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首页> 外文期刊>Acta polytechnica >Inductive Contactless Distance Measurement Intended for a Gastric Electrical Implant
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Inductive Contactless Distance Measurement Intended for a Gastric Electrical Implant

机译:用于胃电植入物的电感式非接触式距离测量

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摘要

For a gastric electrical stimulation project we are developing a system for on-demand switching according to the volume or elongation of the stomach wall. The system is to be implanted into the human abdomen, which limits the utilization of many possible solutions and types of sensors. Magnetic induction has been agreed as the most suitable principle, despite its direction dependency and the need of multi-axial and multiple probes for precision measurements. Possible configurations are discussed as well as the complexity of the necessary electronics and the implantation itself. For detecting food consumption, perfect precision is fortunately not necessary, but a certain compromise will still be necessary for the final system. A simple two-coil system – a transmitter and receiver and a system with a three-axial coil – have already been realized. The first system has already been successfully tested in-vivo on dogs by our US colleagues. However, if the implantation is badly performed, and the coils are completely out of axis, the system cannot sense relative changes in volume properly. The three-axial sensor presented here eliminates these problems. More complex arrangements emerging from magnetic tracking are discussed, because laboratory studies of stomach movements may require them.?
机译:对于胃电刺激项目,我们正在开发一种根据胃壁的体积或伸长率按需切换的系统。该系统将被植入人体腹部,这限制了许多可能的解决方案和传感器类型的使用。尽管电磁感应具有方向依赖性,并且需要使用多轴和多探头进行精确测量,但仍被认为是最合适的原理。讨论了可能的配置以及必需的电子设备和植入物本身的复杂性。为了检测食物消耗,幸运的是,不需要精确的精度,但是最终系统仍然需要一定的折衷。一个简单的两线圈系统-发射器和接收器以及带有三轴线圈的系统-已经实现。我们的美国同事已经成功地在犬中对第一个系统进行了体内测试。但是,如果植入操作不当,并且线圈完全不在轴线上,则系统将无法正确检测到体积的相对变化。此处介绍的三轴传感器消除了这些问题。讨论了磁跟踪产生的更复杂的安排,因为对胃运动的实验室研究可能需要它们。

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