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Updated: Jun 24, 2026

Real-time Analysis of Gut-brain Neural Communication: Cortex wide Calcium Dynamics in Response to Intestinal Glucose Stimulation
Published on: December 29, 2023
Central processing of gut pain in diabetic patients with gastrointestinal symptoms
Jens Brøndum Frøkjaer1, Eirik Søfteland, Carina Graversen
1Mech-Sense, Aalborg Hospital, Aarhus University Hospital, Aalborg, Denmark. frokjaer@mail.tele.dk
Objective:
To evaluate the brain's responses to painful visceral and somatic stimuli in diabetic patients with gastrointestinal symptoms.
Research Design And Methods:
The sensitivity to electrical esophageal and median nerve stimulations was assessed in 15 healthy volunteers and 14 type 1 diabetic patients with autonomic neuropathy and gastrointestinal symptoms using a euglycemic-hyperinsulinemic clamp. Evoked brain potentials were recorded.
Results:
Patients had reduced sensitivity to esophageal (48%; P < 0.001) and median nerve (80%; P < 0.001) stimulations. They also had increased (8.8%; P = 0.007) and nonreproducible (P = 0.006) latencies of evoked potentials in response to esophageal stimulations, with 26% reduction in amplitude (P = 0.011). No potential differences were seen to median nerve stimulations. In diabetic patients, the topographic location of the first peak in potentials was more central (P < 0.001) and gastrointestinal symptoms correlated with characteristics of brain potentials (P = 0.049).
Conclusions:
This study supports that diabetes induces changes in peripheral visceral nerves as well as in the central nervous system.
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