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In allometric growth, by contrast, different parts grow at different rates.
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Clearance and volume of secukinumab varied with body weight in an allometric relationship.
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Juvenile fins continued allometric growth until development of the mature bi-lobed shape was completed.
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These allometric models naturally help to overcome the heteroscedasticity and skewness observed with per ratio variables.
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The upper molar emerged as highly evolvable, because a strong allometric component contributed to its variance.
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This allometric relationship drove a repeated but independent evolution of a peculiar upper molar shape whenever size increased.
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Muscle strength values were adjusted for the influence of body height and body weight using an allometric scaling procedure.
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If allometric ontogenies establish channels of positive constraint, then heterochrony supplies a convenient and effective mechanism for evolutionary utilization.
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The most successful allometric scaling method yielded clearance predictions that were, on average, within 80% of actual values.
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Extrapolation to an adult clearance from neonatal data is possible using allometric size models and a function describing clearance maturation.
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Decoupling then becomes intensified because higher levels exhibit allometric properties that distinguish their phenomenology from the workings of lower levels.
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A multiplicative model (with allometric body size components) was proposed and fitted to the ADNFS blood pressure results.
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The allometric power model suggested that clearance in smaller children is higher than that predicted on the basis of weight alone.
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Finally, we develop allometric models and show their potential to aid in the discrimination of mutant phenotypes masked by alterations in growth.
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An allometric formula was applied to morphometrical data, and the relative growth of each character to total length of skull was analyzed.
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We have revealed a critical transition in growth control during zebrafish caudal fin development, wherein a switch from allometric to isometric growth occurs.