File:Cognitive performance in WS subjects (n = 67) versus normal controls.png
Cognitive_performance_in_WS_subjects_(n_=_67)_versus_normal_controls.png (600 × 292 pixels, file size: 139 KB, MIME type: image/png)
Original File name: journal_pone_0010292_g002
a: Means (circles) and SD (bars) of WAIS-R subtest scores for WS cases. Performance subtests are listed in bold; verbal subtests in plain font. In normal controls (NC), WAIS-R subtest scores are 10±3 (thick gray line). b: Means (circles) and SD (bars) of VIQ, PIQ, and FSIQ scores for WS cases. In normal controls (NC), WAIS-R VIQ, PIQ, and FSIQ scores are 100±15 (thick gray line). c: Principal component analysis of WAIS-R shows subtests contribute differently to intelligence in WS cases versus normal controls. WAIS-R subtest loadings on PC1 in WS cases (x-axis) and normal controls (y-axis). Data used for normal analysis is from Enns and Reddon . Performance subtests are listed in bold; verbal subtests in plain font. The iagonal line is x = y, at which WS and normal loadings are equal.
Michael C Gao, Ursula Bellugi, Li Dai, Debra L Mills, Eric M Sobel, Kenneth Lange, Julie R Korenberg Intelligence in Williams Syndrome is related to STX1A, which encodes a component of the presynaptic SNARE complex. PLoS ONE: 2010, 5(4);e10292 PMID:20422020
Copyright: © 2010 Gao et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
Cite this page: Hill, M.A. (2021, March 2) Embryology Cognitive performance in WS subjects (n = 67) versus normal controls.png. Retrieved from https://embryology.med.unsw.edu.au/embryology/index.php/File:Cognitive_performance_in_WS_subjects_(n_%3D_67)_versus_normal_controls.png
- © Dr Mark Hill 2021, UNSW Embryology ISBN: 978 0 7334 2609 4 - UNSW CRICOS Provider Code No. 00098G
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