Mostrando 161 - 180 Resultados de 705 Para Buscar '"Lab on a chip"', tiempo de consulta: 0.18s Limitar resultados
  1. 161
    “…Infusions to small biological structures and lab-on-a-chip applications require ultra-low flow rates and will benefit from the ability to expend no power in the blocked-flow state. …”
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  2. 162
    “…However, for portable lab-on-a-chip or point-of-care systems in low-resource settings, the availability of energy sources is a bottleneck. …”
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  3. 163
    “…The qualitative sensitivity is observed by comparing the limit of detection (LOD) while performing the LAMP–XO diagnosis test on the proposed lab-on-a-chip EWOD platform, alongside standard LAMP laboratory tests. …”
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  4. 164
    por Gucluer, Sinan
    Publicado 2023
    “…Microfluidic devices have revolutionized the field of lab-on-a-chip by enabling precise manipulation of small fluid volumes for various biomedical applications. …”
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  5. 165
    “…Insurmountable detection challenges will impede the development of many of the next-generation of lab-on-a-chip devices (e.g., point-of-care and real-time health monitors). …”
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  6. 166
    por Tsai, Chia-Hung Dylan, Lin, Xin-Yu
    Publicado 2019
    “…Microfluidic mixing is needed for Lab-on-a-chip applications in both low flow speed, such as medium perfusion for cell culture, and high flow speed, such as high-speed sensing on a point-of-care device. …”
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  7. 167
    “…This device has the capability to replace external pumping systems with a simple, integrated, lab-on-a-chip component.…”
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  8. 168
    “…However, these are time-consuming and fail to detect low-level parasitemia. Biosensors and lab-on-a-chip devices, as reported to different applications, usually offer high sensitivity, specificity, and ease of use at the point of care. …”
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  9. 169
    “…This work is applicable to lab-on-a-chip based detection and trapping of non-magnetic entities bacteria and cells.…”
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  10. 170
    “…The use of electric fields for signalling and control in liquids is widespread, spanning bioelectric activity in cells to electrical manipulation of microstructures in lab-on-a-chip devices. However, an appropriate tool to resolve the spatio-temporal distribution of electric fields over a large dynamic range has yet to be developed. …”
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  11. 171
    “…In the paper, the microaquarium fabricated in a form of entirely glass lab-on-a-chip for culturing and microscale study of microorganisms has been presented. …”
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  12. 172
    por Lemuth, Karin, Rupp, Steffen
    Publicado 2015
    “…The introduction of closed-tube systems as well as lab-on-a-chip devices further resulted in a higher automation degree with a reduced contamination risk. …”
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  13. 173
    “…These findings and insights will potentially lead to novel types of self-cleaning and antifouling strategies, which may have a relevant practical impact on different fields and applications including lab-on-a-chip devices and water quality analyzers.…”
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  14. 174
    “…The manipulation of superparamagnetic beads has attracted various lab on a chip and magnetic tweezer platforms for separating, sorting, and labeling cells and bioentities, but the irreversible aggregation of beads owing to magnetic interactions has limited its actual functionality. …”
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  15. 175
  16. 176
    “…These results indicate that such a holographic laser embellishment of microfluidic devices is simple, flexible and easy to access, which has great potential in lab-on-a-chip applications of biological culture, chemical analyses and optofluidic devices.…”
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  17. 177
    por Salari, Alinaghi, Dalton, Colin
    Publicado 2019
    “…Transport and mixing of minute amounts of biological fluids are significantly important in lab-on-a-chip devices. It has been shown that the electrothermal technique is a suitable candidate for applications involving high-conductivity biofluids, such as blood, saliva, and urine. …”
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  18. 178
    “…The book provides the broad knowledge on electromigration techniques including: theory of CE, description of instrumentation, theory and practice in micellar electrokinetic chromatography, isotachophoresis, capillary isoelectric focusing, capillary and planar electrochromatography (including description of instrumentation and packed and monolithic column preparation), 2D-gel electrophoresis (including sample preparation) and lab-on-a-chip systems. The book also provides the most recent examples of applications including food, environmental, pharmaceutical analysis as well as proteomics.…”
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  19. 179
    “…The platform consists of lab-on-a-chip and open-source software that enables the determination of DEP spectra and electric parameters. …”
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  20. 180
    “…Recently, user-friendly and cost-efficient Lab-on-a-Chip devices have been developed towards isolating and counting cell sub-populations for diagnostic purposes. …”
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