络系统可以提高诊断速度,诊断准确性并提高医疗信息的安全性。

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