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Tele-transmission of stereoscopic images of the optic nerve head in glaucoma via Internet.

机译:通过互联网远程传输青光眼中视神经头部的立体图像。

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摘要

The objective was to describe an inexpensive system to visualize stereoscopic photographs of the optic nerve head on computer displays and to transmit such images via the Internet for collaborative research or remote clinical diagnosis in glaucoma. Stereoscopic images of glaucoma patients were digitized and stored in a file format (joint photographic stereoimage [jps]) containing all three-dimensional information for both eyes on an Internet Web site (www.trizax.com). The size of jps files was between 0.4 to 1.4 MB (corresponding to a diagonal stereo image size between 900 and 1400 pixels) suitable for Internet protocols. A conventional personal computer system equipped with wireless stereoscopic LCD shutter glasses and a CRT-monitor with high refresh rate (120 Hz) can be used to obtain flicker-free stereo visualization of true-color images with high resolution. Modern thin-film transistor-LCD displays in combination with inexpensive red-cyan goggles achieve stereoscopic visualization with the same resolution but reduced color quality and contrast. The primary aim of our study was met to transmit stereoscopic images via the Internet. Additionally, we found that with both stereoscopic visualization techniques, cup depth, neuroretinal rim shape, and slope of the inner wall of the optic nerve head, can be qualitatively better perceived and interpreted than with monoscopic images. This study demonstrates high-quality and low-cost Internet transmission of stereoscopic images of the optic nerve head from glaucoma patients. The technique allows exchange of stereoscopic images and can be applied to tele-diagnostic and glaucoma research.
机译:目的是描述一种廉价的系统,以在计算机显示器上可视化视神经头的立体照片,并通过Internet传输此类图像,以进行青光眼的合作研究或远程临床诊断。对青光眼患者的立体图像进行数字化处理,并以文件格式(联合照相立体图像[jps])存储在Internet网站(www.trizax.com)上,其中包含双眼的所有三维信息。 jps文件的大小在0.4到1.4 MB之间(对应于900到1400像素之间的对角线立体图像大小),适合Internet协议。配备有无线立体LCD快门眼镜和具有高刷新率(120 Hz)的CRT显示器的常规个人计算机系统可用于获得具有高分辨率的真彩色图像的无闪烁立体可视化。现代的薄膜晶体管LCD显示器与便宜的红青色护目镜相结合,可以实现具有相同分辨率的立体可视化效果,但是降低了色彩质量和对比度。达到我们研究的主要目的是通过Internet传输立体图像。此外,我们发现,使用立体视觉技术,与单眼图像相比,可以在质量上更好地感知和解释杯深度,神经视网膜边缘形状和视神经头内壁的倾斜度。这项研究证明了青光眼患者视神经乳头立体图像的高质量和低成本互联网传输。该技术可以交换立体图像,并且可以应用于远程诊断和青光眼研究。

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