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Changes in brain functional network connectivity after stroke 被引量:3

Changes in brain functional network connectivity after stroke
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摘要 Studies have shown that functional network connection models can be used to study brain net- work changes in patients with schizophrenia. In this study, we inferred that these models could also be used to explore functional network connectivity changes in stroke patients. We used independent component analysis to find the motor areas of stroke patients, which is a novel way to determine these areas. In this study, we collected functional magnetic resonance imaging datasets from healthy controls and right-handed stroke patients following their first ever stroke. Using independent component analysis, six spatially independent components highly correlat- ed to the experimental paradigm were extracted. Then, the functional network connectivity of both patients and controls was established to observe the differences between them. The results showed that there were 11 connections in the model in the stroke patients, while there were only four connections in the healthy controls. Further analysis found that some damaged connections may be compensated for by new indirect connections or circuits produced after stroke. These connections may have a direct correlation with the degree of stroke rehabilitation. Our findings suggest that functional network connectivity in stroke patients is more complex than that in hea- lthy controls, and that there is a compensation loop in the functional network following stroke. This implies that functional network reorganization plays a very important role in the process of rehabilitation after stroke. Studies have shown that functional network connection models can be used to study brain net- work changes in patients with schizophrenia. In this study, we inferred that these models could also be used to explore functional network connectivity changes in stroke patients. We used independent component analysis to find the motor areas of stroke patients, which is a novel way to determine these areas. In this study, we collected functional magnetic resonance imaging datasets from healthy controls and right-handed stroke patients following their first ever stroke. Using independent component analysis, six spatially independent components highly correlat- ed to the experimental paradigm were extracted. Then, the functional network connectivity of both patients and controls was established to observe the differences between them. The results showed that there were 11 connections in the model in the stroke patients, while there were only four connections in the healthy controls. Further analysis found that some damaged connections may be compensated for by new indirect connections or circuits produced after stroke. These connections may have a direct correlation with the degree of stroke rehabilitation. Our findings suggest that functional network connectivity in stroke patients is more complex than that in hea- lthy controls, and that there is a compensation loop in the functional network following stroke. This implies that functional network reorganization plays a very important role in the process of rehabilitation after stroke.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第1期51-60,共10页 中国神经再生研究(英文版)
基金 supported by the National Natural Science Foundation of China,No.60905024
关键词 nerve regeneration brain injury STROKE motor areas functional magnetic resonanceimaging brain network independent component analysis functional network connectivity neuralplasticity NSFC grant neural regeneration nerve regeneration brain injury stroke motor areas functional magnetic resonanceimaging brain network independent component analysis functional network connectivity neuralplasticity NSFC grant neural regeneration
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  • 1Calautti C, Naccarato M, Jones PS, et al. The relationship between motor deficit and hemisphere activation balance after stroke: A 3T tMRI study. NeuroImage. 2007;34(1):322-33l.".
  • 2Richards LG, Stewart KC, Woodbury ML, et al. Movement-de?pendent stroke recovery: a systematic review and meta-analysis of TMS and tMRI evidence. Neuropsychologia. 2008;46( 1 ):3-1l.".
  • 3Kokotilo KJ, Eng JJ, McKeown MJ, et al. Greater activation of secondary motor areas is related to less arm use after stroke. Neu?rorehabil Neural Repair. 2010;24(1):78-80.
  • 4Calautti C, Jones PS, Naccarato M, et al. The relationship between motor deficit and primary motor cortex hemispheric activation balance after stroke: longitudinal tMRI study. J Neurol Neurosurg Psychiatry. 2007;81(7):788-792.
  • 5Ward NS, Brown MM, Thompson AJ, et al. Neural correlates of motor recovery after stroke: a longitudinal tMRI study. Brain. 2003;I26( 11 ):2476-2496.
  • 6Askim T, Indredavik B, Haberg A. Internally and externally paced finger movements differ in reorganization after acute ischemic stroke. Arch Phys Med Rehabil. 2010; 91(10):1529-1536.
  • 7Rehme AK, Fink GR, Cramon DY, et al. The role of the con?tralesional motor cortex for motor recovery in the early days after stroke assessed with longitudinal fMRI. Cerebral Cortex. 2010;21 (4):2-13.".
  • 8Enzinger C, Dawes H, Berg HJ, et al. Brain activity changes associ?ated with treadmill training after stroke. Stroke. 2009;40(7):2460- 2467.
  • 9Higashida RT, Furlan AJ, Roberts H et al. Trial design and report?ing standards for intra -arterial cerebral thrombolysis for acute ischemic stroke. Stroke. 2003;34(8):e109-137.".
  • 10Forster A, Griebe M, Ottomeyer C, et al. Cerebral network disrup?tion as a possible mechanism for impaired recovery after acute pontine stroke. Cerebrovasc Dis. 2011;31(5):499-505.

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