Neuroanatomical correlates of the CDT-14: A voxel-based morphometry study exploring incremental information beyond conventional clock drawing scores

Background The Clock Drawing Test (CDT) is widely used for cognitive screening but lacks unified scoring standards and neuroanatomical validation. Objective We examined the neuroanatomical correlates and incremental validity beyond conventional CDT scoring of CDT-14, a psychometrically refined 14-item system with three subfactors (Circle, Numbering, and Hand), using voxel-based morphometry (VBM). Methods We analyzed 985 participants from a heterogeneous memory-clinic cohort. Whole-brain VBM compared CDT-14 total and subfactor scores with three conventional scoring systems. Models adjusted for age, sex, education level, and total intracranial volume. Incremental validity was assessed after controlling for a principal-component-derived conventional composite score, with sensitivity analyses adjusting for white matter lesion volume (WMLV). Results CDT-14 was associated with gray matter volume (GMV) in distributed clock-drawing regions, including the right anterior hippocampus, parahippocampal gyrus, bilateral precuneus, and prefrontal regions. Primary incremental analyses identified additional associations in bilateral ventral temporal, right occipito-temporal, and dorsal anterior cingulate regions after accounting for conventional CDT performance. These associations were attenuated after WMLV adjustment, and no clusters survived FWE correction in the WMLV-adjusted incremental model. Subfactor analyses suggested partially distinct but overlapping patterns involving frontostriatal and cingulate regions for Circle, thalamic and limbic-related regions for Numbering, and hippocampal, parietal, and occipital regions for Hand. Conclusions CDT-14 showed cross-sectional GMV associations beyond conventional scoring in primary analyses. However, the incremental associations were not robust to WMLV adjustment at the FWE-corrected threshold and should be interpreted cautiously. Longitudinal, biomarker-informed, and externally validated studies are needed to establish predictive validity, disease specificity, and clinical utility.

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Journal
Journal of Alzheimer s Disease
Published
2026-10-08
DOI
https://doi.org/10.1177/13872877261493066
Primary Topic
Dementia and Cognitive Impairment Research
Type
article
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article

Neuroanatomical correlates of the CDT-14: A voxel-based morphometry study exploring incremental information beyond conventional clock drawing scores

Megumi Sasaki, Toru Satoh, Tomoko Kuwada, Hideaki Saba et al.
Journal of Alzheimer s Disease
Dementia and Cognitive Impairment Research
article

Neuroanatomical correlates of the CDT-14: A voxel-based morphometry study exploring incremental information beyond conventional clock drawing scores

Megumi Sasaki, Toru Satoh, Tomoko Kuwada, Hideaki Saba, Kaori Harano, Yoichi Sawada, Yudai Abe, Yoshiki Kato, Kana Murakami, Sayoko Shima
article en

Abstract

Background The Clock Drawing Test (CDT) is widely used for cognitive screening but lacks unified scoring standards and neuroanatomical validation. Objective We examined the neuroanatomical correlates and incremental validity beyond conventional CDT scoring of CDT-14, a psychometrically refined 14-item system with three subfactors (Circle, Numbering, and Hand), using voxel-based morphometry (VBM). Methods We analyzed 985 participants from a heterogeneous memory-clinic cohort. Whole-brain VBM compared CDT-14 total and subfactor scores with three conventional scoring systems. Models adjusted for age, sex, education level, and total intracranial volume. Incremental validity was assessed after controlling for a principal-component-derived conventional composite score, with sensitivity analyses adjusting for white matter lesion volume (WMLV). Results CDT-14 was associated with gray matter volume (GMV) in distributed clock-drawing regions, including the right anterior hippocampus, parahippocampal gyrus, bilateral precuneus, and prefrontal regions. Primary incremental analyses identified additional associations in bilateral ventral temporal, right occipito-temporal, and dorsal anterior cingulate regions after accounting for conventional CDT performance. These associations were attenuated after WMLV adjustment, and no clusters survived FWE correction in the WMLV-adjusted incremental model. Subfactor analyses suggested partially distinct but overlapping patterns involving frontostriatal and cingulate regions for Circle, thalamic and limbic-related regions for Numbering, and hippocampal, parietal, and occipital regions for Hand. Conclusions CDT-14 showed cross-sectional GMV associations beyond conventional scoring in primary analyses. However, the incremental associations were not robust to WMLV adjustment at the FWE-corrected threshold and should be interpreted cautiously. Longitudinal, biomarker-informed, and externally validated studies are needed to establish predictive validity, disease specificity, and clinical utility.

Journal of Alzheimer s Disease
Otsuma Women's University (JP), Okayama Prefectural University (JP)
Openalex Percentile: Top 12%
Dementia and Cognitive Impairment Research
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