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Updated: Aug 15, 2026

An in vivo Rodent Model of Contraction-induced Injury and Non-invasive Monitoring of Recovery
Published on: May 11, 2011
A reproducible method to image the rat Achilles tendon anatomy by 7 Tesla Magnetic Resonance Imaging (MRI) - A
Conny Waschkies1, Iris Miescher2, Julia Rieber2
1Center for Preclinical Development, University Hospital Zurich, Sternwartstrasse 14, Zurich 8091, Switzerland.
Background:
Achilles tendon rupture is the most common tendon injury, yet current methods to monitor healing remain largely qualitative and observer dependent. Magnetic Resonance Imaging (MRI) offers a non-invasive, quantitative alternative with translational potential from bench to bedside. Here we establish a standardized preclinical MRI protocol that could be used for longitudinal assessment of rat Achilles tendon healing in the future, with emphasis on reproducible anatomical positioning and visualization of subtendon anatomy.
Methods:
Imaging was performed at 7 T using a custom positioning mold to stabilize the hind limb and flatten the posterior tendons against a surface coil.
Results:
3D T1-weighted morphological scans enabled high-resolution visualization of the tripartite subtendon organization - soleus, medial gastrocnemius, and lateral gastrocnemius - which were visually delineated using multi-planar reformatting in 3D Slicer. Intra- and inter-observer variability yielded moderately good dice similarity coefficients.
Conclusions:
The rat Achilles tendon recapitulates human subtendon architecture, supporting its validity as a translatable model. The described setup enables reproducible delineation of subtendon anatomy and is well suited for future investigations into acute tendon injuries, treatment response, and healing.
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