Related Experiment Video
Updated: Jun 23, 2026

Functional Near Infrared Spectroscopy of the Sensory and Motor Brain Regions with Simultaneous Kinematic and EMG Monitoring During Motor Tasks
Published on: December 5, 2014
Sensory and motor deficits in children with cerebral palsy born preterm correlate with diffusion tensor imaging
Alexander H Hoon1, Elaine E Stashinko, Lidia M Nagae
1Department of Neurology and Developmental Medicine, Kennedy Krieger Institute, Baltimore, MD 21205, USA. hoon@kennedykrieger.org
Insights
Diffusion tensor imaging (DTI) reveals that white matter injury in preterm children with cerebral palsy (CP) is linked to both thalamocortical and corticospinal tract damage, impacting sensorimotor function.
Area of Science:
- Neuroscience
- Pediatric Neurology
- Medical Imaging
Background:
- Cerebral palsy (CP) is a common neurological disorder in preterm infants, often associated with white matter injury.
- Diffusion tensor imaging (DTI) is a key neuroimaging technique for assessing white matter microstructure.
Purpose of the Study:
- To investigate the relationship between DTI-identified injury in thalamocortical (posterior thalamic radiation) and corticospinal tracts.
- To determine how these white matter injuries correlate with sensorimotor function in preterm children with CP.
Main Methods:
- A case-control study included 28 preterm children with CP and 35 healthy term-born controls.
- Two-dimensional DTI color maps were used to evaluate 26 white matter tracts, graded by a masked neuroradiologist.
- Sensorimotor function was assessed using measures of touch, proprioception, strength, and spasticity.
Main Results:
- All children with CP exhibited periventricular white matter injury on MRI.
- DTI showed more severe injury in the posterior thalamic radiation pathways compared to corticospinal tracts.
- Posterior thalamic radiation injury correlated with poorer touch, proprioception, and motor function, while corticospinal tract injury did not.
Conclusions:
- CP in preterm children involves damage to both thalamocortical and corticospinal pathways.
- Thalamocortical pathway integrity is significantly associated with sensorimotor outcomes in this population.
Aim:
Cerebral palsy (CP) is frequently linked to white matter injury in children born preterm. Diffusion tensor imaging (DTI) is a powerful technique providing precise identification of white matter microstructure. We investigated the relationship between DTI-observed thalamocortical (posterior thalamic radiation) injury, motor (corticospinal tract) injury, and sensorimotor function.
Method:
Twenty-eight children born preterm (16 males, 12 females; mean age 5y 10mo, SD 2y 6mo, range 16mo-13y; mean gestational age at birth 28wks, SD 2.7wks, range 23-34wks) were included in this case-control study. Twenty-one children had spastic diplegia, four had spastic quadriplegia, two had hemiplegia, and one had ataxic/hypotonic CP; 15 of the participants walked independently. Normative comparison data were obtained from 35 healthy age-matched children born at term (19 males, 16 females; mean age 5y 9mo, SD 4y 4mo, range 15mo-15y). Two-dimensional DTI color maps were created to evaluate 26 central white matter tracts, which were graded by a neuroradiologist masked to clinical status. Quantitative measures of touch, proprioception, strength (dynamometer), and spasticity (modified Ashworth scale) were obtained from a subset of participants.
Results:
All 28 participants with CP had periventricular white-matter injury on magnetic resonance imaging. Using DTI color maps, there was more severe injury in the posterior thalamic radiation pathways than in the descending corticospinal tracts. Posterior thalamic radiation injury correlated with reduced contralateral touch threshold, proprioception, and motor severity, whereas corticospinal tract injury did not correlate with motor or sensory outcome measures.
Interpretation:
These findings extend previous research demonstrating that CP in preterm children reflects disruption of thalamocortical connections as well as descending corticospinal pathways.
Related Concept Videos
Overview of Somatic Sensory Pathways
The somatosensory system is divided into three main pathways: the dorsal (or posterior) column-medial lemniscus, spinothalamic (or anterolateral), and spinocerebellar pathways.
The dorsal...
Major Somatic Sensory Pathways

