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Towards a Smart Experimental Arena for Long-Term Electrophysiology Experiments

机译:迈向长期电生理实验的智能实验场

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Wireless power and data transmission have created promising prospects in biomedical research by enabling perpetual data acquisition and stimulation systems. We present a work in progress towards such a system, called the EnerCage, equipped with scalable arrays of overlapping planar spiral coils (PSC) and 3-axis magnetic sensors for focused wireless power transmission to randomly moving targets, such as small freely behaving animal subjects. The EnerCage system includes a stationary unit for 3D non-line-of-sight localization and inductive power transmission through a geometrically optimized PSC array. The localization algorithm compares the magnetic sensor outputs with a threshold to activate a PSC. All PSCs are optimized based on the worst-case misalignment, considering parasitics from the overlapping and adjacent PSCs. EnerCage also has a mobile unit attached to or implanted in the subject's body, which includes a permanent magnetic tracer for localization and back telemetry circuit for efficient closed-loop inductive power regulation. The EnerCage system is designed to enable long-term electrophysiology experiments on freely behaving small animal subjects in large experimental arenas without requiring them to carry bulky batteries. A prototype of the EnerCage system with five PSCs and five magnetic sensors achieved power transfer efficiency (PTE) of 19.6% at the worst-case horizontal misalignment of 49.1 mm ( $surd 1/3$ of the PSC radius) and coupling distance of 78 mm with a mobile unit coil, 20 mm in radius. The closed-loop power management mechanism maintains the mobile unit received power at 20 mW despite misalignments, tilting, and distance variations up to a maximum operating height of 120 mm $({rm PTE}=5%)$.
机译:通过支持永久数据采集和刺激系统,无线电力和数据传输已在生物医学研究中创造了广阔的前景。我们提出了一个名为EnerCage的系统的正在进行的工作,该系统配备了可扩展的重叠平面螺旋线圈(PSC)阵列和3轴磁传感器,用于将无线电力集中传输到随机移动的目标,例如自由活动的小型动物对象。 EnerCage系统包括一个固定单元,用于通过几何优化的PSC阵列进行3D非视线定位和感应功率传输。定位算法将磁传感器输出与阈值进行比较以激活PSC。考虑到重叠和相邻PSC的寄生效应,所有PSC都会根据最坏情况的未对准进行优化。 EnerCage还具有一个连接或植入受试者体内的可移动单元,其中包括一个用于定位的永磁体示踪剂和用于有效闭环感应功率调节的反遥测电路。 EnerCage系统设计用于在大型实验场所中对行为自由的小动物对象进行长期电生理实验,而无需携带大容量电池。 EnerCage系统的原型具有五个PSC和五个磁传感器,在最坏情况下水平偏移量为49.1 mm(PSC半径的1/3)和耦合距离为78的情况下,功率传输效率(PTE)为19.6%。带有20 mm的可移动单元线圈,半径为20 mm。闭环功率管理机制可将移动单元的接收功率保持在20 mW,尽管存在未对准,倾斜和距离变化的情况,最大运行高度为120 mm({rm PTE} = 5%)$。

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