THERMHESC Group, Chair of Molina Ribera Hospital, C. Asociación, S/N, 30500 Molina de Segura, Spain.
Research Center for High Performance Sport, Catholic University of Murcia (UCAM), Campus de los Jerónimos, Nº 135, 30107 Murcia, Spain.
Sensors (Basel). 2023 Nov 22;23(23):9330. doi: 10.3390/s23239330.
In the last decade there has been a growing interest in infrared thermography in the field of sports medicine in order to elucidate the mechanisms of thermoregulation. The aim of this study was to describe bilateral variations in skin temperature of the anterior thigh and patellar tendon in healthy athletes and to provide a model of baseline tendon and muscle thermoregulation in healthy sprinters following a unilateral isokinetic fatigue protocol. Fifteen healthy national-level sprinters (eleven men and four women), with at least 3 years of athletic training experience of 10-12 h/week and competing in national-level competitions, underwent unilateral isokinetic force testing and electrostimulation in which their body temperature was measured before, during, and after the protocol using an infrared thermographic camera. ANOVA detected a significant difference in the time × side interaction for patellar temperature changes ( ≤ 0.001) and a significant difference in the time/side interaction for quadriceps temperature changes ( ≤ 0.001). The thermal challenge produces homogeneous changes evident in quadriceps areas, but not homogeneous in tendon areas. These data show that metabolic and blood flow changes may depend on the physical and mechanical properties of each tissue. Future research could be conducted to evaluate the predictive value of neuromuscular fatigue in the patellar tendon and quadriceps after exercise in order to optimize post-exercise recovery strategies.
在过去的十年中,运动医学领域对红外热成像技术的兴趣日益浓厚,以阐明体温调节的机制。本研究旨在描述健康运动员股前皮温和髌腱的双侧变化,并为健康短跑运动员在经历单侧等速疲劳方案后提供基线肌腱和肌肉体温调节的模型。15 名健康的国家级短跑运动员(11 名男性和 4 名女性),具有至少 3 年的每周 10-12 小时的运动训练经验,并参加国家级比赛,接受了单侧等速力量测试和电刺激,使用红外热像仪在方案前后测量他们的体温。方差分析检测到髌温变化的时间×侧交互作用有显著差异(≤0.001),股四头肌温度变化的时间/侧交互作用有显著差异(≤0.001)。热刺激会产生明显的股四头肌区域的均匀变化,但不会在肌腱区域产生均匀变化。这些数据表明,代谢和血流变化可能取决于每个组织的物理和机械特性。未来的研究可以评估运动后髌腱和股四头肌的神经肌肉疲劳的预测价值,以优化运动后的恢复策略。