PLoS ONE (Jan 2019)

Evaluation of the temperature of posterior lower limbs skin during the whole body vibration measured by infrared thermography: Cross-sectional study analysis using linear mixed effect model.

  • Eloá Moreira-Marconi,
  • Marcia Cristina Moura-Fernandes,
  • Patrícia Lopes-Souza,
  • Ygor Teixeira-Silva,
  • Aline Reis-Silva,
  • Renata Marques Marchon,
  • Eliane de Oliveira Guedes-Aguiar,
  • Laisa Liane Paineiras-Domingos,
  • Danúbia da Cunha de Sá-Caputo,
  • Danielle Soares Morel,
  • Carla Fontoura Dionello,
  • Sérgio Oliveira De-Carvalho,
  • Mario José Dos Santos Pereira,
  • Arlete Francisca-Santos,
  • Gefferson Silva-Costa,
  • Marcio Olímpio-Souza,
  • Tânia Regina Lemos-Santos,
  • Nasser Ribeiro Asad,
  • Vinicius Layter Xavier,
  • Redha Taiar,
  • Anelise Sonza,
  • Adérito Seixas,
  • Darryl J Cochrane,
  • Mario Bernardo-Filho

DOI
https://doi.org/10.1371/journal.pone.0212512
Journal volume & issue
Vol. 14, no. 3
p. e0212512

Abstract

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BackgroundWhole body vibration exercise (WBVE) has been shown to improve muscular strength and power, and increase peripheral blood flow. The aim of this study was to evaluate the behavior of the skin temperature (Tsk) on regions of the lower limbs from an acute bout of WBVE.Methods and findingsCross-sectional study approved by local ethics committee (Certificado de Apresentação para Apreciação Ética-CAAE-19826413.8.0000.5259) and Trial registration (Registro Brasileiro de Ensaios Clínicos-REBEC-RBR-738wng). Using Infrared thermography (IRT), Tsk and thermal symmetry of the posterior lower extremities (thigh, knee, calf and heel) were examined in 19 healthy participants. IRT was assessed during 60-second WBVE exposures of 0, 30 and 50 Hz. From the adjusted linear mixed effects model, vibration frequency, time and regions of the lower extremity were significant (pConclusionsThe acute exposure of 60-second mechanical vibration has effect on the behavior of Tsk of the posterior region of the lower limbs, which is likely to be associated with a decrease on the blood flow due to WBVE. It is speculated that during WBVE a greater supply of blood is required where the body responds by shunting blood flow from the skin to working muscle in the first seconds of exercise. Further investigative work is required to verify this hypothesis.