Full-field laser speckle microscopy provides real-time imaging of superficial blood flow rate. Here we apply continuous wavelet transform to time series of speckle-estimated blood flow from each pixel of the images to map synchronous patterns in instantaneous frequency and phase on the surface of rat kidneys. The regulatory mechanism in the renal microcirculation generates oscillations in arterial blood flow at several characteristic frequencies. Our approach to laser speckle image processing allows detection of frequency and phase entrainments, visualization of their patterns, and estimation of the extent of synchronization in renal cortex dynamics
Significance: Intraoperative parameters of renal cortical microperfusion (RCM) have been associated ...
Vasomotion is spontaneous or induced rhythmic changes in vascular tone or vessel diameter that lead ...
Noninvasive blood flow imaging can provide critical information on the state of biological tissue an...
The present study was aimed to assess blood flow oscillatory patterns in rat pial microcirculation b...
Abstract Objective: Spectral analysis of laser Doppler flowmetry (LDF) signals has been widely used...
We present an improved Laser speckle imaging approach to investigate the cerebral blood flow respons...
This work shows the application of LSCI for mapping the cerebral vessels of a laboratory animal, and...
Objective: Spectral analysis of laser Doppler flowmetry (LDF) signals has been widely used in studie...
Renal autoregulation stabilizes renal blood flow to protect the glomerular capillaries and maintain ...
The wavelet transform technique, a time-frequency method with logarithmic frequency resolution, was ...
Improving noninvasive approaches to monitoring blood microcirculation is an urgent topic in modern b...
Laser Doppler velocimetry uses the frequency shift produced by the Doppler effect to measure velocit...
Laser speckle imaging (LSI) is able to provide full-field perfusion maps of the renal cortex and all...
Although Laser Doppler flowmetery (LDF) been extensively used in measurement of microvascular blood ...
Laser speckle contrast imaging (LSCI) is becoming an established method for full-field imaging of bl...
Significance: Intraoperative parameters of renal cortical microperfusion (RCM) have been associated ...
Vasomotion is spontaneous or induced rhythmic changes in vascular tone or vessel diameter that lead ...
Noninvasive blood flow imaging can provide critical information on the state of biological tissue an...
The present study was aimed to assess blood flow oscillatory patterns in rat pial microcirculation b...
Abstract Objective: Spectral analysis of laser Doppler flowmetry (LDF) signals has been widely used...
We present an improved Laser speckle imaging approach to investigate the cerebral blood flow respons...
This work shows the application of LSCI for mapping the cerebral vessels of a laboratory animal, and...
Objective: Spectral analysis of laser Doppler flowmetry (LDF) signals has been widely used in studie...
Renal autoregulation stabilizes renal blood flow to protect the glomerular capillaries and maintain ...
The wavelet transform technique, a time-frequency method with logarithmic frequency resolution, was ...
Improving noninvasive approaches to monitoring blood microcirculation is an urgent topic in modern b...
Laser Doppler velocimetry uses the frequency shift produced by the Doppler effect to measure velocit...
Laser speckle imaging (LSI) is able to provide full-field perfusion maps of the renal cortex and all...
Although Laser Doppler flowmetery (LDF) been extensively used in measurement of microvascular blood ...
Laser speckle contrast imaging (LSCI) is becoming an established method for full-field imaging of bl...
Significance: Intraoperative parameters of renal cortical microperfusion (RCM) have been associated ...
Vasomotion is spontaneous or induced rhythmic changes in vascular tone or vessel diameter that lead ...
Noninvasive blood flow imaging can provide critical information on the state of biological tissue an...