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January 22, 2026eLife3 citationsOpen Access

Modeling and simulation of neocortical micro- and mesocircuitry (Part I, anatomy)

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MRMichael W ReimannSBSirio Bolaños‐PuchetJCJean-Denis Courcol

Key Points

  • To develop a computational model of the primary somatosensory cortex anatomy in juvenile rats, focusing on neuron connectivity.
  • Created a computational model integrating whole-brain scale data
  • Incorporated 4.2 million detailed neurons in a digital brain atlas
  • Analyzed connectivity patterns with a focus on Sst+, PV+, and VIP+ interneurons
  • Evaluated local and interregional connectivity using approximately 14.2 billion synapses
  • Model successfully reproduced targeting by Sst+ neurons
  • Identified the need for additional specificity to accurately represent PV+ and VIP+ interneuron connections
  • Demonstrated interconnected local clusters facilitated by hub neurons in layer 5
  • Model is available for simulation-based studies to the research community

Abstract

The function of the neocortex is fundamentally determined by its repeating microcircuit motif, but also by its rich, interregional connectivity. We present a data-driven computational model of the anatomy of non-barrel primary somatosensory cortex of juvenile rat, integrating whole-brain scale data while providing cellular and subcellular specificity. The model consists of 4.2 million morphologically detailed neurons, placed in a digital brain atlas. They are connected by 14.2 billion synapses, comprising local, mid-range and extrinsic connectivity. We delineated the limits of determining connectivity from neuron morphology and placement, finding that it reproduces targeting by Sst+ neurons, but requires additional specificity to reproduce targeting by PV+ and VIP+ interneurons. Globally, connectivity was characterized by local clusters tied together through hub neurons in layer 5, demonstrating how local and interegional connectivity are complicit, inseparable networks. The model is suitable for simulation-based studies, and the model is made openly available to the community.

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Cite This Study

Reimann et al. (2026) studied this question.

synapsesocial.com/papers/6971be50642b1836717e3018https://doi.org/10.7554/elife.99688.3
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