Schmidt Daniel, Germano Andresa M C, Milani Thomas L
Chemnitz University of Technology, Institute of Human Movement Science and Health, Department of Human Locomotion, Reichenhainer Straβe 29a, Chemnitz 09126, Germany.
Clin Neurophysiol Pract. 2016 Dec 27;2:38-43. doi: 10.1016/j.cnp.2016.12.005. eCollection 2017.
Skin temperatures are known to increase cutaneous sensitivity. However, it is unclear whether the amount of improved sensitivity differs depending on the protocol of heat application. Therefore, this study aimed to investigate the effects of active (treadmill walking) and passive (infrared radiator) warming of the foot sole on vibration perception thresholds.
Sixty healthy and injury-free subjects voluntarily participated in this study. Vibration perception thresholds (200 Hz) and plantar temperatures were measured at the hallux and 1st metatarsal head. In experiment 1, warming and mechanically stimulating the skin was achieved by walking on a treadmill for 30 min. In a follow-up study (experiment 2), external plantar heat was administered via an infrared radiator (30 min).
In both experiments, increasing temperatures led to increased plantar sensitivity. However, the amount of improved sensitivity was greater in experiment 1, although plantar temperature increases were lower compared to experiment 2.
Warming in conjunction with mechanical stimulation seems to have a greater potential to enhance plantar sensitivity compared to external heat supply only.
The possible influence of mechanical stimulation and warming towards superior plantar afferent feedback highlights its importance regarding human posture and fall prevention.
已知皮肤温度会提高皮肤敏感性。然而,尚不清楚敏感性提高的程度是否因加热方案而异。因此,本研究旨在探讨足底主动(跑步机行走)和被动(红外辐射器)升温对振动感觉阈值的影响。
60名健康且无损伤的受试者自愿参与本研究。在拇趾和第一跖骨头处测量振动感觉阈值(200Hz)和足底温度。在实验1中,通过在跑步机上行走30分钟来实现对皮肤的加热和机械刺激。在后续研究(实验2)中,通过红外辐射器进行足底外部加热(30分钟)。
在两个实验中,温度升高均导致足底敏感性增加。然而,实验1中敏感性提高的程度更大,尽管与实验2相比足底温度升高幅度较小。
与仅外部供热相比,加热与机械刺激相结合似乎更有潜力提高足底敏感性。
机械刺激和加热对改善足底传入反馈的可能影响凸显了其在人体姿势和预防跌倒方面的重要性。