Literature DB >> 34891849

Bayesian Regularized Strain Imaging for Assessment of Murine Cardiac Function In vivo.

Rashid Al Mukaddim, Ashley M Weichmann, Rachel Taylor, Timothy A Hacker, Thomas Pier, Melissa Graham, Carol C Mitchell, Tomy Varghese.   

Abstract

A cardiac strain imaging framework with adaptive Bayesian regularization (ABR) is proposed for in vivo assessment of murine cardiac function. The framework uses ultrasound (US) radio-frequency data collected with a high frequency (fc = 30MHz) imaging system and a multi-level block matching algorithm with ABR to derive inter-frame cardiac displacements. Lagrangian cardiac strain (radial, er and longitudinal, el) tensors were derived by segmenting the myocardial wall starting at the ECG R-wave and accumulating interframe deformations over a cardiac cycle. In vivo feasibility was investigated through a longitudinal study with two mice (one ischemia-perfusion (IR) injury and one sham) imaged at five sessions (pre-surgery (BL) and 1,2,7 and 14 days post-surgery). End-systole (ES) strain images and segmental strain curves were derived for quantitative evaluation. Both mice showed periodic variation of er and el strain at BL with segmental synchroneity. Infarcted regions of IR mouse at Day 14 were associated with reduced or sign reversed ES er and el values while the sham mouse had similar or higher strain than at BL. Infarcted regions identified in vivo were associated with increased collagen content confirmed with Masson's Trichrome stained ex vivo heart sections.Clinical Relevance-Higher quality cardiac strain images derived with RF data and Bayesian regularization can potentially improve the sensitivity and accuracy of non-invasive assessment of cardiovascular disease models.

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Year:  2021        PMID: 34891849      PMCID: PMC8908881          DOI: 10.1109/EMBC46164.2021.9630712

Source DB:  PubMed          Journal:  Annu Int Conf IEEE Eng Med Biol Soc        ISSN: 2375-7477


  23 in total

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Journal:  Nat Methods       Date:  2012-06-28       Impact factor: 28.547

6.  Improving Ultrasound Lateral Strain Estimation Accuracy using Log Compression of Regularized Correlation Function.

Authors:  Rashid Al Mukaddim; Tomy Varghese
Journal:  Annu Int Conf IEEE Eng Med Biol Soc       Date:  2020-07

7.  Echocardiographic speckle-tracking based strain imaging for rapid cardiovascular phenotyping in mice.

Authors:  Michael Bauer; Susan Cheng; Mohit Jain; Soeun Ngoy; Catherine Theodoropoulos; Anna Trujillo; Fen-Chiung Lin; Ronglih Liao
Journal:  Circ Res       Date:  2011-03-03       Impact factor: 17.367

8.  Myocardial elastography at both high temporal and spatial resolution for the detection of infarcts.

Authors:  Jianwen Luo; Kana Fujikura; Shunichi Homma; Elisa E Konofagou
Journal:  Ultrasound Med Biol       Date:  2007-06-13       Impact factor: 2.998

9.  An approach to unbiased subsample interpolation for motion tracking.

Authors:  Matthew M McCormick; Tomy Varghese
Journal:  Ultrason Imaging       Date:  2013-04       Impact factor: 1.578

10.  GPU Accelerated Multilevel Lagrangian Carotid Strain Imaging.

Authors:  Nirvedh H Meshram; Tomy Varghese
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2018-05-28       Impact factor: 2.725

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