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Electromagnetic field stimulation for long-term mobility assessment after sciatic nerve injury

Autor/es Anáhuac
Carrillo-Márquez María Fernanda; Ceniceros-Obregón Alfonso; Rodríguez-Serrano Luis Miguel; Carrillo-Ruiz José Damián
Año de publicación
2025
Journal o Editorial
Neurological Research

Abstract

Introduction 

Gauss (G) or miliTesla (mT) units measure electromagnetic field (EMF) stimulation. Tarlov Scale (TS) assesses motor impairment, Finger Abduction Scale (FAS) measures finger separation. The objective is to evaluate mobility using EMF in a Sciatic Nerve Injury (SNI) model.

Materials & Methods 

SNI caused paresis in the right hind limb to observe motor changes in male Sprague-Dawley rats (372–529 g) (N = 30). Three groups of (n = 10) rats were created. Control Group (CG) was just injured. The experimental groups were EMF-treated two hours a day for four weeks (2/24, 5/7, 4/4), applying Gauss intensities: Low-Intensity (LIMF) 60–100 (6–10 mT) & High-Intensity (HIMF) 140–200 (14–20 mT). The mobility was measured each week with TS & FAS. Sciatic nerve & skeletal muscle histological slides were made with traditional staining technique to evaluate cellular inflammation. We used two-tailed repeated ANOVA measures & Bonferroni post hoc tests, with a significance p < 0.05 (α = 0.05) and β = 80%.

Results 

EMFs effectively treat SNI in rats, improving the mobility of the right hind limb in experimental groups. In the last week, TS scores were CG 3.5 (±1.35) p = 0.006, LIMF 4 (±0) p = 0.0001 & HIMF 4.3 (±0.82) p = 0.02. FAS scores were CG 0.2 (±0.42) p = 0.000001, LIMF 1.5 (±0.70) p = 0.05 & HIMF 1.8 (±0.42) p = 0.1. In histological findings, CG had inflammation in nerve & muscle, LIMF & HIMF diminished cellular activity.

Discussion 

TS & FAS helped to improve mobility in experimental groups using EMFs after SNI. The nerve repairing mechanism should be studied in future models.