Evaluation of dynamic F wave parameters before and after physical activity in normal population

Author:

Khosrawi Saeid,Haghighat Shila,Hamedfar HadiORCID

Abstract

Abstract Objectives F wave is one of the nerve conduction studies, mainly used to study the proximal pathway of peripheral nerves. One of its applications is dynamic assessment, i.e., before and after physical activity, when symptoms develop in some patients. Best to our knowledge, few studies evaluate normal dynamic F wave values in healthy individuals. This study aims to determine and compare normal values of several parameters of Compound Muscle Action Potential (CMAP) and F waves of tibial nerves dynamically before and after physical activity in the lower extremities of 34 normal subjects. These parameters were recorded before and after 15 min of continuous walking at intervals of 1, 5, and 10 min after the end of physical activity. Results Normal values of CMAP onset latency and amplitude, minimum, maximum, and mean latency of 10 F waves, F chronodispersion, and F persistence were dynamically collected before and during 10 min after physical activity in three phases. Some of the parameters showed significant changes (P < 0.05). Although physical activity showed statistically significant effects on some CMAP and F wave parameters (especially F chronodispersion) in normal subjects, none of them exceeded the normal clinical values introduced in the literature.

Funder

Isfahan University of Medical Sciences

Publisher

Springer Science and Business Media LLC

Subject

General Biochemistry, Genetics and Molecular Biology,General Medicine

Reference19 articles.

1. Dumitru D, Amato AA, Zwarts MJ. Electrodiagnostic medicine. In: Amato AA, Dumitru D, Zwarts MJ, editors. special nerve conduction techniques. Philadelphia: Hanley & Belfus; 2002. p. 238–44.

2. Preston DC, Shapiro BE. Electromyography and neuromuscular disorders e-book: clinical-electrophysiologic-ultrasound correlations. New York: Elsevier Health Sciences; 2020. p. 41–26.

3. Agarwal S, Lukhmana S, Kahlon N, Malik P, Nandini H. Nerve conduction study in neurologically asymptomatic diabetic patients and correlation with glycosylated hemoglobin and duration of diabetes. Natl J Physiol Pharm Pharmacol. 2018;8(11):1533–8. https://doi.org/10.5455/njppp.2018.8.0826828082018.

4. Kohara N, Kimura J, Kaji R, Goto Y, Ishii J, Takiguchi M, Nakai M. F-wave latency serves as the most reproducible measure in nerve conduction studies of diabetic polyneuropathy: multicentre analysis in healthy subjects and patients with diabetic polyneuropathy. Diabetologia. 2000;43(7):915–21. https://doi.org/10.1007/s001250051469.

5. Hameed S, Cascella M. Multifocal Motor Neuropathy. StatPearls. Feb 7. (https://www.ncbi.nlm.nih.gov/books/NBK554524/) 2021.

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