The low dimensionality of post-stroke cognitive deficits: it's the lesion anatomy!

被引:7
作者
Sperber, Christoph [1 ]
Gallucci, Laura [1 ]
Umarova, Roza [1 ]
机构
[1] Univ Bern, Univ Hosp Bern, Dept Neurol, Inselspital, Bern, Switzerland
关键词
principal component analysis; neuropsychology; factor analysis; brain lesion; association problem; PRINCIPAL COMPONENT ANALYSIS; NEGLECT; STROKE; INFERENCE; APRAXIA; NUMBER; SCALE;
D O I
10.1093/brain/awac443
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
For years, dissociation studies on neurological single-case patients with brain lesions were the dominant method to infer fundamental cognitive functions in neuropsychology. In contrast, the association between deficits was considered to be of less epistemological value. Still, associational computational methods for dimensionality reduction-such as principal component analysis or factor analysis-became popular for the identification of fundamental cognitive functions and to understand human cognitive brain architecture from post-stroke neuropsychological profiles. In the present in silico study with lesion imaging of 300 stroke patients, we investigated the dimensionality of artificial simulated neuropsychological profiles that exclusively contained independent fundamental cognitive functions without any underlying low-dimensional cognitive architecture. Still, the anatomy of stroke lesions alone was sufficient to create a dependence between variables that allowed a low-dimensional description of the data with principal component analysis. All criteria that we used to estimate the dimensionality of data, including the Kaiser criterion, were strongly affected by lesion anatomy, while the Joliffe criterion provided the least affected estimates. The dimensionality of profiles was reduced by 62-70% for the Kaiser criterion, up to the degree that is commonly found in neuropsychological studies on actual cognitive measures. The interpretability of such low-dimensional factors as deficits of fundamental cognitive functions and their provided insights into human cognitive architecture thus seem to be severely limited, and the heavy focus of current cognitive neuroscience on group studies and associations calls for improvements. We suggest that qualitative criteria and dissociation patterns could be used to refine estimates for the dimensionality of the cognitive architecture behind post-stroke deficits. Further, given the strong impact of lesion anatomy on the associational structure of data, we see the need for further optimization of interpretation strategies of computational factors in post-stroke lesion studies of cognitive deficits. Today cognitive neuroscience favours the investigation of associations-and not dissociations-in group studies. However, Sperber et al. show that a low-dimensional structure of associations in neuropsychological data in stroke does not imply a low-dimensional cognitive architecture behind post-stroke deficits, as it also reflects lesion anatomy.
引用
收藏
页码:2443 / 2452
页数:10
相关论文
共 43 条
[1]   Dorsal and ventral visual stream contributions to preserved reading ability in patients with central alexia [J].
Aguilar, Oscar M. ;
Kerry, Sheila J. ;
Crinion, Jennifer T. ;
Callaghan, Martina F. ;
Woodhead, Zoe V. J. ;
Leff, Alexander P. .
CORTEX, 2018, 106 :200-212
[2]   Noun and verb processing in aphasia: Behavioural profiles and neural correlates [J].
Alyahya, Reem S. W. ;
Halai, Ajay D. ;
Conroy, Paul ;
Ralpha, Matthew A. Lambon .
NEUROIMAGE-CLINICAL, 2018, 18 :215-230
[3]  
[Anonymous], 2007, PRACT ASSESS RES EVA, DOI DOI 10.7275/WJNC-NM63
[4]   Sensitivity of clinical and behavioural tests of spatial neglect after right hemisphere stroke [J].
Azouvi, P ;
Samuel, C ;
Louis-Dreyfus, A ;
Bernati, T ;
Bartolomeo, P ;
Beis, JM ;
Chokron, S ;
Leclercq, M ;
Marchal, F ;
Martin, Y ;
de Montety, G ;
Olivier, S ;
Perennou, D ;
Pradat-Diehl, P ;
Prairial, C ;
Rode, G ;
Siéroff, E ;
Wiart, L ;
Rousseaux, M .
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 2002, 73 (02) :160-166
[5]   A low-dimensional structure of neurological impairment in stroke [J].
Bisogno, Antonio Luigi ;
Favaretto, Chiara ;
Zangrossi, Andrea ;
Monai, Elena ;
Facchini, Silvia ;
De Pellegrin, Serena ;
Pini, Lorenzo ;
Castellaro, Marco ;
Basile, Anna Maria ;
Baracchini, Claudio ;
Corbetta, Maurizio .
BRAIN COMMUNICATIONS, 2021, 3 (02)
[6]   Capturing multidimensionality in stroke aphasia: mapping principal behavioural components to neural structures [J].
Butler, Rebecca A. ;
Ralph, Matthew A. Lambon ;
Woollams, Anna M. .
BRAIN, 2014, 137 :3248-3266
[7]   Neuronal substrates of Corsi Block span: Lesion symptom mapping analyses in relation to attentional competition and spatial bias [J].
Chechlacz, Magdalena ;
Rotshtein, Pia ;
Humphreys, Glyn W. .
NEUROPSYCHOLOGIA, 2014, 64 :240-251
[8]   Lesion-symptom mapping of a complex figure copy task: A large-scale PCA study of the BCoS trial [J].
Chen, Haobo ;
Pan, Xiaoping ;
Lau, Johnny King Lam ;
Bickerton, Wai-Ling ;
Pradeep, Boddana ;
Taheri, Maliheh ;
Humphreys, Glyn ;
Rotshtein, Pia .
NEUROIMAGE-CLINICAL, 2016, 11 :622-634
[9]   Common Behavioral Clusters and Subcortical Anatomy in Stroke [J].
Corbetta, Maurizio ;
Ramsey, Lenny ;
Callejas, Alicia ;
Baldassarre, Antonello ;
Hacker, Carl D. ;
Siegel, Joshua S. ;
Astafiev, Serguei V. ;
Rengachary, Jennifer ;
Zinn, Kristina ;
Lang, Catherine E. ;
Connor, Lisa Tabor ;
Fucetola, Robert ;
Strube, Michael ;
Carter, Alex R. ;
Shulman, Gordon L. .
NEURON, 2015, 85 (05) :927-941
[10]   A hitchhiker's guide to lesion-behaviour mapping [J].
de Haan, Bianca ;
Karnath, Hans-Otto .
NEUROPSYCHOLOGIA, 2018, 115 :5-16