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在阿尔茨海默病研究样本中,NIH 工具包认知电池的潜在因子结构和测量不变性。

Latent Factor Structure and Measurement Invariance of the NIH Toolbox Cognition Battery in an Alzheimer's Disease Research Sample.

机构信息

Wisconsin Alzheimer's Disease Research Center, University of Wisconsin School of Medicine and Public Health, J5/1 Mezzanine, 600 Highland Avenue, Madison, WI53792, USA.

Wisconsin Alzheimer's Institute, University of Wisconsin School of Medicine and Public Health, 610 Walnut Street, 9th Floor, Madison, WI53726, USA.

出版信息

J Int Neuropsychol Soc. 2021 May;27(5):412-425. doi: 10.1017/S1355617720000922. Epub 2020 Oct 5.

Abstract

OBJECTIVE

This study investigated the latent factor structure of the NIH Toolbox Cognition Battery (NIHTB-CB) and its measurement invariance across clinical diagnosis and key demographic variables including sex, race/ethnicity, age, and education for a typical Alzheimer's disease (AD) research sample.

METHOD

The NIHTB-CB iPad English version, consisting of 7 tests, was administered to 411 participants aged 45-94 with clinical diagnosis of cognitively unimpaired, dementia, mild cognitive impairment (MCI), or impaired not MCI. The factor structure of the whole sample was first examined with exploratory factor analysis (EFA) and further refined using confirmatory factor analysis (CFA). Two groups were classified for each variable (diagnosis or demographic factors). The confirmed factor model was next tested for each group with CFA. If the factor structure was the same between the groups, measurement invariance was then tested using a hierarchical series of nested two-group CFA models.

RESULTS

A two-factor model capturing fluid cognition (executive function, processing speed, and memory) versus crystalized cognition (language) fit well for the whole sample and each group except for those with age < 65. This model generally had measurement invariance across sex, race/ethnicity, and education, and partial invariance across diagnosis. For individuals with age < 65, the language factor remained intact while the fluid cognition was separated into two factors: (1) executive function/processing speed and (2) memory.

CONCLUSIONS

The findings mostly supported the utility of the battery in AD research, yet revealed challenges in measuring memory for AD participants and longitudinal change in fluid cognition.

摘要

目的

本研究旨在调查 NIH 工具包认知电池(NIHTB-CB)的潜在因子结构及其在认知未受损、痴呆、轻度认知障碍(MCI)或非 MCI 受损的临床诊断和关键人口统计学变量(包括性别、种族/民族、年龄和教育)方面的测量不变性,针对的是一个典型的阿尔茨海默病(AD)研究样本。

方法

NIHTB-CB iPad 英文版由 7 项测试组成,共对 411 名年龄在 45-94 岁之间的参与者进行了测试,这些参与者的临床诊断为认知正常、痴呆、轻度认知障碍(MCI)或非 MCI 受损。首先使用探索性因子分析(EFA)对整个样本的因子结构进行了检验,然后使用验证性因子分析(CFA)进一步进行了优化。为每个变量(诊断或人口统计学因素)对两个组进行分类。接下来,使用 CFA 对每个组进行验证性因子模型测试。如果组间的因子结构相同,则使用分层嵌套两组 CFA 模型测试测量不变性。

结果

捕获流体认知(执行功能、处理速度和记忆)与晶体认知(语言)的双因子模型适用于整个样本和除年龄<65 岁的组外的每个组。该模型在性别、种族/民族和教育方面具有普遍的测量不变性,在诊断方面具有部分不变性。对于年龄<65 岁的个体,语言因子保持不变,而流体认知则分为两个因子:(1)执行功能/处理速度和(2)记忆。

结论

这些发现大多支持了该电池在 AD 研究中的实用性,但也揭示了在 AD 参与者中测量记忆以及在流体认知方面测量纵向变化所面临的挑战。

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