Mirbozorgi S Abdollah, Jia Yaoyao, Canales Daniel, Ghovanloo Maysam
IEEE Trans Biomed Circuits Syst. 2016 Oct;10(5):979-989. doi: 10.1109/TBCAS.2016.2577705. Epub 2016 Sep 16.
A new wireless electrophysiology data acquisition system, built around a standard homecage, is presented in this paper, which can power up and communicate with sensors and actuators/stimulators attached to or implanted in small freely behaving animal subjects, such as rodents. Key abilities of the energized homecage (EnerCage) system is enabling longitudinal experiments with minimal operator involvement or interruption, while providing test subjects with an enriched environment closer to their natural habitat, without the burden of being tethered or carrying bulky batteries. The magnetic resonant multi-coil design used in the new EnerCage-HC2 automatically localizes the transmitted electromagnetic power from a single transmitter (Tx) coil at the bottom of the cage toward the receiver coil (Rx), carried on/in the animal body, obviating the need for tracking the animal or switching the coils. In order to increase the resonators' quality factor (Q > 166) at the desired operating frequency of 13.56 MHz, while maintaining a high self-resonance frequency [Formula: see text], they are made of wide copper foils and optimally segmented based on a set of design rules that can be adopted for experimental arenas with different shapes and dimensions. The Rx rectified voltage is regulated at a user-defined window [Formula: see text] by a Tx-Rx closed-loop power control (CLPC) mechanism that creates a volume inside the homecage with 42 mW of power delivered to the load (PDL), and a homogeneous power transfer efficiency (PTE) plane of 14% on average at ∼7 cm height, plus stability against angular mis-alignments of up to 80°.
本文介绍了一种基于标准饲养笼构建的新型无线电生理数据采集系统,该系统可为附着于或植入小型自由活动动物(如啮齿动物)体内的传感器及致动器/刺激器供电并与之通信。通电饲养笼(EnerCage)系统的关键能力在于,能以最少的操作人员干预或中断进行纵向实验,同时为实验对象提供更接近其自然栖息地的丰富环境,而无需承受系绳或携带笨重电池的负担。新型EnerCage-HC2中采用的磁共振多线圈设计,能自动将来自笼底单个发射线圈(Tx)的电磁传输功率定位到动物体内携带的接收线圈(Rx),无需跟踪动物或切换线圈。为在13.56 MHz的期望工作频率下提高谐振器的品质因数(Q>166),同时保持较高的自谐振频率[公式:见原文],谐振器由宽铜箔制成,并根据一组设计规则进行优化分段,这些规则可应用于不同形状和尺寸的实验场地。Rx整流电压通过Tx-Rx闭环功率控制(CLPC)机制在用户定义的窗口[公式:见原文]内进行调节,该机制在饲养笼内创建一个向负载输送42 mW功率(PDL)的区域,在约7 cm高度处平均功率传输效率(PTE)平面为14%,并且对高达80°的角度失准具有稳定性。