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首页> 外文期刊>Investigative ophthalmology & visual science >Continuous Retinal Vessel Diameter Measurements: The Future in Retinal Vessel Assessment?
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Continuous Retinal Vessel Diameter Measurements: The Future in Retinal Vessel Assessment?

机译:连续的视网膜血管直径测量:视网膜血管评估的未来?

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Purpose.: To establish an alternative method, sequential and diameter response analysis (SDRA), to determine dynamic retinal vessel responses and their time course in serial stimulation compared with the established method of averaged diameter responses and standard static assessment. Methods.: SDRA focuses on individual time and diameter responses, taking into account the fluctuation in baseline diameter, providing improved insight into reaction patterns when compared with established methods as delivered by retinal vessel analyzer (RVA) software. SDRA patterns were developed with measurements from 78 healthy nonsmokers and subsequently validated in a group of 21 otherwise healthy smokers. Fundus photography and retinal vessel responses were assessed by RVA, intraocular pressure by contact tonometry, and blood pressure by sphygmomanometry. Results.: Compared with the RVA software method, SDRA demonstrated a marked difference in retinal vessel responses to flickering light (P 0.05). As a validation of that finding, SDRA showed a strong relation between baseline retinal vessel diameter and subsequent dilatory response in both healthy subjects and smokers (P = 0.001). The RVA software was unable to detect this difference or to find a difference in retinal vessel arteriovenous ratio between smokers and nonsmokers (P = 0.243). However, SDRA revealed that smokers' vessels showed both an increased level of arterial baseline diameter fluctuation before flicker stimulation (P = 0.005) and an increased stiffness of retinal arterioles (P = 0.035) compared with those in nonsmokers. These differences were unrelated to intraocular pressure or systemic blood pressure. Conclusions.: SDRA shows promise as a tool for the assessment of vessel physiology. Further studies are needed to explore its application in patients with vascular diseases.
机译:目的:与建立的平均直径响应和标准静态评估方法相比,建立另一种方法,即顺序和直径响应分析(SDRA),以确定动态视网膜血管响应及其在连续刺激中的时程。方法:SDRA专注于个体时间和直径响应,考虑到基线直径的波动,与通过视网膜血管分析仪(RVA)软件提供的既定方法相比,可以更好地了解反应模式。 SDRA模式是根据78位健康的非吸烟者的测量结果开发的,随后在21位健康的吸烟者中进行了验证。通过RVA评估眼底照相和视网膜血管反应,通过接触眼压计评估眼内压,通过血压计评估血压。结果:与RVA软件方法相比,SDRA显示出视网膜血管对闪烁光的反应​​有显着差异(P <0.05)。为了证实这一发现,SDRA显示了健康受试者和吸烟者的基线视网膜血管直径与随后的扩张反应之间有很强的相关性(P = 0.001)。 RVA软件无法检测到这种差异,也无法发现吸烟者和非吸烟者之间视网膜血管动静脉比率的差异(P = 0.243)。但是,SDRA显示,与不吸烟者相比,烟民的血管显示闪烁刺激前的动脉基线直径波动水平增加(P = 0.005)和视网膜小动脉刚度增加(P = 0.035)。这些差异与眼内压或全身血压无关。结论:SDRA显示出有望作为评估血管生理的工具。需要进一步研究以探索其在血管疾病患者中的应用。

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