Lowes Judith, Hancock Peter J B, Bobak Anna K
Psychology, Faculty of Natural Sciences, University of Stirling, United Kingdom.
Psychology, Faculty of Natural Sciences, University of Stirling, United Kingdom.
Cortex. 2024 Mar;172:159-184. doi: 10.1016/j.cortex.2023.12.011. Epub 2024 Jan 17.
Despite severe everyday problems recognising faces, some individuals with developmental prosopagnosia (DP) can achieve typical accuracy scores on laboratory face recognition tests. To address this, studies sometimes also examine response times (RTs), which tend to be longer in DPs relative to control participants. In the present study, 24 potential (according to self-report) DPs and 110 age-matched controls completed the Cambridge Face and Bicycle Memory Tests, old new faces task, and a famous faces test. We used accuracy and the Balanced Integration Score (BIS), a measure that adjusts accuracy for RTs, to classify our sample at the group and individual levels. Subjective face recognition ability was assessed using the PI20 questionnaire and semi structured interviews. Fifteen DPs showed a major impairment using BIS compared with only five using accuracy alone. Logistic regression showed that a model incorporating the BIS measures was the most sensitive for classifying DP and showed highest area under the curve (AUC). Furthermore, larger between-group effect sizes were observed for a derived global (averaged) memory measure calculated using BIS versus accuracy alone. BIS is thus an extremely sensitive novel measure for attenuating speed-accuracy trade-offs that can otherwise mask impairment measured only by accuracy in DP.
尽管在日常生活中存在严重的面部识别问题,但一些患有发展性面孔失认症(DP)的个体在实验室面部识别测试中仍能取得典型的准确率分数。为了解决这一问题,研究有时还会考察反应时间(RTs),与对照组参与者相比,DP患者的反应时间往往更长。在本研究中,24名潜在的(根据自我报告)DP患者和110名年龄匹配的对照组完成了剑桥面部和自行车记忆测试、新旧面孔任务以及名人面孔测试。我们使用准确率和平衡整合分数(BIS)(一种根据反应时间调整准确率的指标)在组和个体层面上对我们的样本进行分类。使用PI20问卷和半结构化访谈评估主观面部识别能力。与仅使用准确率相比,15名DP患者使用BIS显示出严重损伤,而仅使用准确率时只有5名。逻辑回归表明,纳入BIS指标的模型在分类DP时最敏感,且曲线下面积(AUC)最高。此外,与仅使用准确率相比,使用BIS计算得出的全局(平均)记忆指标观察到更大的组间效应量。因此,BIS是一种极其敏感的新指标,可用于减弱速度 - 准确率权衡,否则这种权衡可能会掩盖仅通过准确率测量出的DP损伤。