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Neonatal Growth Restriction Slows Cardiomyocyte Development and Reduces Adult Heart Size
Journal article   Open access   Peer reviewed

Neonatal Growth Restriction Slows Cardiomyocyte Development and Reduces Adult Heart Size

Madeline H. Knott, Sarah E. Haskell, Payton E. Strawser, Olivia M. Rice, Natalie T. Bonthius, Vani C. Movva, Benjamin E. Reinking and Robert D. Roghair
Anatomical Record, Vol.301(8)
2018

Abstract

Age Factors Animals Animals, Newborn Body Weight Female Heart Male Mice Mice, Inbred C57BL Myocytes, Cardiac Organ Size Organogenesis Ki 67 antigen adult animal cell animal experiment animal model animal tissue Article cardiac muscle cell cell cycle cell growth cell maturation cell nucleus cell proliferation cell size controlled study echocardiography female growth retardation heart development heart muscle fibrosis heart size immunoreactivity male mouse newborn nonhuman postnatal growth prematurity priority journal age animal body weight C57BL mouse cardiac muscle cell growth, development and aging heart organ size organogenesis physiology
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https://doi.org/10.1002/ar.23851View
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