4.6 Article

Blood flow through the embryonic heart outflow tract during cardiac looping in HH13-HH18 chicken embryos

期刊

出版社

ROYAL SOC
DOI: 10.1098/rsif.2015.0652

关键词

cardiovascular development; haemodynamics; subject-specific haemodynamic modelling; chick embryo; outflow tract; optical coherence tomography

资金

  1. NIH [R01 HL094570]
  2. Charles Patrick Memorial scholarship
  3. Pete Scholarship
  4. Rosalie Johnson Scholarship

向作者/读者索取更多资源

Blood flow is inherently linked to embryonic cardiac development, as haemodynamic forces exerted by flow stimulate mechanotransduction mechanisms that modulate cardiac growth and remodelling. This study evaluated blood flow in the embryonic heart outflow tract (OFT) during normal development at each stage between HH13 and HH18 in chicken embryos, in order to characterize changes in haemodynamic conditions during critical cardiac looping transformations. Two-dimensional optical coherence tomography was used to simultaneously acquire both structural and Doppler flow images, in order to extract blood flow velocity and structural information and estimate haemodynamic measures. From HH13 to HH18, peak blood flow rate increased by 2.4-fold and stroke volume increased by 2.1-fold. Wall shear rate (WSR) and lumen diameter data suggest that changes in blood flow during HH13-HH18 may induce a shear-mediated vasodilation response in the OFT. Embryo-specific four-dimensional computational fluid dynamics modelling at HH13 and HH18 complemented experimental observations and indicated heterogeneous WSR distributions over the OFT. Characterizing changes in haemodynamics during cardiac looping will help us better understand the way normal blood flow impacts proper cardiac development.

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