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Security Assessment of Cyberphysical Digital Microfluidic Biochips

机译:网络物理数字微流控生物芯片的安全性评估

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摘要

A digital microfluidic biochip (DMFB) is an emerging technology that enables miniaturized analysis systems for point-of-care clinical diagnostics, DNA sequencing, and environmental monitoring. A DMFB reduces the rate of sample and reagent consumption, and automates the analysis of assays. In this paper, we provide the first assessment of the security vulnerabilities of DMFBs. We identify result-manipulation attacks on a DMFB that maliciously alter the assay outcomes. Two practical result-manipulation attacks are shown on a DMFB platform performing enzymatic glucose assay on serum. In the first attack, the attacker adjusts the concentration of the glucose sample and thereby modifies the final result. In the second attack, the attacker tampers with the calibration curve of the assay operation. We then identify denial-of-service attacks, where the attacker can disrupt the assay operation by tampering either with the droplet-routing algorithm or with the actuation sequence. We demonstrate these attacks using a digital microfluidic synthesis simulator. The results show that the attacks are easy to implement and hard to detect. Therefore, this work highlights the need for effective protections against malicious modifications in DMFBs.
机译:数字微流控生物芯片(DMFB)是一项新兴技术,可为医疗现场诊断,DNA测序和环境监测提供小型化的分析系统。 DMFB降低了样品和试剂消耗的速率,并使测定分析自动化。在本文中,我们提供了对DMFB的安全漏洞的首次评估。我们确定对DMFB的结果操纵攻击,这些攻击会恶意更改测定结果。在DMFB平台上执行了两种对血清进行酶促葡萄糖分析的结果操纵攻击。在第一次攻击中,攻击者调整葡萄糖样品的浓度,从而修改最终结果。在第二次攻击中,攻击者会篡改化验操作的校准曲线。然后,我们确定拒绝服务攻击,攻击者可以通过篡改液滴路由算法或启动序列来破坏检测操作。我们使用数字微流合成模拟器演示了这些攻击。结果表明,这些攻击易于实施且难以检测。因此,这项工作强调了针对DMFB中恶意修改的有效保护的需要。

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