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- W2611519005 abstract "Abstract Digital volume correlation (DVC) is an effective three-dimensional (3D) full-field measurement technique that can quantitatively characterize the 3D displacement of a cytoskeleton under mechanical stress. It tracks motions of sub-volumes within volume images obtained using fluorescence confocal microscopy. To reduce time consumption and plant cellular material requirements, it is very important and necessary to evaluate the quality of volumetric speckle patterns and assess their measurement error for DVC investigations. In this work, the entropy-to-intensity gradient ratio of volumetric speckle patterns was used to quantify the quality and predict the measurement error of volumetric speckle patterns for FFT-based DVC. Numerical experimental studies were performed to justify the correctness and effectiveness of this new parameter. The results indicated that the mean relative error and the standard deviation error of the measured displacement are both closely related to the entropy-to-intensity gradient ratio of the volumetric speckle pattern in the translated volume images. The mean relative error can be predicted by an empirical formula that calculates the entropy-to-intensity gradient ratio, and the standard deviation error is always below the threshold curve as long as the entropy-to-intensity gradient ratio is limited to the range from 8 to 40." @default.
- W2611519005 created "2017-05-12" @default.
- W2611519005 creator A5058620288 @default.
- W2611519005 date "2017-07-01" @default.
- W2611519005 modified "2023-09-23" @default.
- W2611519005 title "Entropy-to-intensity gradient ratio: An indirect empirical parameter for error assessment of FFT-based digital volume correlation" @default.
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- W2611519005 doi "https://doi.org/10.1016/j.ijleo.2017.05.028" @default.
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