研究目的
To analyze the behavior of oscillating cutaneous blood ?ow components using LSCI and LDF methods and to investigate the relation between LDF and LSCI signals.
研究成果
The spectral energy of oscillations in the 0.01-2 Hz frequency range of the temporal recordings of speckle contrast carries the same information as the conventional LDF recordings and can be associated with the same physiological mechanisms. The LDF spectral analysis methodology can be extended to LSCI.
研究不足
The study did not include volunteers with certain chronic diseases, which could have an impact on the study results. The absolute values of the spectral energy are very difficult to compare due to the peculiarities of measuring blood perfusion by both techniques.
1:Experimental Design and Method Selection:
Continuous wavelet transform was applied to construct a time-frequency representation of a signal.
2:Sample Selection and Data Sources:
Fourteen healthy subjects participated in the study. LDF and LSCI samples were collected from the front side of the palm.
3:List of Experimental Equipment and Materials:
A 10 mW laser source operating at 635 nm wavelength, CMOS-camera DCC 3260M, camera lens MVL25M23, and a polarizer were used.
4:Experimental Procedures and Operational Workflow:
Measurements were carried out in a quiet room at 20-24 ?C after pre-adaptation to room conditions. The duration of each measurement was 10 minutes.
5:Data Analysis Methods:
Spearman’s correlation was used to compare the average values of the two signals. Wavelet cross-correlation analysis was also carried out.
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camera lens
MVL25M23
Thorlabs, Inc.
Used with the CMOS-camera to record raw speckle images
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laser source
635 nm wavelength
Edmund Optics Inc.
Illumination of the object under study
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CMOS-camera
DCC 3260M
Thorlabs, Inc.
Recording raw speckle images
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polarizer
Rejected specular re?ections from the skin surface
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experimental system
LAKK-02
SPE “LAZMA” Ltd.
Measurement of perfusion
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