Vedang Narain (vedangnarain)

vedangnarain

Geek Repo

Company:University of Oxford

Home Page:https://nanohub.org/members/222701

Twitter:@VedangNarain

Github PK Tool:Github PK Tool

Vedang Narain's repositories

MicrovesselChaste

Add-on project for Chaste for modelling microvessels.

Language:C++License:NOASSERTIONStargazers:1Issues:0Issues:0

polygraph-project

This is a computational framework to analyze raw biological data generated from a polygraph test for the purpose of making psychophysiological inferences.

Language:PythonStargazers:1Issues:0Issues:0

cancer-immunoediting

This project aims to model the disruptive effects of cytotoxic chemotherapeutic drugs on the immunoediting process.

Language:PythonStargazers:0Issues:0Issues:0

cellular-PCF

This project aims to develop a generalizable computational framework to generate pair correlation functions for self-organizing cellular systems given their position coordinates.

Language:PythonStargazers:0Issues:1Issues:0

enhanced-perfusion-following-exposure-to-radiotherapy

Code used to generate simulations and figures for the paper 'Enhanced perfusion following exposure to radiotherapy: a theoretical investigation' (2023).

Language:C++License:BSD-3-ClauseStargazers:0Issues:0Issues:0

merkel-immunotherapy

A crack at an ODE model of Merkel-cell carcinoma at the IMO Workshop 11.

Language:PythonStargazers:0Issues:0Issues:0

sns-feedback

The objective of the project is to detect and quantify the sympathetic activation of the autonomic nervous system using the visualization of electrodermal activity (EDA) and photoplethysmography (PPG) data obtained from a subject in real-time.

Language:PythonStargazers:0Issues:0Issues:0

spade-oxygenation

An attempt to verify Chaste's diffusion solver with SPADE (Static Polymorphic Algorithms for Differential Equations).

Language:ShellStargazers:0Issues:0Issues:0

transfer-report

Code used to analyse the data and generate the figures featured in my transfer report.

Language:PythonStargazers:0Issues:1Issues:0

vascular-perfusion-poster-2022

Appendices for poster presentation titled 'Modelling the effect of vascular architecture on the outcome of combination therapies'.

Language:PythonStargazers:0Issues:1Issues:0