Elbow Flexor Spasticity

Elbow flexor spasticity is a velocity-dependent increase in muscle tone that limits voluntary movement and joint positioning, often following damage to the central nervous system. Rapid stretching of the elbow flexor muscles can trigger an exaggerated stretch reflex, while changes in muscle and connective-tissue properties may further restrict extension. In bioengineering, researchers quantify spasticity using motion analysis, force measurement, electromyography, and computational models to distinguish neural activity from passive stiffness. These measurements support the design and evaluation of rehabilitation robots, wearable sensors, orthoses, and neuromodulation strategies intended to improve arm mobility, guide therapy, and monitor functional recovery.

Elbow Flexor Spasticity - Related Videos

Education

JoVE Science Education - Clinical Skills

Elbow Exam

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2023

Source: Robert E. Sallis, MD. Kaiser Permanente, Fontana, California, USA The elbow is a hinged joint that involves the articulation of 3 bones: the humerus, radius, and ulna. It is a much more stable joint than the shoulder, and because of that, the elbow has less range of motion. The elbow and its structures are prone to significant injuries, particularly with repetitive motion. Lateral and medial epicondylitis (also called tennis elbow and golfer's elbow) are two common diagnoses and often...

Research

JoVE Journal - Medicine
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Breathing-controlled Electrical Stimulation (BreEStim) for Management of Neuropathic Pain and Spasticity

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Cited by 9 •

2013

The purpose is to present a new method, breathing-control electrical stimulation (BreEStim) for management of neuropathic pain and spasticity.

Murine Flexor Tendon Injury and Repair Surgery

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Cited by 45 •

2016

Flexor tendons in the hand are commonly injured, leading to impaired hand function. However, the scar-tissue healing response is not well characterized. A murine model of flexor tendon healing is demonstrated here. This model can enhance overall understanding of the healing process and assess therapeutic approaches to improve healing.

A Standardized Method for Measurement of Elbow Kinesthesia

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Cited by 3 •

2020

Here, we present a standardized method for measurement of elbow passive kinesthesia using the threshold to detection of passive movement (TDPM) that is appropriate for a research setting.

Using Q Suture to Enhance Resistance to Gap Formation and Tensile Strength of Repaired Flexor Tendons

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Cited by 1 •

2020

Here, we present a “Q” suture technique that can be performed in tendon repair and its effects on the gap formation and tensile strength of the repaired tendons. Q suture is shown to be efficient in enhancing the tensile resistance and tendon repair strength.

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