首页> 外文会议>ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems >CHARACTERIZING THE SOURCES OF CURRENT GENERATED BY A MEMBRANE-BASED HAIR CELL SENSOR
【24h】

CHARACTERIZING THE SOURCES OF CURRENT GENERATED BY A MEMBRANE-BASED HAIR CELL SENSOR

机译:表征由膜基毛细胞传感器产生的电流源

获取原文

摘要

Recently, researchers have developed a method to construct a membrane-based hair cell sensor that generates a measurable current in response to physical disturbance of the hair. Representing the cell membrane, a phospholipid bilayer is formed at the interface of two lipid-encased hydrophilic volumes and a hair is located in a center of one of the volumes act a shaking element. In this work, we study the current generated by free vibration of the hair in a revised hair cell embodiment that uses a hair that is physically supported by the surrounding substrate. The current generated by the sensor is measured by a patch clamp amplifier, and the net charge displaced across the membrane during motion of the hair is computed. Experiments performed with a complete hair cell sensor and various control cases that lack a bilayer indicate that the current measured at OmV applied across the membrane is due to vibration of the positive electrode that changes the local electromagnetic field. Experiments conducted with both gel-and liquid-supported membranes indicate that gel-supported membranes have a higher sensitivity of (0.066 pC/mV) than liquid-supported membranes (0.015 pC/mV) as the applied voltage increases. Lastly, the motion of the tip of the hair is imaged using a high-speed camera. This test shows that the hair oscillates at the same frequency observed in the measured current traces, which indicates that transverse bending of the bilayer is the cause for the time rate of change in capacitance in the membrane that produces a voltage-dependent current.
机译:最近,研究人员已经开发来构造响应于头发的物理干扰产生可测量电流的基于膜的毛细胞传感器的方法。表示细胞膜,在两种脂质包封的亲水性卷的界面处形成磷脂双层和吹风位于的卷中的一个充当振荡元件的中心。在这项工作中,我们研究在使用在物理上由周围衬底支撑的毛发的订正毛细胞实施方式的毛发的自由振动产生的电流。由传感器产生的电流由一个膜片钳放大器测量,并且在头发的运动期间通过膜移动的净电荷进行计算。实验用完整的毛细胞传感器和缺少的双层表明由于改变所述局部电磁场的正极的振动施加在OMV测量的电流穿过膜是各种控制的情况下执行的。两者凝胶和液体负载的膜进行的实验表明,凝胶支持膜具有比负载的液体的膜具有更高的灵敏度(0.066 PC /毫伏)(0.015 PC /毫伏)作为所施加的电压增加。最后,头发的尖端的运动是使用高速照相机成像。这个试验表明,头发振荡在测得的电流的痕迹,这表明横向双层的弯曲观察到的相同频率为在电容中产生一个电压相关的电流的膜的时间变化率的原因。

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