List
Braun, Benedikt J.; Grimm, Bernd; Hanflik, Andrew M.; Marmor, Meir T.; Richter, Peter H.; Sands, Andrew K.; Sivananthan, Sureshan
Finding NEEMO: towards organizing smart digital solutions in orthopaedic trauma surgery Artikel
In: EFORT Open Reviews, Bd. 5, Nr. 7, S. 408–420, 2020, ISSN: 2058-5241.
@article{Braun2020,
title = {Finding NEEMO: towards organizing smart digital solutions in orthopaedic trauma surgery},
author = {Benedikt J. Braun and Bernd Grimm and Andrew M. Hanflik and Meir T. Marmor and Peter H. Richter and Andrew K. Sands and Sureshan Sivananthan},
doi = {10.1302/2058-5241.5.200021},
issn = {2058-5241},
year = {2020},
date = {2020-07-00},
urldate = {2020-07-00},
journal = {EFORT Open Reviews},
volume = {5},
number = {7},
pages = {408--420},
publisher = {Bioscientifica},
abstract = {<jats:p> There are many digital solutions which assist the orthopaedic trauma surgeon. This already broad field is rapidly expanding, making a complete overview of the existing solutions difficult. The AO Foundation has established a task force to address the need for an overview of digital solutions in the field of orthopaedic trauma surgery. Areas of new technology which will help the surgeon gain a greater understanding of these possible solutions are reviewed. We propose a categorization of the current needs in orthopaedic trauma surgery matched with available or potential digital solutions, and provide a narrative overview of this broad topic, including the needs, solutions and basic rules to ensure adequate use in orthopaedic trauma surgery. We seek to make this field more accessible, allowing for technological solutions to be clearly matched to trauma surgeons’ needs. </jats:p><jats:p> Cite this article: EFORT Open Rev 2020;5:408-420. DOI: 10.1302/2058-5241.5.200021 </jats:p>},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Haßler, S.; Ranno, A.; Behr, M.
In: CMAME, Ausg. 369, 2020.
@article{Haßler2020,
title = {Finite-Element Formulation for Advection–Reaction Equations with Change of Variable and Discontinuity Capturing},
author = {S. Haßler and A. Ranno and M. Behr},
editor = {Elsevier},
url = {https://www.sciencedirect.com/science/article/pii/S004578252030356X},
doi = {10.1016/j.cma.2020.113171},
year = {2020},
date = {2020-06-11},
urldate = {2020-06-11},
journal = {CMAME},
issue = {369},
abstract = {We propose a change of variable approach and discontinuity capturing methods to ensure physical constraints for advection–reaction equations discretized by the finite element method. This change of variable confines the concentration below an upper bound in a very natural way. For the non-negativity constraint, we propose to use a discontinuity capturing method defined on the reference element that is combined with an anisotropic crosswind-dissipation operator. This discontinuity capturing cannot completely eliminate negative values but effectively minimizes their occurrence. The proposed methods are applied to different biophysical models and show a good agreement with experimental results for the FDA benchmark blood pump for a physiological red blood cell pore formation model.},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Emamy, Nehzat; Litty, Pascal; Klotz, Thomas; Schulte, Miriam; Röhrle, Oliver
In: IUTAM Symposium on Model Order Reduction of Coupled Systems, Stuttgart, Germany, May 22–25, 2018, S. 177–190, 2020.
@article{Nehyat2020,
title = {POD-DEIM Model Order Reduction for the Monodomain Reaction-Diffusion Sub-Model of the Neuro-Muscular System},
author = {Nehzat Emamy and Pascal Litty and Thomas Klotz and Miriam Schulte and Oliver Röhrle},
doi = {https://doi.org/10.1007/978-3-030-21013-7_13},
year = {2020},
date = {2020-01-01},
urldate = {2020-01-01},
journal = {IUTAM Symposium on Model Order Reduction of Coupled Systems, Stuttgart, Germany, May 22–25, 2018},
pages = {177–190},
publisher = {Springer International Publishing},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Braun, Benedikt J.; Pohlemann, Tim; Herath, Steven C.; Klein, Moritz; Rollmann, Mika F.; Derr, Ralf; Diebels, Stefan; Roland, Michael
In: Arch Appl Mech, Bd. 89, Nr. 11, S. 2351–2360, 2019, ISSN: 1432-0681.
@article{Braun2019,
title = {An individualized simulation model based on continuous, independent, ground force measurements after intramedullary stabilization of a tibia fracture},
author = {Benedikt J. Braun and Tim Pohlemann and Steven C. Herath and Moritz Klein and Mika F. Rollmann and Ralf Derr and Stefan Diebels and Michael Roland},
doi = {10.1007/s00419-019-01582-5},
issn = {1432-0681},
year = {2019},
date = {2019-11-00},
urldate = {2019-11-00},
journal = {Arch Appl Mech},
volume = {89},
number = {11},
pages = {2351--2360},
publisher = {Springer Science and Business Media LLC},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Braun, Benedikt J; Osche, David; Rollmann, Mika; Orth, Marcel; Mörsdorf, Philipp; Histing, Tina; Pohlemann, Tim; Herath, Steven C
In: Injury, Bd. 50, Nr. 7, S. 1329–1332, 2019, ISSN: 0020-1383.
@article{Braun2019b,
title = {Increased therapy demand and impending loss of previous residence status after proximal femur fractures can be determined by continuous gait analysis – A clinical feasibility study},
author = {Benedikt J Braun and David Osche and Mika Rollmann and Marcel Orth and Philipp Mörsdorf and Tina Histing and Tim Pohlemann and Steven C Herath},
doi = {10.1016/j.injury.2019.05.007},
issn = {0020-1383},
year = {2019},
date = {2019-07-00},
urldate = {2019-07-00},
journal = {Injury},
volume = {50},
number = {7},
pages = {1329--1332},
publisher = {Elsevier BV},
keywords = {},
pubstate = {published},
tppubtype = {article}
}