首页> 外文期刊>Journal of Neuroscience Methods >Using miniature sensor coils for simultaneous measurement of orientation and position of small, fast-moving animals.
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Using miniature sensor coils for simultaneous measurement of orientation and position of small, fast-moving animals.

机译:使用微型传感器线圈同时测量小型快速移动动物的方向和位置。

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摘要

A system is described that measures, with a sampling frequency of 1 kHz, the orientation and position of a blowfly (Calliphora vicina) flying in a volume of 0.4 x 0.4 x 0.4 m3. Orientation is measured with a typical accuracy of 0.5 degrees, and position with a typical accuracy of 1 mm. This is accomplished by producing a time-varying magnetic field with three orthogonal pairs of field coils, driven sinusoidally at frequencies of 50, 68, and 86 kHz, respectively. Each pair induces a voltage at the corresponding frequency in each of three miniature orthogonal sensor coils mounted on the animal. The sensor coils are connected via thin (12-microm) wires to a set of nine lock-in amplifiers, each locking to one of the three field frequencies. Two of the pairs of field coils produce approximately homogeneous magnetic fields, which are necessary for reconstructing the orientation of the animal. The third pair produces a gradient field, which is necessary for reconstructing the position of the animal. Both sensor coils and leads are light enough (0.8-1.6 mg for three sensor coils of 40-80 windings, and 6.7 mg/m for the leads, causing a maximal load of approximately 5.7 mg) not to hinder normal flight of the animal (typical weight 80 mg). In general, the system can be used for high-speed recordings of head, eye or limb movements, where a wire connection is possible, but the mechanical load on the moving parts needs to be very small.
机译:描述了一种系统,该系统以1 kHz的采样频率测量以0.4 x 0.4 x 0.4 m3的体积飞行的蝇蝇(Calliphora vicina)的方向和位置。方向测量的典型精度为0.5度,位置测量的典型精度为1 mm。这是通过使用三个正交的励磁线圈对产生时变磁场来实现的,这三个磁场线圈分别以50、68和86 kHz的频率进行正弦驱动。每对在安装在动物上的三个微型正交传感器线圈的每一个中,以相应的频率感应一个电压。传感器线圈通过细(12微米)线连接到一组九个锁定放大器,每个锁定到三个场频之一。成对的线圈中的两对产生近似均匀的磁场,这对于重建动物的方向是必需的。第三对产生一个梯度场,这对于重建动物的位置是必需的。传感器线圈和导线都足够轻(三个40-80匝传感器线圈的重量为0.8-1.6毫克,导线为6.7毫克/米,最大负载约为5.7毫克),不会妨碍动物的正常飞行(通常体重80毫克)。通常,该系统可用于可以进行导线连接的头部,眼睛或四肢运动的高速记录,但是运动部件上的机械负载必须非常小。

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