Pfenniger, Aloïs

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Zurbuchen, Adrian; Pfenniger, Aloïs; Omari, Sammy; Reichlin, Tobias; Vogel, Rolf; Haeberlin, Andreas (2022). A Robot Mimicking Heart Motions: An Ex-Vivo Test Approach for Cardiac Devices. Cardiovascular Engineering and Technology, 13(2), pp. 207-218. Springer 10.1007/s13239-021-00566-3

Zurbuchen, Adrian; Haeberlin, Andreas; Bereuter, Lukas David; Pfenniger, Aloïs; Bosshard, Simon; Kernen, Micha; Heinisch, Paul Philipp; Fuhrer, Jürg; Vogel, Rolf (2018). Endocardial Energy Harvesting by Electromagnetic Induction. IEEE transactions on biomedical engineering, 65(2), pp. 424-430. Institute of Electrical and Electronics Engineers IEEE 10.1109/TBME.2017.2773568

Zurbuchen, Adrian; Haeberlin, Andreas; Bereuter, Lukas David; Wagner, Joerg; Pfenniger, Aloïs; Omari, Sammy; Schärer, Jakob; Jutzi, Frank; Huber, Christoph; Fuhrer, Jürg; Vogel, Rolf (2017). The Swiss approach for a heartbeat-driven lead- and batteryless pacemaker. Heart rhythm, 14(2), pp. 294-299. Elsevier 10.1016/j.hrthm.2016.10.016

Zurbuchen, Adrian; Haeberlin, Andreas; Pfenniger, Aloïs; Bereuter, Lukas David; Schärer, Jakob; Jutzi, Frank; Huber, Christoph; Fuhrer, Jürg; Vogel, Rolf (2017). Towards Batteryless Cardiac Implantable Electronic Devices – The Swiss Way. IEEE transactions on biomedical circuits and systems, 11(1), pp. 78-86. Institute of Electrical and Electronics Engineers IEEE 10.1109/TBCAS.2016.2580658

Haeberlin, Andreas; Zurbuchen, Adrian; Pfenniger, Aloïs; Fuhrer, Jürg; Vogel, Rolf (2015). [Future cardiac pacemakers – technical visions]. Therapeutische Umschau, 72(8), pp. 529-535. Huber 10.1024/0040-5930/a000711

Zurbuchen, Adrian; Häberlin, Andreas; Bereuter, Lukas David; Wagner, Joerg; Schärer, Jakob; Pfenniger, Aloïs; Huber, Christoph; Fuhrer, Jürg; Vogel, Rolf (10 June 2015). Lead- and batteryless cardiac pacing. Cardiovascular medicine - supplementum, 17(25), pp. 49-50. EMH Swiss Medical Publishers Ltd

Zurbuchen, Adrian; Haeberlin, A.; Schärer, Jakob; Pfenniger, Aloïs; Vogel, Rolf (8 October 2014). Harvesting energy from the heart wall motion – Device weight considerations. Biomedical Engineering / Biomedizinische Technik, 59(s1), p. 227. De Gruyter

Zurbuchen, Adrian; Haeberlin, Andreas; Schärer, Jakob; Wagner, Joerg; Pfenniger, Aloïs; Vandenberghe, Stijn; Huber, Christoph; Fuhrer, Jürg; Vogel, Rolf (September 2014). A batteryless cardiac pacemaker powered by cardiac motion. European Heart Journal, 35(suppl 1), p. 217. Oxford University Press

Zurbuchen, Adrian; Haeberlin, Andreas; Schärer, Jakob; Wagner, Joerg; Pfenniger, Aloïs; Vandenberghe, Stijn; Huber, Christoph (11 June 2014). A batteryless cardiac pacemaker powered by cardiac motion. Cardiovascular medicine - supplementum, 16(23), pp. 12-14. EMH Swiss Medical Publishers Ltd

Radu, Maria D.; Pfenniger, Aloïs; Räber, Lorenz; de Marchi, Stefano F.; Obrist, Dominik; Kelbæk, Henning; Windecker, Stephan; Serruys, Patrick W.; Vogel, Rolf (2014). Flow disturbances in stent-related coronary evaginations: a computational fluid-dynamic simulation study. EuroIntervention, 10(1), pp. 113-123. Europa Digital & Publishing 10.4244/EIJV10I1A18

