Origins and Future of Microfluidics

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Meng, X., Wen, K., Zhao, J., Han, Y., Ghandhi, S. A., Kaur, S. P., Brenner, D. J., Turner, H. C., Amundson, S. A., & Lin, Q. (2024). Microfluidic measurement of intracellular mRNA with a molecular beacon probe towards point-of-care radiation triage. Sensors & Diagnostics, 3(8), 1344–1352. https://doi.org/10.1039/d4sd00079j
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Schlotter, T., Kloter, T., Hengsteler, J., Yang, K., Zhan, L., Ragavan, S., Hu, H., Zhang, X., Duru, J., Vörös, J., Zambelli, T., & Nakatsuka, N. (2024). Aptamer-Functionalized Interface Nanopores Enable Amino Acid-Specific Peptide Detection. ACS Nano, 18(8), 6286–6297. https://doi.org/10.1021/acsnano.3c10679
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Lee, S., Ahn, J., Kim, S.-M., Kim, D., Yeom, J., Kim, J., Park, J. Y., & Ryu, B.-Y. (2023). Fluid dynamic design for mitigating undesired cell effects and its application to testis cell response testing to endocrine disruptors. Journal of Biological Engineering, 17(1). https://doi.org/10.1186/s13036-023-00369-1
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