Related Experiment Video
Updated: Feb 16, 2026

A Preterm Rat Model for Pain Studies
Published on: February 9, 2024
Early Procedural Pain Is Associated with Regionally-Specific Alterations in Thalamic Development in Preterm Neonates
Emma G Duerden1, Ruth E Grunau2,3, Ting Guo1
1Department of Paediatrics, The Hospital for Sick Children, Toronto, Ontario M5G 1X8, Canada.
Insights
Early procedural pain in very preterm infants alters thalamic development, impacting somatosensory processing and long-term cognitive and motor skills. This highlights a sensitive period for neonatal brain vulnerability to pain.
Area of Science:
- Neuroscience
- Developmental Biology
- Neonatology
Background:
- Very preterm neonates undergo numerous invasive procedures.
- Neonatal procedural pain is linked to altered brain development, but lacks temporal and anatomical specificity.
- Pain modulatory systems are immature in preterm infants, suggesting a vulnerable developmental window.
Purpose of the Study:
- To investigate the association between early procedural pain exposure and thalamic development in very preterm neonates.
- To determine if early pain predicts changes in thalamic volume, metabolism, and white-matter pathways.
- To link thalamic development to cognitive and motor outcomes at 3 years corrected age.
Main Methods:
- Prospective cohort study of 155 very preterm neonates (24-32 weeks' gestation).
- Two MRIs (structural, metabolic, diffusion) at median postmenstrual ages 32 and 40 weeks.
- Detailed clinical data collection and cognitive/motor assessments at 3 years corrected age.
Main Results:
- Early pain was associated with slower thalamic growth, particularly in extremely preterm neonates.
- Pain-related volume losses were localized to somatosensory thalamic regions.
- Early pain correlated with decreased thalamic metabolism (NAA/Cho) and altered thalamocortical pathways, impacting later neurodevelopmental outcomes.
Conclusions:
- Early procedural pain disrupts thalamic development in a sensitive period, affecting somatosensory processing.
- Thalamic growth is crucial for cognitive and motor outcomes in preterm infants.
- The thalamus plays a key role in the link between neonatal pain and adverse neurodevelopmental outcomes.
Abstract:
Very preterm human neonates are exposed to numerous invasive procedures as part of life-saving care. Evidence suggests that repetitive neonatal procedural pain precedes long-term alterations in brain development. However, to date the link between pain and brain development has limited temporal and anatomic specificity. We hypothesized that early exposure to painful stimuli during a period of rapid brain development, before pain modulatory systems reach maturity, will predict pronounced changes in thalamic development, and thereby cognitive and motor function. In a prospective cohort study, 155 very preterm neonates (82 males, 73 females) born 24-32 weeks' gestation underwent two MRIs at median postmenstrual ages 32 and 40 weeks that included structural, metabolic, and diffusion imaging. Detailed day-by-day clinical data were collected. Cognitive and motor abilities were assessed at 3 years, corrected age. The association of early (skin breaks, birth-Scan 1) and late pain (skin breaks, Scans 1-2) with thalamic volumes and N-acetylaspartate (NAA)/choline (Cho), and fractional anisotropy of white-matter pathways was assessed. Early pain was associated with slower thalamic macrostructural growth, most pronounced in extremely premature neonates. Deformation-based morphometry analyses confirmed early pain-related volume losses were localized to somatosensory regions. In extremely preterm neonates early pain was associated with decreased thalamic NAA/Cho and microstructural alterations in thalamocortical pathways. Thalamic growth was in turn related to cognitive and motor outcomes. We observed regionally-specific alterations in the lateral thalamus and thalamocortical pathways in extremely preterm neonates exposed to more procedural pain. Findings suggest a sensitive period leading to lasting alterations in somatosensory-system development.SIGNIFICANCE STATEMENT Early exposure to repetitive procedural pain in very preterm neonates may disrupt the development of regions involved in somatosensory processing, leading to poor functional outcomes. We demonstrate that early pain is associated with thalamic volume loss in the territory of the somatosensory thalamus and is accompanied by disruptions thalamic metabolic growth and thalamocortical pathway maturation, particularly in extremely preterm neonates. Thalamic growth was associated with cognitive and motor outcome at 3 years corrected age. Findings provide evidence for a developmentally sensitive period whereby subcortical structures in young neonates may be most vulnerable to procedural pain. Furthermore, results suggest that the thalamus may play a key role underlying the association between neonatal pain and poor neurodevelopmental outcomes in these high-risk neonates.
Related Concept Videos
Analgesia and Pain Management
Local Anesthetics: Clinical Application as Epidural Anesthesia
Since epidural anesthetics can be infused through an epidural catheter, all types of drugs, including short-acting ones, can be administered. Chloroprocaine and lidocaine are examples of short and long-duration anesthetics, respectively. Bupivacaine...

