Neural Regeneration Research ›› 2026, Vol. 21 ›› Issue (8): 3748-3753.doi: 10.4103/NRR.NRR-D-24-00915

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A novel contralateral ulnar nerve transfer model for selective muscle reinnervation in upper motor neuron syndrome

Olga Politikou1, 2, Silvia Muceli3, Leopold Harnoncourt1, Florian Jaklin1, Vlad Tereshenko1, 4, Udo Maierhofer1, Matthias Luft1, 5, Christopher Festin1, Gregor Laengle1, 6, Johanna Klepetko1, Laurenz Pflaum1, Konstantin D. Bergmeister1, 7, Oskar C. Aszmann1, 6, *   

  1. 1Clinical Laboratory for Bionic Extremity Reconstruction, Department of Plastic, Reconstructive and Aesthetic Surgery, Medical University of Vienna, Vienna, Austria; 
    2Department of Plastic Surgery and Hand Surgery, University Hospital Zurich, Zurich, Switzerland; 
    3Department of Electrical Engineering, Chalmers University of Technology, Gothenburg, Sweden; 
    4Division of Plastic and Reconstructive Surgery, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA; 
    5Department of Plastic, Aesthetic and Reconstructive Surgery, Hospital of the Brothers of St. John of Gods, Paracelsus Medical University, Salzburg, Austria; 
    6Department of Plastic, Reconstructive and Aesthetic Surgery, Medical University of Vienna, Vienna, Austria; 
    7Department of Plastic, Aesthetic and Reconstructive Surgery, University Hospital St. Poelten, Karl Landsteiner University of Health Sciences, Krems, Austria
  • Online:2026-08-18 Published:2026-04-27
  • Contact: Oskar C. Aszmann, MD, oskar.aszmann@meduniwien.ac.at.
  • Supported by:
    This study was supported by the European Research Council (ERC) under the European Union’s Horizon 2020 Research and Innovation Programme, No. 810346. The ERC Synergy Grant was coordinated by Imperial College London (to OCA).

Abstract:

Stroke and traumatic brain injury lead to upper motor neuron syndrome, which is characterized by muscle spasticity or paresis of varying severity depending on the lesion’s location and extent. Current treatments are mostly symptomatic with limited efficacy and significant side effects. Nerve transfer techniques, such as the contralateral L4 ventral root transfer in animal models and C7 root transfer in both animal and clinical studies, have been shown to reduce spasticity and improve function in upper motor neuron syndrome; however, they lack selectivity. Our hypothesis is that using a selective peripheral donor nerve from the contralateral side, rather than the entire nerve root, may represent an effective nerve transfer and provide a robust basis for future research on selective muscle reinnervation in upper motor neuron syndrome. Ten rats underwent a contralateral ulnar-to-ulnar nerve transfer procedure. Electrophysiological measurements were conducted twelve weeks post-surgery to assess successful reinnervation of the contralateral flexor carpi ulnaris muscle. Additionally, muscle biopsies of the reinnervated flexor carpi ulnaris were harvested to examine the muscle fiber type composition, cross-sectional area, and collagen content as well as compare them to naive counterparts. Axon quantification of the reinnervated nerves was also performed. All rats recovered uneventfully, maintaining the use of both paws post-surgery. Electrophysiological tests confirmed the successful reinnervation of the flexor carpi ulnaris muscle. Muscle fiber type composition, cross-sectional area, and collagen content did not show statistically significant changes. Axon counts indicated successful nerve regeneration without architectural disruption. In conclusion, we were able to demonstrate this novel contralateral nerve transfer model’s feasibility, reproducibility, and safety as well as achieve effective muscle reinnervation. This model provides a valuable tool for further research on selective muscle reinnervation and treatment of upper motor neuron syndrome, with potential implications for improving clinical outcomes in stroke and traumatic brain injury patients.

Key words: electrophysiology, hemiplegia, muscle fiber type, muscle reinnervation, nerve regeneration, nerve transfer, spasticity, stroke, ulnar nerve, upper motor neuron lesion