Venous valve dysfunction and induced secondary abnormal flows are closely associated with venous diseases. Thus, detailed analysis of venous valvular flow is invaluable from biological and medical perspectives. However, most of the previous studies on venous perivalvular flows were based on qualitative analysis. On the contrary, quantitative analysis of perivalvular flows has not been fully understood. In this study, we used the ultrasound speckle image velocimetry (SIV) technique, which utilizes the speckle patterns of red blood cells (RBCs) created by ultrasound waves to measure 3-D valvular flows quantitatively. The flow structures obtained with the proposed SIV technique for an in vitro model were compared with those obtained by numeric...
Vascular territories susceptible to atherosclerosis often show regions of disturbed flow. Hence, non...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
This article describes a new angle-independent method suitable for three-dimensional (3-D) blood flo...
Ultrasound-based techniques have been developed and widely used in noninvasive measurement of blood ...
Cardiovascular disease is the leading cause death in the United States. Although emergency surgery a...
Being able to measure 3D flow velocity and volumetric flow rate effectively in the cardiovascular sy...
Cardiovascular disease is the leading cause death in the United States. Although emergency surgery a...
PURPOSE: The aim of our pilot study is to consider if the new flow presentation of the vector flow (...
Ultrasound imaging of blood flow in the heart and blood vessels has become an essential part of diag...
In recent years, echo particle image velocimetry (EPIV) has been proposed to characterize intra-card...
Cardiovascular diseases remain the biggest cause of deaths worldwide. It is well known that these di...
Detailed imaging of complex blood flow may improve early diagnosis of cardiovascular disease. In cli...
We have previously investigated the change of apparent lateral speckle size caused by the direction ...
textabstractThe aim of the present study was to develop the correlation-based method for quantitativ...
Ultrasound speckle image of blood is mainly attributed by red blood cells (RBCs) which tend to form ...
Vascular territories susceptible to atherosclerosis often show regions of disturbed flow. Hence, non...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
This article describes a new angle-independent method suitable for three-dimensional (3-D) blood flo...
Ultrasound-based techniques have been developed and widely used in noninvasive measurement of blood ...
Cardiovascular disease is the leading cause death in the United States. Although emergency surgery a...
Being able to measure 3D flow velocity and volumetric flow rate effectively in the cardiovascular sy...
Cardiovascular disease is the leading cause death in the United States. Although emergency surgery a...
PURPOSE: The aim of our pilot study is to consider if the new flow presentation of the vector flow (...
Ultrasound imaging of blood flow in the heart and blood vessels has become an essential part of diag...
In recent years, echo particle image velocimetry (EPIV) has been proposed to characterize intra-card...
Cardiovascular diseases remain the biggest cause of deaths worldwide. It is well known that these di...
Detailed imaging of complex blood flow may improve early diagnosis of cardiovascular disease. In cli...
We have previously investigated the change of apparent lateral speckle size caused by the direction ...
textabstractThe aim of the present study was to develop the correlation-based method for quantitativ...
Ultrasound speckle image of blood is mainly attributed by red blood cells (RBCs) which tend to form ...
Vascular territories susceptible to atherosclerosis often show regions of disturbed flow. Hence, non...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
This article describes a new angle-independent method suitable for three-dimensional (3-D) blood flo...