J Korean Acad Rehabil Med.  2003 Jun;27(3):340-343.

Evidence of Microstructural Abnormality on Descending Motor Pathway in Cerebral Plasied Children with Periventricular Leukomalacia: Diffusion Tensor MRI Study

Affiliations
  • 1Department of Physical Medicine & Rehabilitation, Daegu Catholic University College of Medicine, Korea.
  • 2Department of Physical Medicine & Rehabilitation, Yeungnam University College of Medicine, Korea. smseven@hanmail.net
  • 3Department of Diagnostic Radiology, Yeungnam University College of Medicine, Korea.

Abstract


OBJECTIVE
Using diffusion tensor MRI (DTI), to investigate the microstructural abnormality of corticospinal tract in the cerebral palsied children with periventricular leukomalacia on conventional MRI and to recognize the clinical usefulness of DTI. METHOD: Seven patients were studied. DTI was peformed using 1.5T MR scanner (Vision Plus, Siemens, Erlangen, Germany) and fractional anisotropies of corona radiata, posterior limbs of internal capsules, and cerebral peduncles of midbrain in both hemisphere were calculated. RESULTS: The fractional anisotropy was significantly decreased in all corona radiata, posterior limbs of internal capsules, cerebral peduncles of midbrain in six patients except one hemiplegic patient, compared with that of control group. In in the hemiplegic patient, the fractional anisotropy was reduced only in affected hemisphere. In addition, the fractional anisotropy tended to be also increased as gross motor function measure (GMFM) score was increased. CONCLUSION: We believe that DTI may be efficient in evaluating microstructural abnormality on the motor pathway of brain and helpful in providing prognosis of clinical findings in cerebral palsied children with periventricular leukomalacia.

Keyword

Periventricular leukomalacia; Cerebral palsy; Diffusion tensor MRI; Microstructural abnormalities

MeSH Terms

Anisotropy
Brain
Cerebral Palsy
Child*
Diffusion*
Extremities
Humans
Infant, Newborn
Internal Capsule
Leukomalacia, Periventricular*
Magnetic Resonance Imaging*
Mesencephalon
Prognosis
Pyramidal Tracts
Tegmentum Mesencephali
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