可重构性
微流控
微尺度化学
灵活性(工程)
计算机科学
杠杆(统计)
可扩展性
功能(生物学)
纳米技术
微流控芯片
实验室晶片
计算机体系结构
嵌入式系统
人工智能
材料科学
电信
数学教育
统计
生物
进化生物学
数据库
数学
作者
Federico Paratore,Vesna Bacheva,Moran Bercovici,Govind V. Kaigala
标识
DOI:10.1038/s41570-021-00343-9
摘要
Lab-on-a-chip devices leverage microfluidic technologies to enable chemical and biological processes at small scales. However, existing microfluidic channel networks are typically designed for the implementation of a single function or a well-defined protocol and do not allow the flexibility and real-time experimental decision-making essential to many scientific applications. In this Perspective, we highlight that reconfigurability and programmability of microfluidic platforms can support new functionalities that are beyond the reach of current lab-on-a-chip systems. We describe the ideal fully reconfigurable microfluidic device that can change its shape and function dynamically, which would allow researchers to tune a microscale experiment with the capacity to make real-time decisions. We review existing technologies that can dynamically control microscale flows, suggest additional physical mechanisms that could be leveraged towards the goal of reconfigurable microfluidics and highlight the importance of these efforts for the broad scientific community.
科研通智能强力驱动
Strongly Powered by AbleSci AI