4 papers
Maximum-Entropy Model of Colored Noise in Superdiffusive Axonal Growth
Julian Sutaria, Cristian Staii
We develop a coarse-grained stochastic theory for axonal growth on micropatterned substrates using the Shannon--Jaynes maximum entropy principle. Starting from a Langevin descripti…
Stochastic Models of Neuronal Growth
Cristian Staii
Neuronal circuits arise as axons and dendrites extend, navigate, and connect to target cells. Axonal growth, in particular, integrates deterministic guidance from substrate mechani…
Quantum Transport and Molecular Sensing in Reduced Graphene Oxide Measured with Scanning Probe Microscopy
Julian Sutaria, Cristian Staii
We report combined scanning probe microscopy and electrical measurements to investigate local electronic transport in reduced graphene oxide (rGO) devices. We demonstrate that quan…
Feedback-Driven Dynamical Model for Axonal Extension on Parallel Micropatterns
Kyle Cheng, Udathari Kumarasinghe, Cristian Staii
Despite significant advances in understanding neuronal development, a fully quantitative framework that integrates intracellular mechanisms with environmental cues during axonal gr…