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Exploration of computerized image processing in underexposed and overexposed X-rays of bones and joints
引用本文:张兆臣 张有军 冯承强 祝远忠 颜世义 刘玉金. Exploration of computerized image processing in underexposed and overexposed X-rays of bones and joints[J]. 中国人民解放军军医大学学报, 2004, 19(5): 316-319
作者姓名:张兆臣 张有军 冯承强 祝远忠 颜世义 刘玉金
作者单位:[1]TaishanMedicalUniversity,Tai'an271000,China [2]Tai'anCentralHospital,Tai'an271000,China [3]TaishanMedicalUniversity,Tai'an271000,China
摘    要:Objective: To study the effective computerized image processing of underexposed and overexposed X-rays of bones and joints. Methods: Ninety-nine conventional X-ray images (82 were overexposed and 17 were underexposed), scanned by an UMAX Astra 4000U Scanner, were converted into digital images on the basis of their analog images. A computerized imaging processing program consisting of five functional modules such as Contrast Stretch, Fast Flourier Transform (FFT), Image Smoothing Modules, Inverse Fast Flourier Transform (IFFT) and Nonlinear Transform performed image contrast stretch and smoothing. Three senior doctors from hospital image sections made their evaluation of all the proeessed images. Restilts: Of 82 overexposed films, 71 met the clinical requirements after image processing, and 11 were unable to be applied to clinical diagnosis, accounting for 87% and 13% respectively. Of the other 17 underexposed X-ray images, 11 met the clinical requirements while 6 were not, making a percentage of 64 and 35. Conclusion: Image contrast stretch and smoothing processing are significantly effective on conventional X-ray images which were inappropriately exposed, and can avoid more X-ray radiation caused by handling of radiological photograph again. This method can decrease hospital cost and provide acute and effective X-ray examinations for the treatment and cure for critical patients.

关 键 词:手术探察 计算机图象处理 曝光不足 感光过度 X-线 骨骼接点 伸展对比

Exploration of computerized image processing in underexposed and overexposed X-rays of bones and joints
ZHANG Zhao-chen ZHANG You-jun FENG Cheng-qiang ZHU Yuan-zhong YAN Shi-yi IIU Yu-jin Taishan Medical University,Tai an ,China Tai'an Central Hospital,Tai' an ,China. Exploration of computerized image processing in underexposed and overexposed X-rays of bones and joints[J]. Journal of Medical Colleges of PLA(China), 2004, 19(5): 316-319
Authors:ZHANG Zhao-chen ZHANG You-jun FENG Cheng-qiang ZHU Yuan-zhong YAN Shi-yi IIU Yu-jin Taishan Medical University  Tai an   China Tai'an Central Hospital  Tai' an   China
Affiliation:ZHANG Zhao-chen ZHANG You-jun FENG Cheng-qiang ZHU Yuan-zhong YAN Shi-yi IIU Yu-jin Taishan Medical University,Tai an 271000,China Tai'an Central Hospital,Tai' an 271000,China
Abstract:Objective: To study the effective computerized image processing of underexposed and overexposed X-rays of bones and joints. Methods: Ninety-nine conventional X-ray images (82 were overexposed and 17 were underexposed), scanned by an UMAX Astra 4000U Scanner, were converted into digital images on the basis of their analog images. A computerized imaging processing program consisting of five functional modules such as Contrast Stretch, Fast Flourier Transform (FFT), Image Smoothing Modules, Inverse Fast Flourier Transform (IFFT) and Nonlinear Transform performed image contrast stretch and smoothing. Three senior doctors from hospital image sections made their evaluation of all the processed images. Results:Of 82 overexposed films, 71 met the clinical requirements after image processing, and 11 were unable to be applied to clinical diagnosis, accounting for 87% and 13% respectively. Of the other 17 underexposed X-ray images, 11 met the clinical requirements while 6 were not, making a percentage of 64 and 35. Conclusion: Image contrast stretch and smoothing processing are significantly effective on conventional X-ray images which were inappropriately exposed, and can avoid more X-ray radiation caused by handling of radiological photograph again. This method can decrease hospital cost and provide acute and effective X-ray examinations for the treatment and cure for critical patients.
Keywords:X-ray images  contrast stretch  smoothing processing  image reading
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