Javascript must be enabled to continue!
Towards Development of Specular Reflection Vascular Imaging
View through CrossRef
<p>Specular reflection from tissue is typically considered as undesirable, and managed through device design. However, we believe that specular reflection is an untapped light-tissue interaction, which can be used for imaging subcutaneous blood flow. To illustrate the concept of subcutaneous blood flow visualization using specular reflection from the skin, we have developed a ray tracing for the neck and identified conditions under which useful data can be collected. Based on our model, we have developed a prototype Specular Reflection Vascular Imaging (SRVI) device and demonstrated its feasibility by imaging major neck vessels in a case study. The system consists of a video camera that captures a video from a target area illuminated by a rectangular LED source. We extracted the SRVI signal from 5 × 5 pixels areas (local SRVI signal). The correlations of local SRVIs to the SRVI extracted from all pixels in the target area do not appear to be randomly distributed, but rather form cohesive sub-regions with distinct boundaries. The obtained waveforms were compared with the ECG signal. Based on the time delays with respect to the ECG signal, as well as the waveforms themselves, the sub-regions can be attributed to the jugular vein and carotid artery. The proposed method, SRVI, has the potential to contribute to extraction of the diagnostic information that the jugular venous pulse can provide.</p>
Title: Towards Development of Specular Reflection Vascular Imaging
Description:
<p>Specular reflection from tissue is typically considered as undesirable, and managed through device design.
However, we believe that specular reflection is an untapped light-tissue interaction, which can be used for imaging subcutaneous blood flow.
To illustrate the concept of subcutaneous blood flow visualization using specular reflection from the skin, we have developed a ray tracing for the neck and identified conditions under which useful data can be collected.
Based on our model, we have developed a prototype Specular Reflection Vascular Imaging (SRVI) device and demonstrated its feasibility by imaging major neck vessels in a case study.
The system consists of a video camera that captures a video from a target area illuminated by a rectangular LED source.
We extracted the SRVI signal from 5 × 5 pixels areas (local SRVI signal).
The correlations of local SRVIs to the SRVI extracted from all pixels in the target area do not appear to be randomly distributed, but rather form cohesive sub-regions with distinct boundaries.
The obtained waveforms were compared with the ECG signal.
Based on the time delays with respect to the ECG signal, as well as the waveforms themselves, the sub-regions can be attributed to the jugular vein and carotid artery.
The proposed method, SRVI, has the potential to contribute to extraction of the diagnostic information that the jugular venous pulse can provide.
</p>.
Related Results
Mapping VIMS specular reflections on Titan’s surface during the Cassini mission
Mapping VIMS specular reflections on Titan’s surface during the Cassini mission
IntroductionDuring T58 flyby (2009), Cassini VIMS recorded 4 spectral cubes containing a very unusual signature with a very high I/F infrared peak around 5 µm in a specula...
Manifold Path Guiding for Importance Sampling Specular Chains
Manifold Path Guiding for Importance Sampling Specular Chains
Complex visual effects such as caustics are often produced by light paths containing multiple consecutive specular vertices (dubbed
specular chains)
, which...
SH-RNet: Dual-branch Network for Joint Specular Highlight and Reflection Removal
SH-RNet: Dual-branch Network for Joint Specular Highlight and Reflection Removal
Removing reflections from an image is a very important task in image processing. Many times, we capture photographs of objects inside a glass. In such cases, the image contains gla...
Towards Development of Specular Reflection Vascular Imaging
Towards Development of Specular Reflection Vascular Imaging
<p>Specular reflection from tissue is typically considered as undesirable, and managed through device design. However, we believe that specular reflection is an untapped ligh...
Feasibility of Specular Reflection Imaging for Extraction of Neck Vessel Pressure Waveforms
Feasibility of Specular Reflection Imaging for Extraction of Neck Vessel Pressure Waveforms
<p>Cardiovascular disease (CVD) is a leading cause of death worldwide and was responsible for 31% of all deaths in 2015. Changes in fluid pressures within the vessels of the ...
The Road to Achieving Business Value With Reflection Sonic Imaging
The Road to Achieving Business Value With Reflection Sonic Imaging
Reflection sonic imaging has been around for decades. However, there are still open questions on the range of applications and what can be really taken to the bank to impact our bu...
Diabetes-Induced Vascular Dysfunction and Stemness Decline Investigated via Transcription Factor-Driven Genetic Switches
Diabetes-Induced Vascular Dysfunction and Stemness Decline Investigated via Transcription Factor-Driven Genetic Switches
AbstractBackground:Diabetes mellitus precipitates cardiovascular complications through hyperglycemia, oxidative stress, and inflammation, disrupting vascular cell function. This dy...
A design of laser triangulation system with combined diffuse and specular reflection modes for dull and shiny surface measurements
A design of laser triangulation system with combined diffuse and specular reflection modes for dull and shiny surface measurements
Abstract
Conventional laser triangulations are designed to measure the depth or height on a dull or rough surface. This can be done by projecting a light perpendicul...

