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Biomechanics Of The Female Reproductive System Breast And Pelvic Organs From Model To Patient 1st Mathias Brieu Editor

  • SKU: BELL-50051780
Biomechanics Of The Female Reproductive System Breast And Pelvic Organs From Model To Patient 1st Mathias Brieu Editor
$ 31.00 $ 45.00 (-31%)

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Biomechanics Of The Female Reproductive System Breast And Pelvic Organs From Model To Patient 1st Mathias Brieu Editor instant download after payment.

Publisher: Elsevier Inc
File Extension: PDF
File size: 19.1 MB
Pages: 534
Author: Mathias Brieu (Editor), Michel Cosson (Editor), Poul Nielsen (Editor)
ISBN: 9780323903196, 0323903193
Language: English
Year: 2023
Edition: 1st

Product desciption

Biomechanics Of The Female Reproductive System Breast And Pelvic Organs From Model To Patient 1st Mathias Brieu Editor by Mathias Brieu (editor), Michel Cosson (editor), Poul Nielsen (editor) 9780323903196, 0323903193 instant download after payment.

“Biomechanics of the Female Reproductive System: Breast and Pelvic Organs.
From Model to Patient” is the first book to cover biomechanical studies of the
woman’s reproductive system. Clinicians and scientists gathered to propose a book
presenting the main results and studies completed over the last decade to increase
the understanding of women’s reproductive physiology, diseases, and treatment and
improve the design of medical devices and clinical interventions, including surgical
procedures.
International key opinion leaders in medical, mechanical engineering, biomedical engineering,
physics, and computer sciences have described, discussed, and presented
existing approaches, methodologies, and results. We hope this book will provide
the reader with a comprehensive overview of the state-of-the-art research, development,
and perspectives in biomechanical modeling and numerical simulation of the
women’s reproductive system. From a medical perspective, spreading this culture of
soft tissue biomechanics and their evolution with aging and damage could improve
the knowledge and understanding of pathologies such as genital prolapse, pelvic pain,
and pelvic organ dysfunction. One step beyond the modeling and prediction value of
the models that could be developed could solve medical issues and improve patient
care regarding these pathologies in an area lacking technologies, medical software,
and devices. The primary motivation of every researcher in biomedical engineering
is to improve the quality of the treatment and the patient’s life. We hope our efforts
will contribute to this.

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