1 to 10 of 21 Results
Jul 29, 2026
Schmitt, Syn; Chacon, Pablo; Eppler, Jochen; Günther, Michael; Hammer, Maria; Lerge, Patrick; Riede, Julia; Walter, Johannes; Weinhold, Emelie; Wochner, Isabell, 2026, "demoa-base: a biophysics simulator for muscle-driven motion", https://doi.org/10.18419/DARUS-2550, DaRUS, V8
For more information, such as installation, requirements and user guide, please see the demoa manual. The development of this package was supported by “Deutsche Forschungsgemeinschaft” (DFG, German Research Foundation) under Germany’s Excellence Strategy - EXC 2075 - 390740016. |
Jul 29, 2026 -
demoa-base: a biophysics simulator for muscle-driven motion
Gzip Archive - 45.5 MB -
MD5: 3fd19ddfeb2c714e701e4236e01a349c
Code source including descriptions for installation, dependencies and examples |
Jul 29, 2026 -
demoa-base: a biophysics simulator for muscle-driven motion
Adobe PDF - 871.3 KB -
MD5: 5e98e216345e32ad5d8877e68f8800fb
Manual file extracted from the code source |
Aug 27, 2025
Santana Chacon, Pablo Filipe; Wochner, Isabell; Hammer, Maria; Schmitt, Syn, 2025, "arm26 Version for: Closed-Loop Coupling of Both Physiological Spindle Model and Spinal Pathways for Sensorimotor Control of Human Center-Out Reaching", https://doi.org/10.18419/DARUS-4765, DaRUS, V1
Version of the arm26 model (https://doi.org/10.18419/DARUS-2871) used in the study 'Closed-loop coupling of both physiological spindle model and spinal pathways for sensorimotor control of human center-out reaching', including additional scripts to run with python, muscle spindle module and NEST simulator. The file contains an archive including all... |
Compressed Archive - 16.6 MB -
MD5: 94f39ff91209218821aa599e060b1c00
Contains all files for the model, including the technical description and a readme file how to use/run the model. |
Markdown Text - 6.8 KB -
MD5: c959d18a5780a0464cec5e7d4d218f79
This file describes how to install and use the model and how to run the scripts. |
Adobe PDF - 2.1 MB -
MD5: d2898df7ed2494f15f85c9e1de996557
Supplementary material describing the arm26 model. |
Jul 24, 2025
Hammer, Maria; Riede, Julia Maria; Meszaros-Beller, Laura; Schmitt, Syn, 2022, "gspine: A Human Spine Model Built Using Literature Data", https://doi.org/10.18419/DARUS-2814, DaRUS, V5
A fully articulating human spine model parametrised using generic literature data for the geometry of the skeleton including attachment points for ligaments and muscles. The model is prepared to run muscle-driven simulations using a simple biological motor control model. The file contains an archive including all relevant data to run the simulation... |
Jul 24, 2025 -
gspine: A Human Spine Model Built Using Literature Data
TAR Archive - 175.7 KB -
MD5: 4d54aa0e8a52e5d94949744cfd3c8c21
Generic human spine model, ready for demoa version 3.2 |
Jun 3, 2025
Walter, Johannes R.; Wochner, Isabell; Jacob, Marc; Stollenmaier, Katrin; Lerge, Patrick; Schmitt, Syn, 2022, "allmin: A Reduced Human All-Body Model", https://doi.org/10.18419/DARUS-2982, DaRUS, V3
A reduced all-body model parametrised using generic literature data for the geometry of the skeleton including attachment points for ligaments and muscles. This allmin model consists of a musculoskeletal model of the human body with 20 degrees of freedom actuated by 36 muscles. The model is prepared to run muscle-driven simulation. The file contain... |
