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November 1, 1985Journal of Applied Physiology386 citations

Dynamic knee extension as model for study of isolated exercising muscle in humans

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PAP. AndersenUniversity of Inland NorwayRAR. P. AdamsUniversity of CopenhagenGSGisela SjøgaardUniversity of Southern Denmark

Key Result

A dynamic knee extension model enables isolated study of the quadriceps femoris, revealing that maximal O2 uptake per kilogram of muscle may be twice as high as previously estimated.

Key Points

  • The aim is to develop a model for studying isolated quadriceps femoris muscle activity and metabolism in humans.
  • Subjects perform knee extensions from 90 to 170 degrees on a bicycle ergometer.
  • Electromyographic recordings are taken from various muscles including quadriceps femoris, assessing muscle activation.
  • Blood flow and sampling from the femoral vein are analyzed for representative measurements of active muscles.
  • Quadriceps femoris exhibits equal activation across its lateral, medial, and rectus femoris heads during exercise.
  • No significant muscle activity is observed in the lower leg muscles, confirming isolation of quadriceps activity.
  • A linear relationship is found between external work and pulmonary O2 uptake across submaximal effort levels.

Structured PICO

P
Population
Humans (model development for studying isolated exercising muscle)
I
Intervention
Dynamic knee extension model using a modified bicycle ergometer
O
Outcome
Muscle activity (EMG) and pulmonary O2 uptake (Vo2)surrogate

The dynamic knee extension model effectively isolates the quadriceps femoris for physiological study, revealing that maximal oxygen uptake per kilogram of muscle may be significantly higher than previously estimated.

Abstract

In an attempt to approach a system of isolated exercising muscle in humans, a model has been developed that enables the study of muscle activity and metabolism over the quadriceps femoris (QF) muscles while the rest of the body remains relaxed. The simplest version includes the subject sitting on a table with a rod connecting the ankle and the pedal arm of a bicycle ergometer placed behind the subject. Exercise is performed by knee extension from a knee angle of 90 to approximately 170 degrees while flywheel momentum repositions the relaxed leg during flexion. Experiments where electromyographic recordings have been taken from biceps femoris, gastrocnemius, tibialis anterior, and other muscles in addition to QF indicate that only the QF is active and that there is an equal activation of the lateral, medial, and rectus femoris heads relative to maximum. Furthermore, virtually identical pulmonary O2 uptake (Vo2) during and without application of a pressure cuff below the knee emphasizes the inactivity of the lower leg muscles. The advantages of the model are that all external work can be localized to a single muscle group suitable for taking biopsies and that the blood flow in and sampling from the femoral vein are representative of the active muscles. Thus all measurements can be closely related to changes in the working muscle. Using this model we find that a linear relationship exists between external work and pulmonary Vo2 over the submaximal range and the maximal Vo2 per kilogram of muscle may be as much as twice as high as previously estimated.

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Cite This Study

Andersen et al. (1985) studied Exercising muscle physiology. Dynamic knee extension model was evaluated on Muscle activity and pulmonary O2 uptake (Vo2). A dynamic knee extension model enables isolated study of the quadriceps femoris, revealing that maximal O2 uptake per kilogram of muscle may be twice as high as previously estimated.

synapsesocial.com/papers/6a0906f162c780efd627fc0ahttps://doi.org/10.1152/jappl.1985.59.5.1647
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Dynamic Knee-Extensor and Cycle Exercise: Functional MRI of Muscular Activity1998 · 153 citations
  2. 2Electromyographic Analysis of Lower Limb Muscles During Multi-Joint Eccentric Isokinetic Exercise Using the Eccentron Dynamometer2025
  3. 3High muscle blood flows are not attenuated by recruitment of additional muscle mass1995 · 68 citations
  4. 4RELATIONSHIP BETWEEN THE INTENSITY OF MUSCLE CONTRACTION AND MUSCIE OXYGENATION OF THE M. RECTUS FEMORIS DURING DYNAMIC KNEE EXTENSION2000 · 5 citations
  5. 5Comparative Analysis of Quadriceps Electromyography During Bodyweight Strength Exercises2026 · 1 citations