Electromyographic activity of pelvic floor muscles in different positions during the use an innovative vaginal educator: Cross-sectional study

盆底 盆底肌 肌电图 医学 生物反馈 尿失禁 物理疗法 横断面研究 解剖 物理医学与康复 口腔正畸科 泌尿科 病理
作者
Natália de Souza Duarte,Yury Souza de Azevedo,Emilly Cássia Soares Furtado,Lorena Jarid Freire de Araújo,Rayanne Mesquita Bendelack,Cibele Nazaré Câmara Rodrigues,Nazete dos Santos Araújo,Pablo Fabiano Moura das Neves,Ana Clara Nunes Soares,Rayana Carvalho Barros,Tainah Lacerda Santos,Érica Feio Carneiro Nunes,Elizabeth Alves Gonçalves Ferreira,Bianca Callegari,João Simão de Melo Neto
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:19 (3): e0291588-e0291588 被引量:3
标识
DOI:10.1371/journal.pone.0291588
摘要

The pelvic floor requires an integrated anatomical structure owing to its multiple functions. Therefore, it is necessary to study methods for improving muscle recruitment during training. This study aimed to analyze the effect of using an innovative vaginal trainer on the bioelectrical activity of the pelvic floor muscles. Pelvic positioning and interference factors, such as age, childbirth, sexual activity, urinary incontinence, and menopause, were also analyzed. A cross-sectional study assessed 30 women using an evaluation form, International Consultation on Incontinence Questionnaire-Short Form, and surface electromyography. The root mean square of a 5-second contraction period, peak root mean square values, area values, % maximal voluntary contraction (root mean square normalized by peak signal), and median frequency were collected. These findings with and without the use of a vaginal educator were compared in the anteversion, neutral, and retroversion pelvic positions. The use of a vaginal educator was found to increase the electromyographic activity of the pelvic floor muscles in the neutral position. In this position, older women showed an increased peak contraction when using the educator. Multiparas also benefited from increased bioelectric activity (root mean square and area). Sexually active women increased their bioelectric activity in a neutral position when using the trainer, exerting less effort in retroversion (%-maximal voluntary contraction). Incontinent and menopausal women exhibited slower body-building activation (decreased frequency) with the device, which requires further investigation. Our innovative biofeedback device induced greater recruitment of muscle fibers, is more effective in the neutral pelvic position, and may be effective in training the pelvic floor muscles, even in women with a greater tendency toward pelvic floor dysfunction.
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