Unified Python/CLI time-series decomposition library with native acceleration, multivariate workflows, and machine-readable outputs.
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Updated
Jul 25, 2026 - Jupyter Notebook
Unified Python/CLI time-series decomposition library with native acceleration, multivariate workflows, and machine-readable outputs.
A python package to analyze the matrix fiber orientation and intensity around cells in fiber matrices (as a proxy for cellular forces).
Python package to infer tensions from 2D microscopy images of embryos and tissues
Finite Element Analysis to predict cranio-facial bone remodeling in response to tongue and jaw pressures over long periods of time.
Measure per-fiber mechanical tension in 3D ECMs from confocal line scans using Fiber Tension Microscopy (FTM).
Cephalic furrow project repository
A collection of manuals for the software tools used in mechanosensitive ion channel research, single-molecule imaging, and cell biology
Mechanogenomic virtual-cell model linking substrate stiffness, nuclear mechanotransduction, YAP/TAZ activity, and fibrosis-associated transcriptional trajectories.
Modular pipeline combining DECODE localization, MAGIK tracking, and ROI-based calcium analysis
Python code created for the Pathak lab to help analyze TIRF recordings of PIEZO1.
A Python-based application for analyzing PIEZO1 protein distribution and membrane dynamics using TIRF microscopy data.
Automated 3D morphometric pipeline to quantify nuclear hypertrophy in Cdh2-deficient zebrafish embryos using Python and Streamlit.
Python pipeline for analyzing PIEZO1 protein localization and cell edge dynamics using fluorescence microscopy data.
GPU-native, fine-grained mechanistic simulator of single-cell mechanobiology — every filament, motor, adhesion, and cross-link is an explicit particle, not a lumped model. 177k LOC, validation-first, literature-anchored.
GUI application for analyzing the relationship between cell-membrane curvature and PIEZO1 protein locations from fluorescence microscope recordings
Traceable reduced-order Python framework for multiscale knee mechanobiology, uncertainty propagation, validation maturity, reproducible benchmarks, and a research dashboard—explicitly not a clinical model.
Bio-Resonant Restoration - Epigenetic Memory Reactivation via Piezoelectric Resonance: A Mechanistic Framework for Cellular Restoration
Mechanotransduction-resolved multiscale model of bone adaptation (MATLAB). Load enters as force; strain is a regulated output. Eight held-out observations recovered, including Frost's mechanostat set point emerging at 762 microstrain.
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