Ilaria Carannante: Beyond pairwise connectivity: topological data analysis from striatal microcircuits to whole-brain connectomes
Time: Tue 2026-09-15 10.15 - 11.15
Location: KTH 3418, Lindstedtsvägen 25 and Zoom
Video link: https://kth-se.zoom.us/j/65583358144?pwd=us6mdDtBgkEdZefvgbZPBWNujl3YuJ.1
Participating: Ilaria Carannante (KTH)
Abstract.
The brain can naturally be modelled as a graph: neurons (or brain regions) are the vertices, and the connections between them are the edges. However, conventional connectivity analysis often focuses only on pairwise interactions, overlooking higher-order structures that may be important for understanding network function and disease stages.
In this seminar, I first present an in silico model of the striatal microcircuit1, in which the connectivity is generated from reconstructed single-neuron morphologies, and higher order structure is captured by directed cliques. We analysed both this healthy network and its counterpart in Parkinson’s disease.
I then describe ongoing work that pushes this analysis further, examining for example how neurons change their role within cliques and quantifying their organization using measures such as entropy.
Finally, I focus on my main postdoctoral project, concerning human whole-brain structural connectomes reconstructed from diffusion MRI tractography. Here we aim to determine whether topological representations of white-matter networks can reveal distributed, disease-specific alterations that conventional connectivity measures may miss.
1 The striatum is a deep-brain nucleus central to movement, and one of the regions most affected by Parkinson’s disease.
