A Method to Estimate Brain Volume from Head CT Images and Application to Detect Brain Atrophy in Alzheimer Disease

Total brain volume and total intracranial volume are important measures for assessing whole-brain atrophy in Alzheimer disease, dementia, and other neurodegenerative diseases. Unlike MR imaging, which has a number of well-validated fully-automated methods, only a handful of methods segment CT images...

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Veröffentlicht in:American journal of neuroradiology : AJNR 2020-02, Vol.41 (2), p.224-230
Hauptverfasser: Adduru, V, Baum, S A, Zhang, C, Helguera, M, Zand, R, Lichtenstein, M, Griessenauer, C J, Michael, A M
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Sprache:eng
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Zusammenfassung:Total brain volume and total intracranial volume are important measures for assessing whole-brain atrophy in Alzheimer disease, dementia, and other neurodegenerative diseases. Unlike MR imaging, which has a number of well-validated fully-automated methods, only a handful of methods segment CT images. Available methods either use enhanced CT, do not estimate both volumes, or require formal validation. Reliable computation of total brain volume and total intracranial volume from CT is needed because head CTs are more widely used than head MRIs in the clinical setting. We present an automated head CT segmentation method (CTseg) to estimate total brain volume and total intracranial volume. CTseg adapts a widely used brain MR imaging segmentation method from the Statistical Parametric Mapping toolbox using a CT-based template for initial registration. CTseg was tested and validated using head CT images from a clinical archive. CTseg showed excellent agreement with 20 manually segmented head CTs. The intraclass correlation was 0.97 ( < .001) for total intracranial volume and 0.94 ( < .001) for total brain volume. When CTseg was applied to a cross-sectional Alzheimer disease dataset (58 with Alzheimer disease patients and 58 matched controls), CTseg detected a loss in percentage total brain volume (as a percentage of total intracranial volume) with age (
ISSN:0195-6108
1936-959X
DOI:10.3174/ajnr.A6402