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January 1, 2016Journal of Cerebral Blood Flow & Metabolism162 citationsOpen Access

Distribution of cardiac output to the brain across the adult lifespan

CXChangyang XingTTTakashi TarumiJLJie Liu

Key Result

The cerebral blood flow to cardiac output ratio index decreased by 1.3% per decade across the adult lifespan (P<0.001) and was inversely associated with body mass index (β = -0.33, P<0.001).

Study Design

Type

Observational

Structured PICO

P
Population
139 healthy participants aged 21-80 years (88 women; 85% Caucasian, 9% African American, 6% Asian) from the Dallas-Fort Worth metroplex. Key exclusion criteria: ischemic or structural heart disease, blood pressure > 140/90 mmHg, carotid artery atherosclerotic plaque or stenosis > 50%, diabetes, BMI > 35 kg/m2, smoking, and history of cerebrovascular, neurologic, psychiatric, or inflammatory diseases.
O
Outcome
Cerebral blood flow/cardiac output ratio index (CCRI)surrogate

The proportion of cardiac output distributed to the brain decreases across the adult lifespan, is higher in women, and is inversely associated with body mass index, challenging the dogma that it remains a fixed percentage.

Main Result

Effect estimate: β = -0.33

p-value: p=<0.001

Limitations

  • Cross-sectional nature of the study limits the understanding of causality between cardiac output and cerebral blood flow across the adult lifespan.
  • Did not measure body composition, and thus cannot dissect specifically the contribution of increases in body fat on the CO-CBF relationship.
  • Focused on healthy subjects with normal aging, limiting generalizability to those with heart or brain disease.

Abstract

max), and total brain volume were measured to assess their effects on the cardiac output-cerebral blood flow relationship. Cerebral blood flow/cardiac output ratio index decreased by 1.3% per decade associated with decreases in cerebral blood flow ( P < 0.001), while cardiac output remained unchanged. Women had higher cerebral blood flow, lower cardiac output, and thus higher cerebral blood flow/cardiac output ratio index than men across the adult lifespan. Age, body mass index, carotid-femoral pulse wave velocity, and arterial pressure all had negative correlations with cerebral blood flow and cerebral blood flow/cardiac output ratio index ( P < 0.05). Multivariable analysis adjusted for sex, age showed that only body mass index was negatively associated with cerebral blood flow/cardiac output ratio index (β = -0.33, P < 0.001). These findings demonstrated that cardiac output distributed to the brain has sex differences and decreases across the adult lifespan and is inversely associated with body mass index.

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Cite This Study

Xing et al. (2016) reported an observational. The cerebral blood flow to cardiac output ratio index decreased by 1.3% per decade across the adult lifespan (P<0.001) and was inversely associated with body mass index (β = -0.33, P<0.001).

synapsesocial.com/papers/6a051192fba2ba61ab55fb41https://doi.org/10.1177/0271678x16676826
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