Frontiers in Neuroscience (Jun 2023)

Ultrasonic visualization technique for anatomical and functional analyses of the sciatic nerve in rats

  • Xiao-Dong Xu,
  • Xiao-Dong Xu,
  • Lei Lin,
  • Yu-Bei Qiu,
  • Bang-Wei Zeng,
  • Ye Chen,
  • Ye Chen,
  • Jun-Le Liu,
  • Cai-Hong Ye,
  • Jia-Li Wang,
  • Pei-Chang Liu,
  • Liang-Cheng Zhang

DOI
https://doi.org/10.3389/fnins.2023.1187669
Journal volume & issue
Vol. 17

Abstract

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Background and objectiveUltrasound has been widely used in the diagnosis and minimally invasive treatment of peripheral nerve diseases in the clinic, but there is still a lack of feasibility analysis in rodent models of neurological disease. The purpose of this study was to investigate the changes in the cross-sectional area of the sciatic nerve of different genders and body weights and to explore the effectiveness and reliability of an ultrasound-guided block around the sciatic nerve in living rats.MethodsUsing ultrasound imaging anatomy of the sciatic nerve of rats, the cross-sectional area of the sciatic nerve in rats of different genders from 6 to 10 weeks old was calculated, and then analyzed its correlation with body weight. Further analyses were conducted through behavioral and cadaveric studies to evaluate the feasibility of ultrasound-guided perineural injection of the sciatic nerve in rats.ResultsWe first reported that the sciatic nerve cross-sectional area of rats was increased with age (F = 89.169, P < 0.001), males had a higher sciatic nerve cross-sectional area than females (F = 60.770, P < 0.001), and there was a positive correlation with body weight (rMale = 0.8976, P < 0.001; rFemale = 0.7733, P < 0.001). Behavioral observation of rats showed that the lower extremity complete block rate was 80% following the administration of drugs around the sciatic nerve under ultrasound guidance and staining with methylene blue occurred in all sciatic nerves and surrounding muscles and fascia using 20 ultrasound-guided injections.ConclusionsUltrasound visualization technology can be used as a new auxiliary evaluation and intervention therapy for animal models of peripheral nerve injury, and will provide overwhelming new references for the basic research of neurological diseases.

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