Quantitative susceptibility mapping as a measure of cerebral oxygenation in neonatal piglets

Author:

Bartnik-Olson Brenda L1,Blood Arlin B2,Terry Michael H3,Hanson Shawn FL4,Day Christopher5,Kido Daniel1,Kim Paggie1ORCID

Affiliation:

1. Department of Radiology, Loma Linda University Medical Center, Loma Linda University Medical Center, Loma Linda, CA, USA

2. Department of Pediatrics, Loma Linda University School of Medicine, Loma Linda University School of Medicine, Center for Perinatal Biology, Loma Linda, CA, USA

3. Department of Pulmonary & Critical Care, Loma Linda University Medical Center, Loma Linda University Medical Center, Loma Linda, CA, USA

4. Center for Perinatal Biology, Loma Linda University School of Medicine, Loma Linda, CA, USA

5. Department of Pediatrics, Office of Graduate Medical Education, Loma Linda, CA, USA

Abstract

Prominence of cerebral veins using susceptibility weighted magnetic resonance imaging (SWI) has been used as a qualitative indicator of cerebral venous oxygenation (CvO2). Quantitative susceptibility mapping (QSM) adds more precision to the assessment of CvO2, but has not been applied to neonatal hypoxic ischemic injury (HII). We proposed to study QSM measures of venous susceptibility and their correlation with direct measures of brain oxygenation and cerebral blood flow (CBF) in the neonatal piglet. The association of QSM intravascular cerebral venous susceptibility, with brain tissue O2 tension, CBF, cortical tissue oxyhemoglobin saturation, and the partial pressure of oxygen in arterial blood measurement during various oxygenation states was determined by linear regression. Compared to normoxia, venous susceptibility in the straight sinus increased 56.8 ± 25.4% during hypoxia, while decreasing during hyperoxia (23.5 ± 32.9%) and hypercapnia (23.3 ± 73.1%), which was highly correlated to all other measures of oxygenation (p < 0.0001) but did not correlate to CBF (p = 0.82). These findings demonstrate a strong relationship between venous susceptibility and brain tissue O2 tension. Our results suggest that QSM-derived venous susceptibility is sensitive to cerebral oxygenation status across various oxygenation states.

Publisher

SAGE Publications

Subject

Cardiology and Cardiovascular Medicine,Clinical Neurology,Neurology

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