Surface acoustic wave (SAW) acoustophoresis: now and beyond.

Surface acoustic wave (SAW) acoustophoresis: now and beyond.
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DOI:
10.1039/c2lc90076a
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发表时间:
2012-08-21
期刊:
影响因子:
6.1
通讯作者:
Huang TJ
Huang TJ
中科院分区:
工程技术1区
文献类型:
--
作者:
Lin SC;Mao X;Huang TJ

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微物体的芯片上操作长期以来一直被寻求以促进基础生物学研究和即时诊断系统。近年来,基于表面声波(SAW)的微物体操纵(即,声表面波(SAW声电泳)由于其许多优点,如无创性、多功能性、制造简单、易于操作以及方便与其他片上单元集成而获得了显著的发展势头。SAW声电泳对于芯片实验室应用特别有用,其中高度期望紧凑且非侵入性的生物操纵技术。在这篇焦点文章中,我们讨论了声表面波声电泳的最新进展,并提供了一些关于这个动态领域未来发展的观点。
On-chip manipulation of micro-objects has long been sought to facilitate fundamental biological studies and point-of-care diagnostic systems. In recent years, research on surface acoustic wave (SAW) based micro-object manipulation (i.e., SAW acoustophoresis) has gained significant momentum due to its many advantages, such as non-invasiveness, versatility, simple fabrication, easy operation, and convenient integration with other on-chip units. SAW acoustophoresis is especially useful for lab-on-a-chip applications where a compact and non-invasive biomanipulation technique is highly desired. In this Focus article, we discuss recent advancements in SAW acoustophoresis and provide some perspectives on the future development of this dynamic field.
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