High-sensitivity microwave biosensor for testing saccharomycetes and application thereof
A biosensor and high-sensitivity technology, applied in the field of biosensors, can solve problems such as complex and cumbersome operations, low detection sensitivity, and long detection time, and achieve the effects of reducing costs, improving sensitivity and accuracy, and saving detection time
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Embodiment 1
[0027] The following introduces Embodiment 1 of a high-sensitivity microwave biosensor for yeast testing provided by the present invention, see Figure 1 to Figure 3 , embodiment one includes:
[0028] See Figure 1 to Figure 3 As shown, a high-sensitivity microwave biosensor for yeast testing includes a first substrate 100 and a second substrate 200 stacked in sequence, the first substrate 100 is provided with a microfluidic channel, and the second substrate 200 is provided with a microwave resonator.
[0029] The microfluidic channel includes a cavity 110, and the cavity 110 is used to accommodate a quantitative amount of the solution to be tested.
[0030] The microwave resonator includes a metal capacitor structure 210 and a metal inductance structure 220, the metal capacitor structure 210 includes a cascaded interdigitated capacitor, the metal inductive structure 220 includes a serpentine inductor, and the cascaded interdigitated capacitor and the serpentine inductor are...
Embodiment 2
[0043] The second embodiment of a high-sensitivity microwave biosensor for yeast testing provided by the present invention is introduced below. The second embodiment is realized based on the first embodiment above, and is expanded to a certain extent on the basis of the first embodiment.
[0044] In this embodiment, the microwave resonator proposed in the present invention is composed of a meandering inductor and two cascaded interdigitated capacitors connected in parallel. The meandering inductor has 10 coils of metal wires and 20 corners in total. The equivalent The circuit can provide more accurate equivalent circuit modeling for the subsequent structural analysis of the resonator. The operating frequency of the microwave resonator can be determined by the following equation:
[0045]
[0046] Among them, L and C represent the inductance value of the meandering inductor and the capacitance value of the cascaded interdigitated capacitor respectively. The selection of the ...
Embodiment 3
[0051] The third application example of a high-sensitivity microwave biosensor for yeast testing provided by the present invention is introduced below. The third example is implemented based on the first example above, and is expanded to a certain extent on the basis of the first example.
[0052] This embodiment provides the application of a high-sensitivity microwave biosensor for yeast testing in the detection of yeast solution. The electromagnetic flux of the microwave resonator has the ability to interact with the yeast solution to be tested: biological solutions containing different amounts of yeast exhibit different dielectric properties, and the difference in dielectric properties will cause the electromagnetic flux of the microwave resonator to generate Different changes cause the resonant frequency of the microwave resonator to shift, and the relationship between the resonant frequency shift and different amounts of yeast solutions is used to characterize the biosensi...
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