The association between cardiac physiology, acquired brain injury, and postnatal brain growth in critical congenital heart disease.

Peyvandi, Shabnam; Kim, Hosung; Lau, Joanne; Barkovich, A James; Campbell, Andrew; Miller, Steven; Xu, Duan; McQuillen, Patrick · J Thorac Cardiovasc Surg · 2018

prospective_cohort · Level II

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Abstract

To assess the trajectory of perioperative brain growth in relationship to cardiac diagnosis and acquired brain injuries. This was a cohort study of term neonates with hypoplastic left heart syndrome (HLHS) and d-transposition of the great arteries (d-TGA). Subjects underwent magnetic resonance imaging of the brain pre- and postoperatively to determine the severity of brain injury and total and regional brain volumes by the use of automated morphometry. Comparisons were made by cardiac lesion and injury status. A total of 79 subjects were included (49, d-TGA; 30, HLHS). Subjects with HLHS had more postoperative brain injury (55.6% vs 30.4%, P = .03) and more severe brain injury (moderate-to-severe white matter [WM] injury, P = .01). Total and regional perioperative brain growth was not different by brain injury status (either pre- or postoperative). However, subjects with moderate-to-severe WM injury had a slower rate of brain growth in WM and gray matter compared with those with no injury. Subjects with HLHS had a slower rate of growth globally and in WM and deep gray matter as compared with d-TGA (total brain volume: 12 cm<sup>3</sup>/wk vs 7 cm<sup>3</sup>; WM: 2.1 cm<sup>3</sup>/wk vs 0.6 cm<sup>3</sup>; deep gray matter: 1.5 cm<sup>3</sup>/wk vs 0.7 cm<sup>3</sup>; P < .001), after we adjusted for gestational age at scan and the presence of brain injury. This difference remained after excluding subjects with moderate-to-severe WM injury. Neonates with HLHS have a slower rate of global and regional brain growth compared with d-TGA, likely related to inherent physiologic differences postoperatively. These findings demonstrate the complex interplay between cardiac lesion, brain injury, and brain growth.

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