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Modification of the Heidelberg retinal flowmeter to record pattern and flicker induced blood flow changes

机译:修改海德堡视网膜流量计以记录模式和闪烁引起的血流变化

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Purpose: We tested a prototype stimulator interfaced with a commercially available scanning laser ophthalmoscope designed to measure retinal capillary perfusion (Heidelberg Retina Flowmeter (HRF)). The add-on stimulator optically superimposed the image of a monitor display on to the subject's retina coaxially with the imaging optics of the HRF. The purpose of the study was to determine if flicker and pattern stimulation presented in this manner could evoke changes in retinal perfusion that could be measured by the HRF. Methods: The prototype stimulator projected 55° visual angle circular fields of homogeneous flicker, alternating checkerboard, and multi-focal m-sequence hexagonal patterns on the retina of 10 human subjects during acquisition of images by the HRF. Results: Images were successfully acquired and processed. HRF perfusion values during flicker and pattern stimulation were not significantly different from control values. Conclusions: Results of the present study and a previously published study showing a flicker-induced increase in the HRF perfusion values are contradictory. Retinal perfusion measured by the HRF were not affected by flicker and pattern stimulation delivered through the prototype device. These data are not consistent with a large flicker or pattern induced increase in retinal perfusion. The instrumental modification appears promising. However, the raster scan stimulation technique or some other aspect of stimulation or image acquisition may account for the different results in the present study and previous studies in our laboratory and in the laboratories of other investigators.
机译:目的:我们测试了与市场上可买到的用于测量视网膜毛细血管灌注(海德堡视网膜流量计(HRF))的扫描激光检眼镜连接的原型刺激器。附加刺激器将监视器显示器的图像与HRF的成像光学系统同轴地叠加到对象的视网膜上。该研究的目的是确定以这种方式出现的闪烁和模式刺激是否可以引起可以通过HRF测量的视网膜灌注变化。方法:原型刺激器在HRF采集图像期间,在10个人的视网膜上投射均匀闪烁,交替棋盘和多焦点m序列六角形图案的55°视角圆形场。结果:图像已成功获取和处理。闪烁和模式刺激期间的HRF灌注值与对照值无显着差异。结论:本研究和先前发表的研究结果显示闪烁引起的HRF灌注值增加是矛盾的。由HRF测量的视网膜灌注不受通过原型设备传递的闪烁和图案刺激的影响。这些数据与大的闪烁或图案引起的视网膜灌注增加不一致。仪器的修改似乎很有希望。但是,在我们的实验室和其他研究人员的实验室中,本研究和以前的研究中,光栅扫描刺激技术或刺激或图像获取的某些其他方面可能会导致不同的结果。

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