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Exploring the thermal effect of far-infrared therapy on the kinetics of blood cells by optical tweezers

机译:用光镊探索远红外疗法对血细胞动力学的热效应

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Cold and heat are two types of non-invasive and non-addictive treatments, which induce therapeutic effects including temperature modulation, muscle relaxation, pain relief, and hemostasis. In this study, we explored the bio-physical mechanism of the effects of cold and heat therapies on blood physiology. Optical tweezers are powerful tools used in the application of micro-manipulation and the quantification of micro-interaction. We evaluated the interaction between RBCs by measuring the required trapping power and estimated the average kinetic energy of RBCs by optical tweezers. Through investigation of RBCs' mobility in coagulation process, we found cold therapy reduced the intercellular interaction and suppressed the blood circulation, thus suppressed the blood flow, reduced local congestion and stopped bleeding; whereas heat application could intensify RBCs' interaction, inspire their activity, and therefore promote the circulation system and enhance the metabolism physiology.
机译:感冒和热感是非侵入性和非成瘾性治疗的两种类型,可引起包括温度调节,肌肉松弛,缓解疼痛和止血在内的治疗效果。在这项研究中,我们探讨了冷热疗法对血液生理的影响的生物物理机制。光学镊子是用于微操作和微相互作用定量的强大工具。我们通过测量所需的捕获能力评估了红细胞之间的相互作用,并通过光镊估计了红细胞的平均动能。通过对红细胞在凝结过程中的流动性的研究,我们发现冷疗法减少了细胞间的相互作用并抑制了血液循环,从而抑制了血流,减少了局部充血并止血;而加热可以增强红细胞的相互作用,激发其活性,从而促进循环系统并增强新陈代谢的生理功能。

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