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Method for improving visualization of infrared images

机译:改善红外图像可视化的方法

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Thermography has an extremely important difference from the other visual image converting electronic systems, like X-Rays or ultrasound: the infrared camera operator usually spend hour after hour with his/her eyes looking only at infrared images, sometimes several intermittent hours a day if not six or more continuous hours. This operational characteristic has a very important impact on yield, precision, errors and misinterpretation of the infrared images contents. Despite a great hardware development over the last fifty years, quality infrared thermography still lacks for a solution for these problems. The human eye physiology has not evolved to see infrared radiation neither the mind-brain has the capability to understand and decode infrared information. Chemical processes inside the human eye and functional cells distributions as well as cognitive-perceptual impact of images plays a crucial role in the perception, detection, and other steps of dealing with infrared images. The system presented here, called ThermoScala and patented in USA solves this problem using a coding process applicable to an original infrared image, generated from any value matrix, from any kind of infrared camera to make it much more suitable for human usage, causing a substantial difference in the way the retina and the brain processes the resultant images. The result obtained is a much less exhaustive way to see, identify and interpret infrared images generated by any infrared camera that uses this conversion process.
机译:热像仪与其他可视图像转换电子系统(例如X射线或超声仪)有非常重要的区别:红外热像仪操作员通常一个小时又一个小时花时间,他/她的眼睛只看红外图像,有时一天不连续几个小时连续六个小时或更长时间。该操作特性对红外图像内容的合格率,精度,错误和误解具有非常重要的影响。尽管在过去的五十年中硬件发展迅猛,但是对于这些问题的解决方案仍然缺乏高质量的红外热成像技术。人眼生理学还没有发展到可以看到红外辐射,大脑也没有能力理解和解码红外信息。人眼内部的化学过程和功能性细胞分布以及图像的认知感知影响在处理红外图像的感知,检测和其他步骤中起着至关重要的作用。此处介绍的名为ThermoScala的系统已在美国获得专利,它使用一种编码过程解决了这个问题,该编码过程适用于从任何值矩阵,任何种类的红外摄像机生成的原始红外图像,使其更适合人类使用,从而导致视网膜和大脑处理合成图像的方式有所不同。获得的结果是查看,识别和解释由使用此转换过程的任何红外热像仪生成的红外图像的穷举方式。

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