top of page
Neuromechanics examines the combined roles of the skeletal, muscular, and nervous systems and how they interact to produce the motion required to complete a movement with stability. 

 
 
Global / Segmental Movement and Stability Dysfunction

There is a clear link between reduced proprioceptive input, altered slow motor unit recruitment and the development of chronic pain states.  A good understanding of the control processes used to maintain stability in functional movements is essential for clinicians who attempt to treat or manage musculoskeletal pain problems.

 

 

 
Muscle Synergies and Posture

Recent research suggests that the nervous system controls muscles by activating flexible combinations of muscle synergies to produce a wide repertoire of movements. Muscle synergies are like building blocks, defining characteristic patterns of activation across multiple muscles that may be unique to each individual, but perform similar functions. Understanding the complex interplay between neural circuits and biomechanics that give rise to muscle synergies will be crucial to advancing our understanding of neural control mechanisms for movement.

 

 
The Role of Sensorimotor Integration

Restoration of function related to sensorimotor integration requires that neurophysiological and neuromuscular mechanisms are working, and beyond that requires re­education of the central processes of perception and selection which drive postural control.
 



 

 

Regional Interdependence

While clinicians should initially seek to identify a specific pathoanatomic source of the patient’s symptoms, in particular redflag conditions, they should also consider impairments of other systems or regions that may be directly or indirectly associated with the patient’s complaints. There is some research to suggest that such an expanded approach can produce positive results.


Respiration

Breathing affects motor control and postural stability and plays several roles in physiological and psychological regulation. Breathing can influence homeostatic functions in other system including the autonomic nervous system, the circulatory system, chemical regulation and metabolism.

Understanding Neuromechanics

bottom of page