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Variability in sensory processing and evoked potentials in Rett syndrome
Medrxiv : the Preprint Server for Health Sciences
|July 17, 2026
Summary
Rett syndrome (RTT) involves atypical sensory processing due to neural timing variability. Reduced inter-trial phase coherence (ITPC) in RTT correlates with sensory issues and symptom severity, suggesting ITPC as a biomarker.
Area of Science:
- Neuroscience
- Genetics
- Developmental Biology
Background:
- Rett syndrome (RTT) is a rare neurodevelopmental disorder linked to MECP2 gene variants.
- Key RTT features include cognitive, motor, and autonomic impairments, with atypical sensory processing being a core yet poorly understood aspect.
- Sensory processing in RTT presents with co-occurring hypo- and hyper-responsivity, and evoked potentials (EPs) show delayed responses, but underlying mechanisms are unclear.
Purpose of the Study:
- To investigate the role of neural response timing variability in RTT's atypical sensory processing.
- To assess inter-trial phase coherence (ITPC) as a potential functional biomarker for sensory impairments in RTT.
- To explore the relationship between ITPC, EP amplitudes, and caregiver-reported sensory responsivity in individuals with RTT.
Main Methods:
- Caregiver-reported sensory responsivity was characterized in 32 individuals with RTT and 28 controls.
- Evoked potentials (EPs) were recorded during passive visual and auditory stimulation.
- Inter-trial phase coherence (ITPC) was computed to quantify neural response consistency across trials.
Main Results:
- Both hypo- and hyper-responsivity were elevated and positively correlated in individuals with RTT.
- ITPC was significantly reduced in RTT across visual and auditory modalities, correlating with reduced EP amplitudes.
- Reduced visual ITPC was associated with increased visual responsivity and greater behavioral symptom severity in RTT.
Conclusions:
- Increased neural response timing variability, as measured by ITPC, may underlie reduced EPs and atypical sensory responsivity in RTT.
- ITPC shows promise as a functional biomarker for sensory processing variability in RTT.
- Decreased temporal precision of neural activity could unify the understanding of sensory dysfunction in RTT and other neurodevelopmental disorders.

