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Robert Rockenfeller

Dr. Robert Rockenfeller

Mathematisches Institut, Universität Koblenz

Universitätsstr. 1, Koblenz, Raum: G 135

  • 0261/2872307
Publikationen
Ergebnisse pro Seite:  50

Rockenfeller, Robert; Günther, Michael; Hooper, Scott L.

Muscle active force-length curve explained by an electrophysical model of interfilament spacing

Biophysical Journal. Bd. 121. H. 10. Cambridge, MA: Cell Press 2022 S. 1823 - 1855



Rockenfeller, Robert; Müller, Andreas

Three-dimensional analysis of individual whole spine posture

The Spine Journal. Bd. under review. 2022


Günther, Michael; Mörl, Falk; Rockenfeller, Robert

Where have the dead gone?

Frontiers in Medicine. Bd. 9. Lausanne: Frontiers Research Foundation 2022 S. 837287 (4 pages)


Bock, Wolfgang; Jayathunga, Yashika; Götz, Thomas et al.

Are the upper bounds for new SARS-CoV-2 infections in Germany useful?

Computational and Mathematical Biophysics. Bd. 9. H. 1. Berlin: De Gruyter 2021 S. 242 - 260


Rockenfeller, Robert; Hammer, Maria; Riede, Julia M. et al.

Intuitive assessment of modeled lumbar spinal motion by clustering and visualization of finite helical axes

Computers in Biology and Medicine. Bd. 135. Amsterdam: Elsevier 2021 S. 104528 (23 pages)


Rockenfeller, Robert

Kinder-Brettspiele aus mathematischer Sicht - Modellierung und Simulation von '(Erster) Obstgarten' und 'Eins, Vier, Viele'

Stochastik in der Schule. Bd. 41. H. 1. Dortmund: Universität Dortmund 2021 S. 9 - 18


Müller, Andreas; Rockenfeller, Robert; Damm, Nicolas et al.

Load distribution in subject-specific lumbar spine models during compression depends on the lordotic angle

Frontiers in Bioengineering and Biotechnology. Bd. 9. Lausanne: Frontiers Research Foundation 2021 S. 661258 (12 pages)


Götz, Thomas; Mohrmann, Silja; Rockenfeller, Robert et al.

Calculation of a local COVID-19 reproduction number for the northern Rhineland-PalatinateA

Arxiv. 2020


Rockenfeller, Robert; Günther, Michael; Stutzig, Norman et al.

Exhaustion of Skeletal Muscle Fibers Within Seconds: Incorporating Phosphate Kinetics Into a Hill-Type Model

Frontiers in Physiology. Bd. 11. Lausanne: Frontiers Research Foundation 2020 S. 306


Rockenfeller, Robert

How to invert your classroom: Ein Leitfaden zur konkreten Umsetzung video-basierter Hochschullehre (nicht nur) in Mathematik

Neues Handbuch Hochschullehre. Berlin: DZU Verlags- und Medienhaus 2020 S. D 3.38


Damm, Nicolas; Rockenfeller, Robert; Gruber, Karin

Lumbar spinal ligament characteristics extracted from stepwise reduction experiments allow for preciser modeling than literature data

Biomechanics and Modeling in Mechanobiology. Bd. 19. H. 3. Berlin: Springer 2020 S. 893 - 910


Rockenfeller, Robert; Müller, Andreas; Damm, Nicolas et al.

Muscle-driven and torque-driven centrodes during modeled flexion of individual lumbar spines are disparate

Biomechanics and Modeling in Mechanobiology. Bd. 20. H. 1. Berlin: Springer 2020 S. 267 - 279


Rockenfeller, Robert; Mueller, Andreas; Damm, Nicolas et al.

Muscle-driven and torque-driven centrodes during modeled flexion of individual lumbar spines are disparate

BIOMECHANICS AND MODELING IN MECHANOBIOLOGY. 2020


Rockenfeller, Robert; Herold, J.L.; Götz, Thomas

Parameter estimation and experimental design for Hill-type muscles: Impulses from optimization-based modeling

Mathematical Biosciences. Bd. 327. New York, NY: Elsevier 2020 S. 108432 (12 pages)


Osterroth, Andreas; Rockenfeller, Robert; Müller, Philip

Flipped/Inverted Classrooms in Mathematik und Germanistik an der Universität Koblenz-Landau

Koblenzer eLearning Tage. Koblenz. 2018


Rockenfeller, Robert; Günther, Michael

Inter-filament spacing mediates calcium binding to troponin: A simple geometric-mechanistic model explains the shift of force-length maxima with muscle activation

Journal of Theoretical Biology. Bd. 454. Amsterdam: Elsevier 2018 S. 240 - 252


Rockenfeller, Robert; Guenther, Michael; Schmitt, Syn et al.

Corrigendum to “Comparative Sensitivity Analysis of Muscle Activation Dynamics”

Computational and Mathematical Methods in Medicine. Bd. 2017. New York, NY: Hindawi 2017 S. 2


Rockenfeller, Robert; Günther, Michael

Hill equation and Hatze's muscle activation dynamics complement each other: enhanced pharmacological and physiological interpretability of modelled activity-pCa curves

Journal of Theoretical Biology. Bd. 431. Amsterdam: Elsevier 2017 S. 11 - 24


Rockenfeller, Robert; Günther, Michael

How to model a muscle’s active force–length relation: A comparative study

Computer Methods in Applied Mechanics and Engineering. Bd. 313. Amsterdam: Elsevier 2017 S. 321 - 336


Götz, Thomas; Altmeier, Nicole; Bock, Wolfgang et al.

Modeling dengue data from Semarang, Indonesia

Ecological Complexity. Bd. 30. Amsterdam: Elsevier 2017 S. 57 - 62


Goetz, Thomas; Altmeier, Nicole; Bock, Wolfgang et al.

Modeling dengue data from Semarang, Indonesia

ECOLOGICAL COMPLEXITY. Bd. 30. 2017 S. 57 - 62


Rockenfeller, Robert; Günther, Michael

Extracting low-velocity concentric and eccentric dynamic muscle properties from isometric contraction experiments

Mathematical Biosciences. Bd. 278. H. 8. New York, NY: Elsevier 2016 S. 77 - 93



Rockenfeller, Robert; Götz, Thomas; Schmitt, Syn et al.

Comparative Sensitivity Analysis of Muscle Activation Dynamics

Computational and Mathematical Methods in Medicine. H. Article ID 585409. 2015 S. 16


Rockenfeller, Robert; Götz, Thomas

Optimal Control of Isometric Muscle Dynamics

Journal of Mathematical and Fundamental Sciences. Bd. 47. H. 1. Bandung: Institut for Research and Community Services, Institut Teknologi Bandung (ITB) 2015 S. 12 - 30


Götz, Thomas; Rockenfeller, Robert; Wijaya, Karunia Putra

Optimization problems in epidemiology, biomechanics & medicine

International Journal of Advances in Engineering Sciences and Applied Mathematics. Bd. 7. H. 1-2. New Delhi: Springer India 2015 S. 25 - 32


Rockenfeller, Robert

Translationsebenen der Ordnung 32

Kaiserslautern: Technische Universität Kaiserslautern 2011


Götz, Thomas; Bock, Wolfgang; Rockenfeller, Robert et al.

A two-strain SARS-COV-2 model for Germany - Evidence from a Linearization

Arxiv. S. 1 - 11


Rockenfeller, Robert; Guenther, Michael; Schmitt, Syn et al.

Comparing different muscle activation dynamics using sensitivity analysis

arXiv.org. S. 1 - 34