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We propose scanning localized surface plasmon microscopy of mixed lipid bilayers with submicron domain structures.
For applying VTIQ in the clinical routine we propose scanning and assessing breast lesions with the standard BI-RADS categories.
Teshima and Innan [ 7] propose scanning for this specific pattern as a method of identifying such regions undergoing selection.
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In Figure 7, the proposed scanning method for quantization table 2, 5 and 7 is described.
An intensive simulation study shows that our proposed scanning algorithm indeed works well as designed.
Such a PSD system with high reliability and accuracy can be further used for a proposed scanning PSD microscopy.
We can control bit rates precisely and get better coding results, as is shown in the simulations of the next Section, using the proposed scanning method.
As can be seen in Figure 7, the different bit rates can be assigned as the quantization tables are flexibly generated in the proposed scanning method, while seven fixed quantization tables are used in the conventional system.
As is shown in Figure 10, the proposed scanning method exhibits better coding performance than the method in which the quantization level increases subsequently from low frequency components to high frequency components.
As a result, the proposed scanning pattern was designed for 2D oversampling as required by the processing algorithm of STdOCT.
The proposed scan is inspired not only from [32] but also from [34, 35].
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