Pfenniger, Aloïs; Vogel, Rolf; Koch, Volker M; Jonsson, Magnus (2014). Performance analysis of a miniature turbine generator for intracorporeal energy harvesting. Artificial organs, 38(5), E68-E81. Wiley-Blackwell 10.1111/aor.12279

Pfenniger, Aloïs; Stahel, Andreas; Koch, Volker M.; Obrist, Dominik; Vogel, Rolf (2014). Energy harvesting through arterial wall deformation: A FEM approach to fluid–structure interactions and magneto-hydrodynamics. Applied Mathematical Modelling, 38(13), pp. 3325-3338. Elsevier 10.1016/j.apm.2013.11.051

Jonsson, Magnus; Zurbuchen, Adrian; Haeberlin, Andreas; Pfenniger, Aloïs; Vogel, Rolf (2014). Vascular turbine powering a cardiac pacemaker: an in-vivo case study. Experimental & Clinical Cardiology, 20(1), pp. 2000-2003. Canada: Pulsus

Zurbuchen, Adrian; Pfenniger, Aloïs; Omari, Sammy; Vogel, Rolf (19 July 2013). Modelling and Validation of a Mass Imbalance Oscillation Generator to Harvest Heart Motion Energy. Proceeding (802) Modelling and Simulation / 804: Signal and Image Processing - 2013. ACTA Press 10.2316/P.2013.802-038

Zurbuchen, Adrian; Pfenniger, Aloïs; Stahel, Andreas; Stoeck, Christian T; Vandenberghe, S; Koch, Volker M; Vogel, Rolf (2013). Energy harvesting from the beating heart by a mass imbalance oscillation generator. Annals of biomedical engineering, 41(1), pp. 131-141. Cambridge: Springer 10.1007/s10439-012-0623-3

Pfenniger, Aloïs; Obrist, Dominik; Stahel, Andreas; Koch, Volker M.; Vogel, Rolf (2013). Energy harvesting through arterial wall deformation: design considerations for a magneto-hydrodynamic generator. Medical & biological engineering & computing, 51(7), pp. 741-755. Springer-Verlag 10.1007/s11517-012-0989-2

Pfenniger, Aloïs; Jonsson, Magnus; Zurbuchen, Adrian; Koch, Volker M; Vogel, Rolf (2013). Energy harvesting from the cardiovascular system, or how to get a little help from yourself. Annals of biomedical engineering, 41(11), pp. 2248-2263. Springer 10.1007/s10439-013-0887-2

Pfenniger, Aloïs; Wickramarathna, Lalith N.; Vogel, Rolf; Koch, Volker M. (2013). Design and Realization of an Energy Harvester Using Pulsating Arterial Pressure. Medical engineering & physics, 35(9), pp. 1256-1265. Elsevier 10.1016/j.medengphy.2013.01.001

Pfenniger, Aloïs (2013). Intracorporeal Energy Harvesting with a Focus on the Human Cardiovascular System. (Dissertation, ARTORG Center for Biomedical Engineering Research, Faculty of Medicine)

Pfenniger, Aloïs; Koch, Volker; Vogel, Rolf (2011). Human energy harvesting by intravascular turbine generators. In: 6th International conference on Microthechnologies in Medicne and Biology MMB 2011. Lucerne, Switzerland. 4-6 May 2011.

Pfenniger, Aloïs; Koch, Volker; Stahel, Andreas; Vogel, Rolf (2011). Energy harvesting from arterial wall deformation by electro-magneto-hydrodynamics. In: Swiss Society for Biomedical Engineering SSBE 2011 Annual Meeting. Bern, Switzerland. 22-23 August 2011.

Ambrosetti-Giudici, S; Pfenniger, Aloïs; Krenn, MH; Piotrowski, WP; Ferguson, SJ; Burger, J (2009). Surgical instrumentation for the in vivo determination of lumbar spinal segment stiffness and viscoelasticity. Medical engineering & physics, 31(9), 1063 - 1068. Amsterdam: Elsevier 10.1016/j.medengphy.2009.07.002

Krenn, M. H.; Ambrosetti-Giudici, S.; Pfenniger, Aloïs; Burger, J.; Piotrowski, W. P. (2008). Minimally Invasive Intraoperative Stiffness Measurement of Lumbar Spinal Motion Segments. Neurosurgery, 63(4), pp. 309-313. Lippincott Williams & Wilkins 10.1227/01.NEU.0000335144.87931.A1

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