Zeng, Y.; Guo, Q.; Hu, X.; Lu, J.; Fan, X.; Wu, H.; Xu, X.; Xie, J.; Ma, R.
Improving the Signal-to-Noise Ratio of Axial Displacement Measurements of Microspheres Based on Compound Digital Holography Microscopy Combined with the Reconstruction Centering Method. Sensors 2024, 24, 2723.
https://doi.org/10.3390/s24092723
AMA Style
Zeng Y, Guo Q, Hu X, Lu J, Fan X, Wu H, Xu X, Xie J, Ma R.
Improving the Signal-to-Noise Ratio of Axial Displacement Measurements of Microspheres Based on Compound Digital Holography Microscopy Combined with the Reconstruction Centering Method. Sensors. 2024; 24(9):2723.
https://doi.org/10.3390/s24092723
Chicago/Turabian Style
Zeng, Yanan, Qihang Guo, Xiaodong Hu, Junsheng Lu, Xiaopan Fan, Haiyun Wu, Xiao Xu, Jun Xie, and Rui Ma.
2024. "Improving the Signal-to-Noise Ratio of Axial Displacement Measurements of Microspheres Based on Compound Digital Holography Microscopy Combined with the Reconstruction Centering Method" Sensors 24, no. 9: 2723.
https://doi.org/10.3390/s24092723
APA Style
Zeng, Y., Guo, Q., Hu, X., Lu, J., Fan, X., Wu, H., Xu, X., Xie, J., & Ma, R.
(2024). Improving the Signal-to-Noise Ratio of Axial Displacement Measurements of Microspheres Based on Compound Digital Holography Microscopy Combined with the Reconstruction Centering Method. Sensors, 24(9), 2723.
https://doi.org/10.3390/s24092723