activity
20242026
most citedTowards principles of brain network organization and function

1 citations · 1 across the 5 of their papers we have counts for

collaborators

6 papers

q-bio.NC2026

Activity-dependent epidemic spreading on multiscale brain networks predicts Alzheimer's disease progression

Christoffer G. Alexandersen, Suman S. Kulkarni, Jessica T. Davis +3

Neurodegenerative diseases can be viewed as spreading processes on brain networks, in which pathological proteins propagate between anatomically connected brain regions. Mathematic…

q-bio.NC2026

Quantifying the cost of network computations to unpack structure-function relationships in the brain

Suman S. Kulkarni, Jason Z. Kim, Panagiotis Fotiadis +2

The brain supports computations through coordinated patterns of activity on an underlying network. These networks---from microscale navigational circuits in insects to macroscale b…

cond-mat.soft2026

Topological and morphological signatures of disorder in a self-assembled, soft matter sponge network

Xueyang Feng, Suman S. Kulkarni, Michael S. Dimitriyev +4

Many soft matter systems exhibit ordered, polycontinuous network morphologies, such as the cubic (double) gyroid or diamond, as well as disordered network morphologies known generi…

physics.soc-ph2025

Predictability and Statistical Memory in Classical Sonatas and Quartets

Linus Chen-Plotkin, Suman S. Kulkarni, Dani S. Bassett

Statistical models and information theory have provided a useful set of tools for studying music from a quantitative perspective. These approaches have been employed to generate co…

physics.soc-ph2025

Ising dynamics on multilayer networks with heterogeneous layers

Suman S. Kulkarni, Christopher W. Lynn, Mason A. Porter +1

Multilayer networks provide a framework to study complex systems with multiple types of interactions, multiple dynamical processes, and/or multiple subsystems. When studying a dyna…

q-bio.NC20241 cited

Towards principles of brain network organization and function

Suman Kulkarni, Dani S. Bassett

The brain is immensely complex, with diverse components and dynamic interactions building upon one another to orchestrate a wide range of functions and behaviors. Understanding pat…