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VisioTracker an Innovative Automated Approach to Oculomotor Analysis

机译:VisioTracker一种动眼动分析的创新自动化方法

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摘要

Investigations into the visual system development and function necessitate quantifiable behavioral models of visual performance that are easy to elicit, robust, and simple to manipulate. A suitable model has been found in the optokinetic response (OKR), a reflexive behavior present in all vertebrates due to its high selection value. The OKR involves slow stimulus-following movements of eyes alternated with rapid resetting saccades. The measurement of this behavior is easily carried out in zebrafish larvae, due to its early and stable onset (fully developed after 96 hours post fertilization (hpf)), and benefitting from the thorough knowledge about zebrafish genetics, for decades one of the favored model organisms in this field. Meanwhile the analysis of similar mechanisms in adult fish has gained importance, particularly for pharmacological and toxicological applications.Here we describe VisioTracker, a fully automated, high-throughput system for quantitative analysis of visual performance. The system is based on research carried out in the group of Prof. Stephan Neuhauss and was re-designed by TSE Systems. It consists of an immobilizing device for small fish monitored by a high-quality video camera equipped with a high-resolution zoom lens. The fish container is surrounded by a drum screen, upon which computer-generated stimulus patterns can be projected. Eye movements are recorded and automatically analyzed by the VisioTracker software package in real time.Data analysis enables immediate recognition of parameters such as slow and fast phase duration, movement cycle frequency, slow-phase gain, visual acuity, and contrast sensitivity.Typical results allow for example the rapid identification of visual system mutants that show no apparent alteration in wild type morphology, or the determination of quantitative effects of pharmacological or toxic and mutagenic agents on visual system performance.
机译:对视觉系统开发和功能的研究需要视觉性能的量化行为模型,该行为模型必须易于得出,鲁棒且易于操作。在视动反应(OKR)中发现了一种合适的模型,由于它的高选择价值,它在所有脊椎动物中都存在自反性行为。 OKR涉及眼睛的缓慢刺激跟随运动与快速重置扫视交替。由于其早期且稳定的发作(受精后96小时(hpf)后充分发育),并且在对斑马鱼遗传学的透彻了解中受益,几十年来,这种行为的测量很容易在斑马鱼幼虫中进行。这个领域的生物。同时,对成年鱼类似机制的分析也变得尤为重要,特别是在药理和毒理学应用方面。在此,我们介绍VisioTracker,这是一种用于定量分析视力的全自动,高通量系统。该系统基于Stephan Neuhauss教授小组进行的研究,并由TSE Systems重新设计。它由固定有小鱼的固定装置组成,该固定装置由配有高分辨率变焦镜头的高质量摄像机监控。鱼缸被一个鼓形屏幕所包围,在屏幕上可以投射出计算机产生的刺激模式。眼动记录并通过VisioTracker软件包进行实时自动分析,数据分析可立即识别慢速和快速相位持续时间,运动周期频率,慢速相位增益,视敏度和对比敏感度等参数。例如快速鉴定在野生型形态上无明显变化的视觉系统突变体,或确定药理学或毒性和诱变剂对视觉系统性能的定量作用。

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