Wright State University , Biomedical Imaging Laboratory, 3640 Colonel Glenn Highway, Dayton, Ohio 45435, United States.
Neurophotonics. 2016 Apr;3(2):025005. doi: 10.1117/1.NPh.3.2.025005. Epub 2016 Jun 15.
Functional near-infrared spectroscopy has yet to be implemented as a stand-alone technique within an ophthalmology clinical setting, despite its promising advantages. The present study aims to further investigate reliability of visual cortical signals. This was achieved by: (1) assessing the effects of optode placements using the 10-20 International System of Electrode Placement consisting of 28 channels, (2) determining effects of stimulus size on response, and (3) evaluating response variability as a result of cap placement across three sessions. Ten participants with mean age [Formula: see text] years (five male) and varying types of hair color and thickness were recruited. Visual stimuli of black-and-white checkerboards, reversing at a frequency of 7.5 Hz were presented. Visual angles of individual checker squares included 1 deg, 2 deg, 5 deg, 9 deg, and 18 deg. The number of channels that showed response was analyzed for each participant, stimulus size, and session. 1-deg stimulus showed the greatest activation. One of three data collection sessions for each participant gave different results ([Formula: see text]). Hair color and thickness each had an effect upon the overall HbO ([Formula: see text]), while only color had a significant effect for HbD ([Formula: see text]). A reliable level of robustness and consistency is still required for clinical implementation and assessment of visual dysfunction.
尽管功能近红外光谱技术具有广阔的应用前景,但尚未在眼科临床环境中作为独立技术得到应用。本研究旨在进一步探讨视觉皮层信号的可靠性。通过以下三个方面来实现:(1)使用包含 28 个通道的 10-20 国际电极放置系统评估光极放置的效果;(2)确定刺激大小对反应的影响;(3)评估三个阶段中因帽子放置引起的反应变异性。共招募了 10 名年龄为 [Formula: see text] 岁的参与者(5 名男性),他们的头发颜色和厚度各不相同。呈现黑白棋盘格的视觉刺激,以 7.5 Hz 的频率反转。每个棋盘方格的视角包括 1 度、2 度、5 度、9 度和 18 度。分析了每个参与者、刺激大小和阶段中显示反应的通道数量。1 度刺激显示出最大的激活。每个参与者的三个数据采集阶段中的一个阶段给出了不同的结果([Formula: see text])。头发颜色和厚度都对 HbO 的总体水平产生影响([Formula: see text]),而只有颜色对 HbD 有显著影响([Formula: see text])。要实现临床应用和视觉功能障碍评估,仍然需要可靠的稳健性和一致性水平。