Description

Book Synopsis
Countering the oversimplified teaching of musculoskeletal anatomy via static positions, James Earls argues for a novel approach. He calls for new tools and vocabulary to observe and articulate anatomy in motion and posits that observing varied bodies in different environments should refine our anatomy understanding. Earls explores the profound effects of understanding fascial tissue interconnectedness-described as anatomy trains, myofascial chains, meridians, or slings-on our anatomical knowledge. He delves into the concept of tensegrity, emphasizing its contribution to our appreciation of the intricacy and interdependence of real-world body movements. By situating the different theories and metaphors of myofascial continuities against the context of common real-life movements such as sports exercises and yoga asanas, Earls describes the utility and application of each theoretical system to many different situations and issues. Using up-to-date research, Earls digs into important questions for physical and manual therapists: which tissues really are contiguous? Does continuity of tissue actually show or demonstrate transmission of force and communication along those lines? And does fascial tissue have to be continuous for the body to actually transfer force? Accessibly written and fully illustrated, Functional Anatomy of Movement offers practical applications for physical therapists, chiropractors, and bodyworkers, as well as new tools for teachers of yoga and Pilates to develop a deeper understanding of anatomy and movement.

Table of Contents
Chapter 1 Functional, not Textbook, Anatomy Chapter 2 Why Do we Move the Way We Do? Chapter 3 Fascia-The Body's Problem Solver Chapter 4 Orienting Ourselves Chapter 5 Stepping Forward Chapter 6 Moving to the Side Chapter 7 Twist and Shout Chapter 8 Real and Relative Motion

Functional Anatomy of Movement: An Illustrated

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Order before 4pm tomorrow for delivery by Mon 22 Dec 2025.

A Paperback / softback by James Earls

15 in stock


    View other formats and editions of Functional Anatomy of Movement: An Illustrated by James Earls

    Publisher: Lotus Publishing
    Publication Date: 29/09/2023
    ISBN13: 9781913088385, 978-1913088385
    ISBN10: 1913088383

    Description

    Book Synopsis
    Countering the oversimplified teaching of musculoskeletal anatomy via static positions, James Earls argues for a novel approach. He calls for new tools and vocabulary to observe and articulate anatomy in motion and posits that observing varied bodies in different environments should refine our anatomy understanding. Earls explores the profound effects of understanding fascial tissue interconnectedness-described as anatomy trains, myofascial chains, meridians, or slings-on our anatomical knowledge. He delves into the concept of tensegrity, emphasizing its contribution to our appreciation of the intricacy and interdependence of real-world body movements. By situating the different theories and metaphors of myofascial continuities against the context of common real-life movements such as sports exercises and yoga asanas, Earls describes the utility and application of each theoretical system to many different situations and issues. Using up-to-date research, Earls digs into important questions for physical and manual therapists: which tissues really are contiguous? Does continuity of tissue actually show or demonstrate transmission of force and communication along those lines? And does fascial tissue have to be continuous for the body to actually transfer force? Accessibly written and fully illustrated, Functional Anatomy of Movement offers practical applications for physical therapists, chiropractors, and bodyworkers, as well as new tools for teachers of yoga and Pilates to develop a deeper understanding of anatomy and movement.

    Table of Contents
    Chapter 1 Functional, not Textbook, Anatomy Chapter 2 Why Do we Move the Way We Do? Chapter 3 Fascia-The Body's Problem Solver Chapter 4 Orienting Ourselves Chapter 5 Stepping Forward Chapter 6 Moving to the Side Chapter 7 Twist and Shout Chapter 8 Real and Relative Motion

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