Progress in Motor Control: From Neuroscience to Patient Outcomes. Questo articolo non è disponibile.
Lingua: inglese
Editore: Elsevier Science Publishing Co Inc, 2023
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Codice articolo B9780443239878
- Titolo
- Progress in Motor Control: From Neuroscience to Patient Outcomes
- Autore
- Mindy F. Levin
- Editore
- Elsevier Science Publishing Co Inc
- Anno di pubblicazione
- 2023
- Condizione
- New
- Rilegatura
- Paperback / softback
- Lingua
- inglese
- ISBN 10
- 0443239878
- ISBN 13
- 9780443239878
- Peso dell'articolo
- 497 grammi
Progress in Motor Control: From Neuroscience to Patient Outcomes updates the state-of-the-art of knowledge among scientists on basic and applied research on control of movements of biological systems through a clinical perspective. Motor control is a scientific area characterized by multidisciplinary approaches. This book promotes the application of this area into clinical practice. Chapters focus on topics in the field of motor control, including neural control of goal-oriented action, theories on rules of interaction during motor learning, and action coordination up to human and machine interaction.
Edited by experts in the field, this book translates current theoretical outcomes into neuroscience and therapeutic solutions.
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Informazioni sull’autore
Maurizio Petrarca is a physiotherapist and obtained an M.Sc. Rehabilitation Science at the University "Tor Vergata" (2007) in Rome and PhD in Science and Space Technology, with a specialization in Mechanical Measurements for Engineering, at the "Giuseppe Colombo" University Center - CISAS in Padua (2011). He founded and has been in charge of the Movement Analysis and Robotics Laboratory at the "Bambino Gesù" Children's Hospital – a research institute in Rome, from 2000 to the present day. He is the Past-president of the Neurological and Neuroscience subgroup of the Italian Scientific Society of physiotherapy (A.I.FI. www.aifi.net). He was the PI and collaborated on many research projects concerning assessment and technological tool development in rehabilitation. He developed an in-house computerized optoelectronic system for movement analysis in 1986. He patented a mechanical dynamic orthoses system for gait recovery in 1995 and a modular robotic exoskeleton in 2012. He ideated a 3DoF robotized platform for balance assessment and training in 2006. He realizes a Dynamic Oriented Rehabilitative Integrated System (DORIS), mixing a 6DoF Stewart platform with movement analysis virtual reality and exoskeletons, not yet patented in 2019. He is developing a bioinspired robotic orthosis for the knee and elbow in the present day. He is a clinician progressively introduced in the research setting interested in studying the function organization in different contexts and diseases. He published 79 peer-reviewed publications.
Daniele Piscitelli is affiliated with the University of Milano-Bicocca, Italy as a Researcher. He was a visiting scholar at Pennsylvania State University (USA) for one year (2015/4- 2016/5). From 2017 to 2022, he was a Post-Doc Fellow at McGill University, under the directorship of Dr. Mindy F. Levin. He is a researcher with a background in neuroscience, neurorehabilitation, and clinical research design. He has a strong interest in rehabilitation after stroke, neural motor control, and psychometric assessment of outcome measures. His research focuses on understanding the neurophysiological mechanisms of motor control and how this knowledge can be translated into clinical research and clinical practice to promote recovery after brain lesions. His research has continuously been funded by many competitive research fellowships such as the Italian Ministry of Education, University and Research, McGill Faculty of Medicine, "Fonds de recherche en santé du Québec", and Canadian Institute of Health Research. Dr. Piscitelli has published several original papers and theoretical works in peer-review journals about the underlying motor control mechanisms in post-stroke recovery, despite a relatively young research-active career. In 2021, Dr. Piscitelli was the recipient of the Early Career Investigator Award by the International Society of Motor Control.
Susanna Summa acquired Bachelor Degree in Bioengineering at Università Campus Bio-Medico di Roma and Master Degree in Bioengineering at Università degli Studi di Genova curriculum in Neuroengineering. She was Ph.D candidate in Bioengineering in collaboration with NeuroEngineering and NeuroRobotics Lab (NeuroLab) under the supervision of Vittorio Sanguineti and Maura Casadio. She is a member of the Movement Analysis and Robotic laboratory (MARlab), at the Bambino Gesù Pediatric Hospital under the supervision of Maurizio Petrarca. Previously she was at the Research Unit of Neurophysiology & Neuroengineering of Human-Technology Interaction, at the Campus Bio-Medico University. Her main research areas are neural control of movements, motor learning in normal and pathologic conditions, neuromotor recovery through robotic technologies and natural interfaces in persons with neurological disorders. Currently, she is focusing her interests on movement analysis of pediatric patients and in the study of human-machine interaction as tools for the assessment of neuromotor diseases and for neuromotor recovery with robotic platforms.
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