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◆ International journal of molecular sciences2026-07-23

Autonomic Nervous System Function and Sensory Sensitivity in 12-Month-Old Infants with the FMR1 Premutation.

Amelia Morton, Holley Arnold, Lisa Hamrick, Abigail Chase, Stacey Cobb, Jane Roberts

原始摘要(英文原文)· Original abstract
The fragile X premutation (FXpm) is a relatively common condition caused by an expansion of 55-200 cytosine-guanine-guanine (CGG) repeats in the fragile X messenger ribonucleoprotein 1 (FMR1) gene. Previous studies have identified sensory processing challenges in children with the FXpm and reduced autonomic regulation in FXpm infants; no research has examined the relationship between autonomic nervous system (ANS) functioning or molecular variables and sensory responsiveness during infancy. This study examined parent-reported sensory responsiveness and its association with baseline respiratory sinus arrhythmia (RSA), interbeat interval (IBI), and CGG repeat length in 12-month-old infants with the FXpm (n = 35) and neurotypical (NT) controls (n = 55). Results indicated no significant differences in hyporesponsive or hyperresponsive sensory behaviors and no significant associations between baseline RSA or IBI and sensory responsiveness in either group. Within the FXpm group, however, greater CGG repeat length was associated with lower hyperresponsive sensory scores. These findings suggest that sensory processing differences may not be behaviorally evident at 12 months of age despite the presence of biological variability associated with the premutation. The study contributes to the emerging literature on early FXpm development and highlights the importance of examining genetic and physiological factors that may precede later-emerging behavioral phenotypes.
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Autonomic Nervous System Function and Sensory Sensitivity in 12-Month-Old Infants with the FMR1 Premutation. — 科研速览 Science Skim