...
首页> 外文期刊>Acta biomaterialia >Material properties of photomechanical infrared receptors in pyrophilous Melanophila beetles and Aradus bugs
【24h】

Material properties of photomechanical infrared receptors in pyrophilous Melanophila beetles and Aradus bugs

机译:嗜热的黑变种甲虫和A虫的光机械红外受体的材料特性

获取原文
获取原文并翻译 | 示例

摘要

Jewel beetles of the genus Melanophila and some pyrophilous species of the flat bugs genus Aradus show a pyrophilous behaviour and have developed so-called photomechanical infrared (IR) receptors. In a spherical photomechanical IR sensillum incoming IR radiation is converted into micromechanical action, finally stimulating the dendritic tip of a mechanosensitive sensory cell. The tip is located inside a tiny cuticular sphere with a diameter of about 12 μm. The material properties of the different cuticular components of this sphere are of great importance for stimulus generation. We measured the modulus and hardness of the outer exocuticular shell of the sphere and the mesocuticle inside the core. Measurements were made by nanoindentation at sensilla which were partly cut open under dry as well as under rewetted (i.e. quasi-natural) conditions. We found that in the rewetted sensilla the outer exocuticular shell of the sphere in the Melanophila sensillum is about 50% harder and 20% stiffer than reference exocuticle, and that in both species especially the rewetted mesocuticle of the inner core of the IR sensilla is significantly softer (about 80% in Melanophila) and more compliant (about 90% also in Melanophila) than the reference mesocuticle. The findings can be interpreted as special adaptations of the cuticular microdomains of photomechanical infrared sensilla to enhance thermomechanical performance and, thereby, sensitivity.
机译:Melanophila属的珠宝甲虫和Aradus扁平虫的一些嗜热菌显示出嗜热行为,并开发了所谓的光机械红外(IR)受体。在球形光机械IR感应器中,入射的IR辐射转换为微机械作用,最终刺激机械敏感感觉细胞的树突尖端。尖端位于直径约12μm的微小表皮球内部。该球体的不同表皮成分的材料特性对于产生刺激非常重要。我们测量了球的外表皮壳和核心内的中表皮的模量和硬度。通过在感测器处的纳米压痕进行测量,所述感测器在干燥以及在再湿润(即准自然)条件下被部分切开。我们发现,在经过重拍的感官中,Melanophila sensillum球体的表皮外层比参考外表皮坚硬约50%,比表皮硬约20%,并且在这两个物种中,特别是IR感官的内芯的经重拍的中表皮显着比参考中皮更柔软(在Melanophila中约为8​​0%)和顺应性(在Melanophila中也约为90%)。这些发现可以解释为对光机械红外传感器的表皮微区的特殊适应,以增强热机械性能,从而提高灵敏度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号