Near-Infrared Spectroscopic Topography as a Tool to Monitor Motor Reorganization After Hemiparetic Stroke
- 1 August 2002
- journal article
- research article
- Published by Wolters Kluwer Health in Stroke
- Vol. 33 (8) , 2032-2036
- https://doi.org/10.1161/01.str.0000021903.52901.97
Abstract
Background and Purpose — Motor functional recovery from stroke can occur, but the mechanisms underlying this restorative process remain to be elucidated. We used near-infrared spectroscopic (NIRS) topography in comparison with functional MRI (fMRI) to evaluate the compensatory motor activation of cortical regions in patients who recovered from hemiparesis after cortical cerebral infarction. Methods — We examined 6 right-handed patients who suffered cerebral infarction of the middle cerebral artery territory with minimal or mild residual contralateral hemiparesis (4 men and 2 women, 59 to 79 years old, all had left hemiparesis). Both fMRI and NIRS were studied during a hand movement task at chronic stages. Five right-handed, normal subjects (3 men and 2 women, 44 to 81 years old) served as controls. Results — fMRI and NIRS detected very similar cerebral cortical activation, although NIRS detected only superficial activation. The spatial resolution of NIRS was less than that of fMRI, but NIRS provided a dynamic profile of activation. Normal subjects activated predominantly the contralateral primary sensorimotor cortex and supplementary motor areas during each hand movement. All the stroke patients exhibited the normal activation pattern during normal hand movement. On affected hand movement, the stroke patients showed extended activation not only in the contralateral motor cortex but also in the ipsilateral motor cortex (primary motor cortex and supplementary motor areas). Conclusions — Both fMRI and NIRS studies provided evidence for the contribution of ipsilateral motor cortical compensation or reorganization to the recovery from poststroke hemiparesis. The result demonstrated that NIRS was a unique tool to monitor poststroke alterations in cortical motor functions.Keywords
This publication has 21 references indexed in Scilit:
- Activation of the visual cortex imaged by 24-channel near-infrared spectroscopyJournal of Biomedical Optics, 2000
- Contralateral and ipsilateral EMG responses to transcranial magnetic stimulation during recovery of arm and hand function after strokeElectroencephalography and Clinical Neurophysiology/Electromyography and Motor Control, 1996
- Cerebral plasticity after stroke as revealed by ipsilateral responses to magnetic stimulationNeuroReport, 1996
- Near-infrared topographic measurement system: Imaging of absorbers localized in a scattering mediumReview of Scientific Instruments, 1996
- Functional cooperativity of human cortical motor areas during self-paced simple finger movements A high-resolution MRI studyBrain, 1994
- Both primary motor cortex and supplementary motor area play an important role in complex finger movementBrain, 1993
- Functional Magnetic Resonance Imaging of Motor Cortex: Hemispheric Asymmetry and HandednessScience, 1993
- The functional anatomy of motor recovery after stroke in humans: A study with positron emission tomographyAnnals of Neurology, 1991
- Noninvasive, Infrared Monitoring of Cerebral and Myocardial Oxygen Sufficiency and Circulatory ParametersScience, 1977
- SOME COMMENTS ON THE PYRAMIDAL TRACT, WITH SPECIAL REFERENCE TO ITS INDIVIDUAL VARIATIONS IN MANActa Neurologica Scandinavica, 1963