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20212024
most citedPerspectives on physics-based one-dimensional modeling of lung physiology

1 citations · 3 across the 7 of their papers we have counts for

collaborators

7 papers

physics.bio-ph20241 cited

Perspectives on physics-based one-dimensional modeling of lung physiology

Aranyak Chakravarty, Debjit Kundu, Mahesh V. Panchagnula +2

The need to understand how infection spreads to the deep lung was acutely realized during the Severe Acute Respiratory Syndrome Coronavirus-2 (SARS-CoV-2) pandemic. The challenge o…

q-bio.NC2024

Neurological disorders leading to mechanical dysfunction of the esophagus: an emergent behavior of a neuromechanical dynamical system

Guy Elisha, Sourav Halder, Xinyi Liu +4

An understanding how neurological disorders lead to mechanical dysfunction of the esophagus requires knowledge of the neural circuit of the enteric nervous system. Historically, th…

physics.bio-ph2024

Direct and retrograde signal propagation in unidirectionally coupled Wilson-Cowan oscillators

Guy Elisha, Richard Gast, Sourav Halder +4

Certain biological systems exhibit both direct and retrograde propagating wave signals, despite unidirectional neural coupling. However, there is no model to explain this. Therefor…

math.NA2024

A unified constraint formulation of immersed body techniques for coupled fluid-solid motion: continuous equations and numerical algorithms

Amneet Pal Singh Bhalla, Neelesh A. Patankar

Numerical simulation of moving immersed solid bodies in fluids is now practiced routinely following pioneering work of Peskin and co-workers on immersed boundary method (IBM), Glow…

q-bio.TO20231 cited

The physical origin of aneurysm growth, dissection, and rupture

Tom Y. Zhao, Jin-Tae Kim, Min Cho +3

Rupture of aortic aneurysms is by far the most fatal heart disease, with a mortality rate exceeding 80%. There are no reliable clinical protocols to predict growth, dissection, and…

physics.flu-dyn2021

Peristaltic regimes in esophageal transport

Guy Elisha, Shashank Acharya, Sourav Halder +5

A FLIP device gives cross-sectional area along the length of the esophagus and one pressure measurement, both as a function of time. Deducing mechanical properties of the esophagus…