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Journal ArticleDOI

Proprioceptive neuromuscular facilitation stretching : mechanisms and clinical implications.

Melanie J. Sharman, +2 more
- 01 Jan 2006 - 
- Vol. 36, Iss: 11, pp 929-939
TLDR
A summary of the findings suggests that an ‘active’ PNF stretching technique achieves the greatest gains in ROM, e.g. utilising a shortening contraction of the opposing muscle to place the target muscle on stretch, followed by a static contraction ofThe target muscle.
Abstract
Proprioceptive neuromuscular facilitation (PNF) stretching techniques are commonly used in the athletic and clinical environments to enhance both active and passive range of motion (ROM) with a view to optimising motor performance and rehabilitation. PNF stretching is positioned in the literature as the most effective stretching technique when the aim is to increase ROM, particularly in respect to short-term changes in ROM. With due consideration of the heterogeneity across the applied PNF stretching research, a summary of the findings suggests that an 'active' PNF stretching technique achieves the greatest gains in ROM, e.g. utilising a shortening contraction of the opposing muscle to place the target muscle on stretch, followed by a static contraction of the target muscle. The inclusion of a shortening contraction of the opposing muscle appears to have the greatest impact on enhancing ROM. When including a static contraction of the target muscle, this needs to be held for approximately 3 seconds at no more than 20% of a maximum voluntary contraction. The greatest changes in ROM generally occur after the first repetition and in order to achieve more lasting changes in ROM, PNF stretching needs to be performed once or twice per week. The superior changes in ROM that PNF stretching often produces compared with other stretching techniques has traditionally been attributed to autogenic and/or reciprocal inhibition, although the literature does not support this hypothesis. Instead, and in the absence of a biomechanical explanation, the contemporary view proposes that PNF stretching influences the point at which stretch is perceived or tolerated. The mechanism(s) underpinning the change in stretch perception or tolerance are not known, although pain modulation has been suggested.

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Citations
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Vježbe istezanja u križobolji

Zoja Gnjidić
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Research article combined effect of soft tissue mobilisation with pnf on glenohumeral range of motion and overhead reach in frontal plane along with pain perception

TL;DR: The study concluded that the combined effect of STM with PNF is effective in gaining glenohumeral ROM, overhead reach in frontal plane along with pain perception.
References
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Journal ArticleDOI

Viscoelastic properties of muscle-tendon units. The biomechanical effects of stretching.

TL;DR: It is found that muscle-tendon units respond viscoelastically to tensile loads, and the risk of injury in a stretching regimen may be related to the stretch rate, and not to the actual technique.
Journal ArticleDOI

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TL;DR: The role that presynaptic inhibition serves in the modification of the H reflex and how this precludes its use as an unambiguous measure of alpha-motoneuron excitability will be discussed.
Journal ArticleDOI

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TL;DR: Recent findings regarding passive properties of the hamstring muscle group during stretch are reviewed based on a model that was developed which could synchronously and continuously measure passive hamstring resistance and electromyographic activity, while the velocity and angle of stretch was controlled.
Journal ArticleDOI

Reversal of the influence of group Ib afferents from plantaris on activity in medial gastrocnemius muscle during locomotor activity

TL;DR: During locomotor activity, input from group Ib afferents of the plantaris muscle has an excitatory action on the system of interneurons generating the extensor bursts, i.e., on theextensor half-center of the central rhythm generator.
Journal ArticleDOI

Biomechanical responses to repeated stretches in human hamstring muscle in vivo

TL;DR: The data show that the method employed is a useful tool for measuring biomechanical variables during a stretch maneuver and may provide a more detailed method to examine skeletal muscle flexibility.
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