Extensor Digitorum Longus

The extensor digitorum longus is a skeletal muscle of the anterior lower leg that extends the lateral four toes and contributes to ankle dorsiflexion. Its muscle fibers contract under stimulation from the deep fibular nerve, transmitting force through tendons that pass beneath the extensor retinacula and divide toward the second through fifth digits. The muscle supports toe clearance during walking and helps coordinate foot positioning during gait and balance. Clinically, assessment of its strength, tendon function, and innervation can aid evaluation of deep fibular nerve injury, anterior compartment disorders, tendon damage, and abnormalities affecting lower-limb movement.

Extensor Digitorum Longus - Related Videos

Research

JoVE EoE - Rodent Models

Myofiber Isolation: A Technique to Obtain Single Myofibers from Harvested Mouse Extensor Digitorum Longus (EDL) Muscle

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2025

This video demonstrates the isolation of single myofibres from harvested murine Extensor Digitorum Longus (EDL) muscle. The isolated myofibres can be cultured to study myofiber-associated muscle stem cell activity.

Research

JoVE Journal - Biology
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Evaluation of Muscle Function of the Extensor Digitorum Longus Muscle Ex vivo and Tibialis Anterior Muscle In situ in Mice

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Cited by 75 •

2013

Changes in limb muscle contractile and passive mechanical properties are important biomarkers for muscle diseases. This manuscript describes physiological assays to measure these properties in the murine extensor digitorum longus and tibialis anterior muscles.

Harvesting of Peroneus Longus Tendon Autograft

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Cited by 1 •

2025

This article provides a method for safely harvesting the full-thickness peroneus longus tendon autograft. It outlines critical steps, modifications, and troubleshooting for the procedure.

Research

JoVE Journal - Neuroscience
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Physiological Recordings of High and Low Output NMJs on the Crayfish Leg Extensor Muscle

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Cited by 13 •

2010

This article demonstrates how to conduct electrophysiological recordings of synaptic responses on the extensor muscle in the walking leg of a crayfish and how the nerve terminals are visualized to show the gross morphological differences of high- and low-output nerve terminals.

Research

JoVE Journal - Biology
Free Sample

In vivo Measurement of Knee Extensor Muscle Function in Mice

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Cited by 14 •

2021

Quantification of knee extensor maximal strength is imperative to understand functional adaptations to aging, disease, injury, and rehabilitation. We present a novel method to repeatedly measure in vivo knee extension isometric peak tetanic torque.

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