Literature DB >> 23689388

Brain activation in the acute phase of traumatic spinal cord injury.

L Sabre1, T Tomberg, J Kõrv, J Kepler, K Kepler, U Linnamägi, T Asser.   

Abstract

STUDY
DESIGN: Prospective clinical study.
BACKGROUND: The aim of the study was to investigate cortical reorganisation after traumatic spinal cord injury (TSCI) using functional magnetic resonance imaging (fMRI).
SETTING: Tartu University Hospital, Tartu, Estonia.
METHODS: We studied six right-handed tetraplegic TSCI patients at 1, 3 and 12 months after the injury and 12 age- and gender-matched healthy controls. Individuals performed simple test-rest cycles of flexion/extension of the right-hand fingers and flexion/extension of the right ankle during fMRI. The volumes of activation (VOA), maximum t-values, centres of gravity (COG) and weighted laterality indexes were calculated.
RESULTS: There was no recovery of neurologic function in three patients and, according to the American Spinal Injury Association (ASIA) Impairment Scale the remaining three recovered. A positive correlation between the VOA in the primary motor cortex and the ASIA impairment scale (1 month: r=0.82, P=0.002; 3 Month: r=0.63, P=0.03; 12 Month: r=0.23, P=0.52) was found. The study also revealed a pattern of cortical activation that was increased among the patients who recovered (in Brodmann area 4 (BA 4), P=0.06; BA 1-2-3-5, P=0.08; BA 6, P=0.05). During the hand task there was an expansion of COG laterally, anteriorly and inferiorly among the patients who recovered. During the hand movement the cortical activation was less lateralised among the patients compared with the controls (P<0.05).
CONCLUSION: Our study has found broadening of cortical activation and shift of COG during the first year after TSCI, depending on the recovery.

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Year:  2013        PMID: 23689388     DOI: 10.1038/sc.2013.41

Source DB:  PubMed          Journal:  Spinal Cord        ISSN: 1362-4393            Impact factor:   2.772


  7 in total

1.  Brain activation in the chronic phase of traumatic spinal cord injury.

Authors:  L Sabre; T Tomberg; J Kõrv; J Kepler; K Kepler; Ü Linnamägi; T Asser
Journal:  Spinal Cord       Date:  2015-09-22       Impact factor: 2.772

Review 2.  Spinal cord injury: how can we improve the classification and quantification of its severity and prognosis?

Authors:  Vibhor Krishna; Hampton Andrews; Abhay Varma; Jacobo Mintzer; Mark S Kindy; James Guest
Journal:  J Neurotrauma       Date:  2014-02-01       Impact factor: 5.269

3.  Rubber hand illusion induced by touching the face ipsilaterally to a deprived hand: evidence for plastic "somatotopic" remapping in tetraplegics.

Authors:  Michele Scandola; Emmanuele Tidoni; Renato Avesani; Giovanni Brunelli; Salvatore M Aglioti; Valentina Moro
Journal:  Front Hum Neurosci       Date:  2014-06-10       Impact factor: 3.169

4.  Combining transcranial direct current stimulation and peripheral electrical stimulation to improve upper limb function in a patient with acute central cord syndrome: a case report.

Authors:  Hideaki Matsuo; Masafumi Kubota; Yasue Hori; Yuya Izubuchi; Ai Takahashi; Shuji Watanabe; Hideaki Nakajima; Akihiko Matsumine
Journal:  J Int Med Res       Date:  2022-03       Impact factor: 1.671

5.  Expression of aquaporin-4 and pathological characteristics of brain injury in a rat model of traumatic brain injury.

Authors:  Chengcheng Zhang; Jianqiang Chen; Hong Lu
Journal:  Mol Med Rep       Date:  2015-09-25       Impact factor: 2.952

6.  The apparent diffusion coefficient does not reflect cytotoxic edema on the uninjured side after traumatic brain injury.

Authors:  Hong Lu; Xiaoyan Lei
Journal:  Neural Regen Res       Date:  2014-05-01       Impact factor: 5.135

7.  Time-course of Changes in Activation Among Facial Nerve Injury: A Functional Imaging Study.

Authors:  Fu-Long Xiao; Pei-Yi Gao; Bin-Bin Sui; Hong Wan; Yan Lin; Jing Xue; Jian Zhou; Tian-Yi Qian; Shiwei Wang; Dezhi Li; Song Liu
Journal:  Medicine (Baltimore)       Date:  2015-10       Impact factor: 1.817

  7 in total

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