Laser Doppler Imaging

Laser Doppler Imaging is a noninvasive optical technique that maps tissue blood flow, making it useful for studying microcirculation and vascular function in biological systems. The method illuminates tissue with low-power laser light and analyzes Doppler frequency shifts produced when light scatters from moving red blood cells; the resulting signal is converted into a spatial map of perfusion. Researchers use these maps to assess blood-flow changes during wound healing, inflammation, vascular dysfunction, and experimental treatments. Because it can visualize perfusion across relatively broad tissue areas without direct contact, Laser Doppler Imaging supports longitudinal studies of circulation in both clinical and laboratory models.

Laser Doppler Imaging - Related Videos

Research

JoVE Journal - Behavior

Using Laser Doppler Imaging and Monitoring to Analyze Spinal Cord Microcirculation in Rat

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Cited by 5 •

2018

Here we present a combination of laser Doppler perfusion imaging (LDPI) and laser Doppler perfusion monitoring (LDPM) to measure spinal cord local blood flows and oxygen saturation (SO2), as well as a standardized procedure for introducing spinal cord trauma on rat.

Laser Doppler Perfusion Imaging in the Mouse Hindlimb

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Cited by 8 •

2021

Here, we present a protocol that demonstrates the technique and necessary controls for Laser Doppler perfusion imaging to measure blood flow in the mouse hindlimb.

Laser Doppler: A Tool for Measuring Pancreatic Islet Microvascular Vasomotion In Vivo

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Cited by 7 •

2018

Pancreatic islet microvascular vasomotion regulates islet blood distribution and maintains the physiological function of islet β cells. This protocol describes using a laser Doppler monitor to determine the functional status of pancreatic islet microvascular vasomotion in vivo and to assess the contributions of pancreatic islet microcirculation to pancreatic-related diseases.

Doppler Ultrasonography for Live Imaging and Quantification of Ovarian Vascular Function in Mice

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Cited by 1 •

2025

Changes in ovarian blood flow during the preovulatory period are essential for ovulation. Doppler ultrasonography has been used in humans and large animals to assess ovarian hemodynamics and perfusion. A protocol is presented for applying Doppler ultrasonography to evaluate ovarian hemodynamics during the preovulatory and periovulatory phases in mice.

Non-Invasive High-Frequency Ultrasound and Doppler Imaging of Rat Brain Hemodynamics

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2025

Source: Giustetto, P., et. al., Non-invasive Parenchymal, Vascular and Metabolic High-frequency Ultrasound and Photoacoustic Rat Deep Brain Imaging. J. Vis. Exp. (2015)In this video, we demonstrate the use of high-frequency ultrasound and photoacoustic imaging to study the vasculature and hemoglobin content in the rat brain. This method provides detailed insights into cerebral perfusion and blood oxygenation, enabling non-invasive analysis of brain vascular structures and oxygen distribution.

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