Reduced Thalamic Volume and Metabolites in Type 1 Diabetes with Polyneuropathy.

Tine M Hansen, Jens B Frøkjær, Dinesh Selvarajah, Janusiya A Muthulingam, Solomon Tesfaye, Anne Juhl, Asbjørn M Drewes, Poul E Jakobsen, Jesper Karmisholt, Birgitte Brock, Christina Brock

Journal: Experimental and clinical endocrinology & diabetes : official journal, German Society of Endocrinology [and] German Diabetes Association 2022;130(5):327-334

PMID: 33524993

Abstract

OBJECTIVE

Thalamus is essential in processing of sensory information. This study explored the associations between thalamic volume and intra-thalamic metabolites and associations to clinical and experimental characteristics of sensory function in adults with diabetic polyneuropathy.

METHODS

48 adults with type 1 diabetes and confirmed distal symmetric peripheral neuropathy (DPSN) and 28 healthy controls participated in a cross-sectional study and underwent a brain magnetic resonance imaging scan. Estimates for thalamic volume were extracted using voxel-based morphometry and intra-thalamic N-acetylaspartate/creatine (NAA/cre) levels were assessed by magnetic resonance spectroscopy. Associations between thalamic volume and clinical measures, quantitative sensory testing and neuropathic phenotype were explored.

RESULTS

In diabetes, reduced gray matter volume was identified including bilateral thalamus (all p≤0.001) in comparison to healthy participants. Thalamic volume estimates were positively associated to intra-thalamic NAA/cre (r=0.4; p=0.006), however not to diabetes duration (p=0.5), severity of DSPN (p=0.7), or presence of pain (p=0.3). Individuals with the lowest thalamic volume had greatest loss of protective sensation (light touch using von Frey-like filaments, p=0.037) and highest pain tolerance to electric stimulation (tetanic stimulation, p=0.008) compared to individuals with the highest thalamic volume.

CONCLUSIONS

In this cohort with type 1 diabetes and severe DSPN, thalamic atrophy was present and associated with reduced NAA/cre, indicating thalamic structural loss and dysfunction. Thalamic atrophy was associated to reduced sensory function involving large fiber neuropathy and sensation to tetanic stimulation that may reflect synaptic transmission. This may ultimately contribute to the current understanding of the pathophysiology behind the perception changes evident in DSPN.

Thieme. All rights reserved.

Address: Mech-Sense, Department of Radiology, Aalborg University Hospital, Aalborg, Denmark.; Department of Clinical Medicine, Aalborg University, Aalborg, Denmark.; Department of Diabetes and Endocrinology, University of Sheffield, Sheffield, United Kingdom.; Department of Clinical Neurophysiology, Aalborg University Hospital, Aalborg, Denmark.; Mech-Sense, Department of Gastroenterology & Hepatology, Aalborg University Hospital, Aalborg, Denmark.; Steno Diabetes Center North Denmark, Aalborg, Denmark.; Department of Endocrinology, Aalborg University Hospital, Aalborg, Denmark.; Steno Diabetes Center Copenhagen, Gentofte, Denmark.

Link outs

Subscription / membership required

Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.