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Updated: May 10, 2026

Imaging Neural Activity in the Primary Somatosensory Cortex Using Thy1-GCaMP6s Transgenic Mice
Published on: January 7, 2019
SEP-induced activity and its thermographic cortical representation in a murine model
Klaus-Peter Hoffmann1, Roman Ruff, Matthias Kirsch
1Department Medical Engineering and Neuroprosthetics, Fraunhofer Institut für Biomedizinische Technik, St. Ingbert, Germany. klaus.hoffmann@ibmt.fraunhofer.de
Abstract:
This article is a methodical report on the generation of reproducible changes in brain activity in a murine model. Somatosensory evoked potentials (SEP) are used to generate synchronized cortical activity. After electrical stimulation of mice forelimbs, the potentials were recorded with a flexible thin-film polyimide electrode structure directly from the cortex. Every registration included a simultaneous recording from both hemispheres that repeated four times to reproduce and compare the results. The SEPs in the murine model were shown to generate a very stable signal. The latency of the second positive wave (P2 wave) ranged between 16 and 19 ms, and the N1-P2 amplitude ranged between 39 and 48 µV. In addition, the temperature distribution of the cortex was acquired using infrared thermography. Surface cortical temperature changed during electrical stimulation without a clear hemispheric correlation. These initial results could be a step toward a better understanding of the different synchronized cortical activities and basic methods of evaluation of various mathematical algorithms to detect them.

