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LITERATURE

AI, bio-inspired robotics and exercise physiology






Science 318, 1088 (2007)

‘Self-organization, embodiment, and biologically inspired robotics’ by Rolf Pfeifer, Max Lungarella and Fumiya Iida

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Communications of the ACM, 55:11 (2012)

‘The challenges ahead for bio-inspired soft robotics’ by Rolf Pfeifer, Max Lungarella and Fumiya Iida

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Trends in Cognitive Sciences, 18:8 (2014)

‘Cognition from the bottom up: on biological inspiration, body morphology, and soft materials’ by Rolf Pfeifer, Fumiya Iida and Max Lungarella

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Frontiers in Physiology (2017)

‘Cardiovascular and muscular consequences of work-matched interval-type pedaling exercise on a soft robot’ by Martin Flück, Rebekka Bosshard and Max Lungarella

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BMC Sports Sci. Med. Rehabil. (2018)

‘Investigation of cardiopulmonary exercise testing using a dynamic leg press and comparison with a cycle ergometer’ by Farouk Chrif, Tobias Nef and Kenneth J. Hunt

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Psychiatrie & Neurologie (2018)

‘Roboterassistierte Therapie in der Neurorehabilitation nach Schlaganfall’ by Dr. med. Leopold Zizlsperger

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JMIR Research Protocols (2019)

‘Concentric and Eccentric Pedaling-Type Interval Exercise on a Soft Robot for Stable Coronary Artery Disease Patients: Toward a Personalized Protocol’ by Fitze et al

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Biomedical Signal Processing and Control (2017)

‘Control design for a lower-limb paediatric therapy device using linear motor technology’ by Farouk Chrif, Tobias Nef, Max Lungarella, Raja Dravid and Kenneth J. Hunt

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BMC Biomedical Engineering (2019)

‘Technical feasibility of constant-load and high-intensity interval training for cardiopulmonary conditioning’ by Farouk Chrif, Tobias Nef and Kenneth J. Hunt

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