191 to 200 of 376 Results
Mar 14, 2024 -
Replication Code for: Uncertainty Quantification and Propagation in Surrogate-based Bayesian Inference
Unknown - 1.3 KB -
MD5: a12adfade7defb9e27d4d077561a8e87
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Mar 14, 2024 -
Replication Code for: Uncertainty Quantification and Propagation in Surrogate-based Bayesian Inference
Unknown - 1.2 KB -
MD5: c3b2e8a3f5f4f354fe1b4cb5d74b3b9a
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Mar 14, 2024 -
Replication Code for: Uncertainty Quantification and Propagation in Surrogate-based Bayesian Inference
Unknown - 1.3 KB -
MD5: 3bcadbf51696fe0c049265ea4c6f1e76
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Mar 14, 2024 -
Replication Code for: Uncertainty Quantification and Propagation in Surrogate-based Bayesian Inference
R Syntax - 400 B -
MD5: 94ab6e3d4cddb7df65fe8d3ee5718a4f
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Mar 14, 2024 -
Replication Code for: Uncertainty Quantification and Propagation in Surrogate-based Bayesian Inference
R Syntax - 7.3 KB -
MD5: 4875bca50c00ab9e317e31af55794020
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Mar 13, 2024
SimTech Project PN 2-7 "Data-integrated training of surrogate models for uncertainty quantification and diagnostics of complex biological systems models" |
Dec 15, 2023 - PN 2-3B
Santana Chacon, Pablo Filipe; Hammer, Maria; Wochner, Isabell; Walter, Johannes R.; Schmitt, Syn, 2023, "Replication Data for: A physiologically enhanced muscle spindle model: using a Hill-type model for extrafusal fibers as template for intrafusal fibers", https://doi.org/10.18419/DARUS-3796, DaRUS, V1
This code/data allows you reproduce the results of the paper: "A physiologically enhanced muscle spindle model: using a Hill-type model for extrafusal fibers as template for intrafusal fibers" by P. F. S. Chacon, M. Hammer, I. Wochner, J. R. Walter and S. Schmitt. Always cite the paper together with this dataset because this dataset is not self-exp... |
Gzip Archive - 192.7 MB -
MD5: d462b2754c5b4526ff9c2d3310cf70aa
Code for structurally physiological Hill-type model of the muscle spindle. Please read ReadMe to find a description how to use the model and reproduce the results of the paper. |
Markdown Text - 2.4 KB -
MD5: f0f8fd6035ca53c0fc1541d1eed5ee8a
This file describes how to use the model. Please read it to find out how to reproduce the results from the paper. |
Nov 9, 2023
Open-Source structurally physiological Hill-type model of the muscle spindle for forward-dynamic simulations in biophysics and biomechanics. |
