Comparative sensitivity analysis of muscle activation dynamics R Rockenfeller, M Günther, S Schmitt, T Götz Computational and mathematical methods in medicine 2015 (1), 585409, 2015 | 56 | 2015 |
Modeling dengue data from Semarang, Indonesia T Götz, N Altmeier, W Bock, R Rockenfeller, KP Wijaya Ecological complexity 30, 57-62, 2017 | 43 | 2017 |
Lumbar spinal ligament characteristics extracted from stepwise reduction experiments allow for preciser modeling than literature data N Damm, R Rockenfeller, K Gruber Biomechanics and Modeling in Mechanobiology 19, 893-910, 2020 | 35 | 2020 |
Inter-filament spacing mediates calcium binding to troponin: a simple geometric-mechanistic model explains the shift of force-length maxima with muscle activation R Rockenfeller, M Günther Journal of theoretical biology 454, 240-252, 2018 | 28 | 2018 |
How to model a muscle’s active force–length relation: a comparative study R Rockenfeller, M Günther Computer Methods in Applied Mechanics and Engineering 313, 321-336, 2017 | 24 | 2017 |
Hill equation and Hatze’s muscle activation dynamics complement each other: enhanced pharmacological and physiological interpretability of modelled activity-pCa curves R Rockenfeller, M Günther Journal of Theoretical Biology 431, 11-24, 2017 | 23 | 2017 |
Extracting low-velocity concentric and eccentric dynamic muscle properties from isometric contraction experiments R Rockenfeller, M Günther Mathematical biosciences 278, 77-93, 2016 | 23 | 2016 |
Exhaustion of skeletal muscle fibers within seconds: incorporating phosphate kinetics into a hill-type model R Rockenfeller, M Günther, N Stutzig, DFB Haeufle, T Siebert, S Schmitt, ... Frontiers in Physiology 11, 306, 2020 | 18 | 2020 |
Load distribution in the lumbar spine during modeled compression depends on lordosis A Müller, R Rockenfeller, N Damm, M Kosterhon, SR Kantelhardt, ... Frontiers in Bioengineering and Biotechnology 9, 661258, 2021 | 16 | 2021 |
Muscle active force-length curve explained by an electrophysical model of interfilament spacing R Rockenfeller, M Günther, SL Hooper Biophysical Journal 121 (10), 1823-1855, 2022 | 15 | 2022 |
Optimization problems in epidemiology, biomechanics & medicine T Götz, R Rockenfeller, KP Wijaya International Journal of Advances in Engineering Sciences and Applied …, 2015 | 12 | 2015 |
The impact of travelling on the COVID-19 infection cases in Germany M Schäfer, KP Wijaya, R Rockenfeller, T Götz BMC Infectious Diseases 22 (1), 455, 2022 | 11 | 2022 |
Rules of nature’s formula run: Muscle mechanics during late stance is the key to explaining maximum running speed M Günther, R Rockenfeller, T Weihmann, DFB Haeufle, T Götz, S Schmitt Journal of theoretical biology 523, 110714, 2021 | 11 | 2021 |
Optimal Control of Isometric Muscle Dynamics. R Rockenfeller, T Götz Journal of Mathematical & Fundamental Sciences 47 (1), 2015 | 9 | 2015 |
Food sharing and time budgeting in predator-prey interaction KP Wijaya, JP Chavez, R Pochampalli, R Rockenfeller, D Aldila, T Goetz, ... Communications in Nonlinear Science and Numerical Simulation 97, 105757, 2021 | 8 | 2021 |
Augmenting the Cobb angle: Three-dimensional analysis of whole spine shapes using Bézier curves R Rockenfeller, A Müller Computer Methods and Programs in Biomedicine 225, 107075, 2022 | 6 | 2022 |
Muscle-driven and torque-driven centrodes during modeled flexion of individual lumbar spines are disparate R Rockenfeller, A Müller, N Damm, M Kosterhon, SR Kantelhardt, R Frank, ... Biomechanics and modeling in mechanobiology 20, 267-279, 2021 | 6 | 2021 |
Parameter estimation and experimental design for hill-type muscles: Impulses from optimization-based modeling R Rockenfeller, JL Herold, T Götz Mathematical biosciences 327, 108432, 2020 | 6 | 2020 |
Is the harm-to-benefit ratio a key criterion in vaccine approval? F Mörl, M Günther, R Rockenfeller Frontiers in Medicine 9, 879120, 2022 | 5 | 2022 |
On the application of mathematical methods in Hill-type muscle modeling: stability, sensitivity and optimal control R Rockenfeller | 5 | 2016 |