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Optimization and Validation of a Visual Integration Test for Schizophrenia Research

机译:精神分裂症研究的视觉整合测试的优化和验证

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摘要

The Cognitive Neuroscience Treatment Research to Improve Cognition in Schizophrenia initiative highlighted a contour integration test as a promising index of visual integration impairment because of its well-established psychometric properties; its prior validation in healthy adults, patients, and nonhuman primates; and its potential sensitivity to treatment effects. In this multisite study, our goals were to validate the task on the largest subject sample to date, clarify the task conditions and number of trials that best discriminate patients from controls, and determine whether this discrimination can occur in standard clinical trial settings. For our task, subjects briefly observed a field of disconnected, oriented elements and attempted to decide whether a subset of those elements formed a leftward- or rightward-pointing shape. Difficulty depended on the amount of orientational jitter that was added to the shape’s elements. Two versions of this Jittered Orientation Visual Integration task (JOVI) were examined. Study 1 did not reveal between-group differences in threshold (ie, the jitter magnitude needed to reach a performance level of ∼80%), but this likely owed to the wide sampling distribution of jitter levels and resulting floor/ceiling effects in many conditions. Study 2 incorporated a narrower range of difficulty levels and revealed lower thresholds (worse performance) among patients (p < .001). This group difference remained even when only the first half of the trials was analyzed (p = .001). Thus, the JOVI-2 provides a brief, sensitive measure of visual integration deficits in schizophrenia. Neural implications and potential future applications of the JOVI are discussed.
机译:改善精神分裂症认知能力的认知神经科学治疗研究强调轮廓融合测试是一种有前途的视觉融合障碍指标,因为它具有完善的心理测量特性。事先在健康成人,患者和非人类灵长类动物中验证;及其对治疗效果的潜在敏感性。在这项多地点研究中,我们的目标是验证迄今为止最大的受试者样本上的任务,阐明任务条件和能够最有效地将患者与对照组区分开的试验数量,并确定这种歧视是否可以在标准临床试验环境中发生。对于我们的任务,受试者简短地观察了一个相互分离且定向的元素的区域,并试图确定这些元素的子集是形成向左指向还是向右指向。难度取决于添加到形状元素中的定向抖动量。研究了此抖动定向视觉集成任务(JOVI)的两个版本。研究1并未揭示阈值之间的组间差异(即,达到约80%的性能水平所需的抖动幅度),但这可能是由于抖动水平的广泛采样分布以及在许多情况下导致的最低/最高影响。研究2纳入了较窄的难度水平范围,并显示患者中的阈值较低(表现较差)(p <.001)。即使仅对试验的前半部分进行了分析,该组差异仍然存在(p = .001)。因此,JOVI-2为精神分裂症的视觉整合缺陷提供了一种简短而灵敏的方法。讨论了JOVI的神经含义和潜在的未来应用。

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