DocumentCode :
2478278
Title :
P3A-6 Non-Invasive Micro-Vascular Ultrasound Elastography: Comparisons with M-Mode Strain Measurements in Rat Models of Hypertension
Author :
Maurice, Roch L. ; Fromageau, Jérémie ; Stoyanova, Ékatherina ; Qin, Zhao ; Peng, Junzheng ; Hamet, Pavel ; Tremblay, Johanne ; Cloutier, Guy
Author_Institution :
Montreal Univ. Hosp., Montreal
fYear :
2007
fDate :
28-31 Oct. 2007
Firstpage :
1728
Lastpage :
1731
Abstract :
Noninvasive micro-vascular ultrasound elastography (MicroNIVE) was recently proposed for in situ phenotyping in rat models of hypertension through the assessment of mechanical properties of carotid arteries. This paper reports comparisons between MicroNIVE and M-Mode strain measurements. Brown Norway male rats (n = 5) were investigated over 24 weeks. The common carotid arteries were imaged with an ultrasound biomicroscope equipped with a 40-MHz central frequency probe and an external workstation to collect radio-frequency (RF) data. Time-sequences of RF and M-mode signals were recorded over several consecutive cardiac cycles. MicroNIVE strain cartographies were computed for each pair of successive RF images with the Lagrangian Speckle Model Estimator. Diastolic strain (sD) and systolic strain (ss) parameters were estimated. M- mode strain estimations were computed as sM(t) = (w(t)-wmax )/wmax , with w(t) and wmax being the wall thicknesses at time "t" and at end-diastole, respectively. MicroNIVE diastolic and systolic strains were consistent with a Pearson correlation coefficient (r) of 0.75 (p < 10-11). M-mode and MicroNIVE strain measurements were correlated with r = 0.74 (p < 10-5) between sM and sD and r = 0.67 (p < 10-4) between sM and ss. Corroborated by Bland-Altman plots, M-mode and MicroNIVE were found in very good concordance.
Keywords :
biomechanics; biomedical ultrasonics; biorheology; blood vessels; medical image processing; Bland-Altman plots; M-Mode strain measurements; MicroNIVE strain cartographies; MicroNIVE strain measurements; artery mechanical property; brown Norway male rats; carotid artery; diastolic strain; hypertension; m-mode strain measurement; noninvasive microvascular ultrasound elastography; rat models; small animal imaging; systolic strain; ultrasound biomicroscope; Capacitive sensors; Carotid arteries; Hypertension; Mechanical factors; Probes; Radio frequency; Rats; Strain measurement; Ultrasonic imaging; Workstations;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium, 2007. IEEE
Conference_Location :
New York, NY
ISSN :
1051-0117
Print_ISBN :
978-1-4244-1383-6
Electronic_ISBN :
1051-0117
Type :
conf
DOI :
10.1109/ULTSYM.2007.435
Filename :
4410008
Link To Document :
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