diff --git a/src/pages/ideas/2026-02-06-compare-actin-filament-compression-between-different-fiber-scale-simulators.md b/src/pages/ideas/2026-02-06-compare-actin-filament-compression-between-different-fiber-scale-simulators.md index 0ab56cf..2f5d126 100644 --- a/src/pages/ideas/2026-02-06-compare-actin-filament-compression-between-different-fiber-scale-simulators.md +++ b/src/pages/ideas/2026-02-06-compare-actin-filament-compression-between-different-fiber-scale-simulators.md @@ -14,7 +14,7 @@ introduction: >- at monomer- and fiber-scales using the [ReaDDy](https://readdy.github.io/) and [Cytosim](https://gitlab.com/f-nedelec/cytosim) simulation engines, respectively, under different compression velocities. To better understand how - these difference we observed may be specific to the choice of simulators, we + the differences we observed may be specific to the choice of simulators, we proposed running an additional comparison between two simulators at fiber scale. @@ -29,9 +29,9 @@ preliminaryFindings: url: https://www.micropublication.org/static/figures/micropub-biology-001347.png caption: an externally linked image resources: - - test-software-tool - simularium - actin-compression-simulation-dataset + - subcellular-model-simulation-and-analysis-pipeline nextSteps: >- - Build a [MEDYAN](https://medyan.org/) model for compression of a single actin filament