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Smartphone-based biosensing platform evolution: Implementation of electrochemical analysis capabilities

机译:基于智能手机的生物传感平台演化:电化学分析能力的实现

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Lab-on-Chip technologies offer great opportunities for the democratization of in-vitro medical diagnostics to the consumer-market. Despite the limitations set by the strict instrumentation and control requirements of certain families of these devices, new solutions are emerging. Smartphones now routinely demonstrate their potential as an interface of choice for operating complex, instrumented Lab-on-Chips. The sporadic nature of home-based in-vitro medical diagnostics testing calls for the development of systems capable of evolving with new applications or new technologies for Lab-on-Chip devices. We present in this work how we evolved the first generation of a smartphone/Lab-on-Chip platform designed for evolvability. We demonstrate how reengineering efforts can be confined to the mobile-software layer and illustrate some of the benefits of building evolvable systems. We implement electrochemical capabilities on our platform prototype and carry out cyclic voltammetry to measure dopamine concentrations over several orders of magnitude.
机译:实验室技术为消费者市场提供了对体外医疗诊断的民主化的巨大机会。尽管这些设备某些家庭的严格仪器和控制要求设定了局限性,但新的解决方案正在出现。智能手机现在经常展示其作为操作复杂,仪器实验室芯片选择的选择的潜力。基于家庭的体外医疗诊断测试的偶发性质呼吁开发能够与新应用程序或新技术的系统开展的系统或实验室设备的新技术。我们在这项工作中展示了我们如何演变的第一代智能手机/实验室平台,专为进化而设计。我们展示了如何局限于移动软件层的努力,并说明了构建可无法扩大系统的一些好处。我们在我们的平台原型上实施电化学能力,并进行循环伏安,以测量多巴胺浓度在几个数量级上。

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