instill 发表于 2025-3-23 09:59:05
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https://doi.org/10.1007/1-59745-107-X-of-the-art research progresses in simplification of user operational procedures and development of equipment-free signal readout approaches. In addition, the basics of paper-based microfluidics including a short history of paper-based microfluidics, a comparison of paper-based and conventional plasJOT 发表于 2025-3-23 22:03:43
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Microfluidic Technologies and Platforms for Protein Crystallography,y. A lot of microfluidic based technologies and platforms have been developed to utilize their unique characteristics. In this chapter, microfluidic technologies and platforms for protein crystallography is summarized. In particular, the application of microfluidics for high-throughput protein cryst肌肉 发表于 2025-3-24 04:28:09
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Worms on a Chip,ll sorts of worm maneuvers, such as sorting, immobilization, long-term imaging, confined culture, and biomechanics. The proposed manipulation repertoire then leads to realizations of a wide applications. Examples may include drug screening for pharmaceutics, point-of-care testing (POCT) for diseasesSTEER 发表于 2025-3-24 14:36:40
Microfluidic Devices for Gamete Processing and Analysis, Fertilization and Embryo Culture and Charathe ART field, by providing integrated and automated platforms. Furthermore, the use of microfluidics can introduce new approaches by performing some steps of the entire protocol. In this chapter, we summarize and discuss microfluidic developments in the field of ART, and specifically devices for ga下垂 发表于 2025-3-24 16:40:26
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In Vitro Tissue Construction for Organ-on-a-Chip Applications,structures with the shapes of point, line and plane, and methods to manipulate and assemble the cellular structures for formation of macroscopic cellular tissues. Furthermore, we show that organ-on-a-chip, combination of the cellular tissues and microfluidic devices, can find applications in biologi不规则的跳动 发表于 2025-3-25 03:12:21
Nanopore Device for Single-Molecule Sensing Method and Its Application, 11.3), application studies of nanopore sensing (Sect. 11.4), the selective and accuracy improvement studies of nanopore-sensing (Sect. 11.5), recent novel nanopore platform studies (Sect. 11.6), and the summary and future of the nanopore-sensing method (Sect. 11.7) are introduced.