PLoS ONE (Jan 2017)

Sole vibration improves locomotion through the recovery of joint movements in a mouse cast model.

  • Atsushi Doi,
  • Kazuaki Miyamoto,
  • Yu-Shin Nakano,
  • Juntaro Sakasaki,
  • Syota Kasae,
  • Keisuke Nishimura,
  • Min-Chul Shin,
  • Megumu Yoshimura

DOI
https://doi.org/10.1371/journal.pone.0186189
Journal volume & issue
Vol. 12, no. 10
p. e0186189

Abstract

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We investigated the effects of a vibratory stimulus on the plantar surface of the hind limb for motor, sensory, and locomotive function using a mouse cast model. The right knee joint of C57BL/6 male mice (7 weeks, 20 g, n = 31) was flexed with aluminum splint and tape for 6 weeks. These mice were randomly divided into 2 groups (control group, n = 11 and vibration group, n = 12). The mice in the vibration group received vibration on the sole of the ankle for 15 minutes per day, 5 days per week. After the knee joint cast was removed, we measured the range of motion (ROM) of both knee and ankle joints and the sensory threshold of the sole. Further, both walking and swimming movements were analyzed with a digital video. The sole vibration did not affect the passive ROM of the knee joint and sensory threshold after cast removal. However, it increased the ankle dorsiflexion range and improved free walking, swimming, and active movement of the knee joint. In conclusion, we show that the vibration recovered both walking and swimming movements, which resulted from improvements in both the passive ankle dorsiflexion and active knee movement.