School of Information and Communication Engineering, Dalian University of Technology, Dalian, 116024, China.
State Key Laboratory of Structural Analysis for Industrial Equipment, Dalian University of Technology, Dalian, 116024, China.
Sci Rep. 2021 Apr 15;11(1):8208. doi: 10.1038/s41598-021-87730-w.
The vestibular receptor of cupula acts an important role in maintaining body balance. However, the cupula buried in the semicircular canals (SCCs) will be destroyed if it is detached from the relevant environment. The mechanical properties of human cupula still remain ambiguous. In this paper, we explored the cupula responses changing with temperature by experiments and numerical simulation of SCCs model. We obtained 3 volunteers' nystagmus induced by constant angular acceleration when the temperature of volunteers' SCCs was 36 °C and 37 °C respectively. The slow-phase velocity of 3 volunteers decreased by approximately 3°/s when the temperature of SCCs reduced by 1 °C, which corresponded to the reduction of cupula deformation by 0.3-0.8 μm in the numerical model. Furthermore, we investigated the effects of the variation of endolymphatic properties induced by temperature reduction on cupula deformation through numerical simulation. We found that the decrease of cupula deformation was not caused by the change of endolymphatic properties, but probably by the increase of cupula's elastic modulus. With the temperature reducing by 1 °C, the cupula's elastic modulus may increase by 6-20%, suggesting that the stiffness of cupula is enhanced. This exploration of temperature characteristic of human cupula promotes the research of alleviating vestibular diseases.
耳石器的囊斑感受器在维持身体平衡方面起着重要作用。然而,如果它与相关环境分离,埋藏在半规管(SCCs)中的囊斑将被破坏。人类囊斑的机械性能仍然不清楚。在本文中,我们通过对 SCCs 模型的实验和数值模拟,探索了温度变化对囊斑反应的影响。我们获得了 3 名志愿者在 SCCs 温度分别为 36°C 和 37°C 时,由恒定角加速度引起的眼球震颤。当 SCCs 的温度降低 1°C 时,3 名志愿者的慢相速度大约降低了 3°/s,这与数值模型中囊斑变形减少 0.3-0.8μm 相对应。此外,我们通过数值模拟研究了温度降低引起的内淋巴性质变化对囊斑变形的影响。我们发现,囊斑变形的减少不是由内淋巴性质的变化引起的,而是可能由囊斑弹性模量的增加引起的。随着温度降低 1°C,囊斑的弹性模量可能增加 6-20%,表明囊斑的刚性增强。对人类囊斑温度特性的这种探索促进了缓解前庭疾病的研究。