Dorsiflexion Plantarflexion

Dorsiflexion and plantarflexion are opposing ankle movements that position the foot and support standing, walking, and other weight-bearing activities. Dorsiflexion lifts the top of the foot toward the shin, primarily through contraction of the tibialis anterior, whereas plantarflexion points the foot downward through muscles including the gastrocnemius and soleus. Together, these movements control foot placement, absorb and generate forces during gait, and contribute to balance and propulsion. Studying their range of motion and muscle coordination helps researchers assess normal biomechanics and investigate conditions such as ankle injuries, weakness, altered gait, and movement limitations in clinical rehabilitation.

Dorsiflexion Plantarflexion - Related Videos

Research

JoVE Journal - Bioengineering

A Passive Ankle Dorsiflexion Testing System for an In Vivo Model of Overuse-induced Tendinopathy

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Cited by 1 •

2024

This protocol presents a testing system used to induce quantifiable and controlled fatigue injuries in a rat Achilles tendon for an in-vivo model of overuse-induced tendinopathy. The procedure consists of securing the rat's ankle to a joint actuator that performs passive ankle dorsiflexion with a custom-written MATLAB script.

Diagnosis of Musculus Gastrocnemius Tightness - Key Factors for the Clinical Examination

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Cited by 12 •

2016

Isolated Musculus gastrocnemius tightness is a common cause for foot and ankle pathologies. Currently no standardized examination procedure exists. This manuscript demonstrates that 20 degree of knee flexion eliminates the restraining effect of the M. gastrocnemius on ankle dorsiflexion and presents a video description of a standardized examination protocol.

Research

JoVE Journal - Medicine
Free Sample

A Murine Model of Muscle Training by Neuromuscular Electrical Stimulation

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Cited by 18 •

2012

A murine model of neuromuscular electrical stimulation (NMES), a safe and inexpensive clinical modality, to the anterior compartment muscles is described. This model has the advantage of modifying a readily available clinical device for the purpose of eliciting targeted and specific muscle contractions in mice.

An in vivo Rodent Model of Contraction-induced Injury and Non-invasive Monitoring of Recovery

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Cited by 26 •

2011

An in vivo animal model of injury is described. The method takes advantage of the subcutaneous position of the fibular nerve. Velocity, timing of muscle activation, and arc of motion are all pre-determined and synchronized using commercial software. Post injury changes are monitored in vivo using MR imaging/spectroscopy.

Education

JoVE Science Education - Clinical Skills

Ankle Exam

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2023

Source: Robert E. Sallis, MD. Kaiser Permanente, Fontana, California, USA The ankle and foot provide the foundation for the body and the stability needed for upright posture and ambulation. Because of its weight-bearing function, the ankle joint is a common site of injury among athletes and in the general population. Ankle injuries occur as a result of both acute trauma and repetitive overuse (such as running). The ankle is a fairly simple joint, consisting of the articulation between the...

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