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Assessing a nanothings system to monitor endocrine diseases automatously

机译:评估纳米物质系统以自动监测内分泌疾病

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Nano-communications have tremendous potential for applications in the biomedical, environmental, industrial and military fields. Molecular communication is a new communication paradigm which allows nanomachines to exchange information using molecules as carrier. This is the most promising communication method within nanonetworks, since using electromagnetic waves is not very likely due to the size of the nanomachines. In molecular communication, information is encoded onto molecules at senders and the molecules propagate to receivers in a controlled manner. This control is one of the most important challenges, and this paper will describe some solutions for molecular communication. Since molecular communication offers means to transport information-encoded molecules to receivers and allows biological and artificially-created components to communicate with each other, future applications for health care are discussed in this paper. Results are obtained from computerized simulation scenarios selecting appropriate parameters for optimal performance.
机译:纳米通信在生物医学,环境,工业和军事领域的应用具有巨大的潜力。分子通信是一种新的通信范式,它允许纳米机器使用分子作为载体来交换信息。这是纳米网络中最有前途的通信方法,因为由于纳米机器的大小,不太可能使用电磁波。在分子通信中,信息在发送者处被编码到分子上,并且分子以受控方式传播到接收者。这种控制是最重要的挑战之一,本文将介绍分子通讯的一些解决方案。由于分子通信提供了将信息编码的分子运输到接收者的方法,并允许生物成分和人工创建的成分相互通信,因此本文讨论了医疗保健的未来应用。从计算机仿真方案中选择合适的参数以获得最佳性能,即可获得结果。

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