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February 1, 1997Medicine & Science in Sports & Exercise83 citations

Allometric scaling of left ventricular mass by body dimensions in males and females

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ABAlan M. BatterhamKGKeith GeorgeDMDavid R. Mullineaux

Key Result

Allometric scaling of left ventricular mass by body mass yielded an exponent of 0.78 (95% CI, 0.65-0.91), demonstrating that traditional ratio scaling overcorrects for body mass in heavier subjects.

Study Design

Type

Cross-Sectional (n=142)

Structured PICO

Does allometric scaling provide a more accurate method than ratio scaling for normalizing left ventricular mass by body dimensions in males and females?

P
Population
142 subjects (78 males, 64 females) aged 18-40 years assessed for the relationship between body dimensions and left ventricular mass.
E
Exposure
Allometric scaling of left ventricular mass by body dimensions (body mass and fat-free mass)
C
Comparator
Ratio scaling method
O
Outcome
Relationship between body dimensions and left ventricular mass (LVM)surrogate

Sample-specific allometric scaling is superior to ratio scaling for normalizing left ventricular mass, preventing overcorrection in heavier subjects and revealing true gender differences.

Main Result

Effect estimate: exponent 0.78 (95% CI 0.65-0.91)

Abstract

Physiological variables must often be scaled for body size differences to permit meaningful comparisons between subjects or groups. This study aimed to determine the proper relationship between body dimensions and left ventricular mass (LVM) via allometric scaling (AS) in 142 subjects (78 males, 64 females; ages 18-40). A cubic formula was used to estimate LVM from wall thickness and left ventricular internal dimensions derived from M-mode echocardiography. Fat free mass (FFM) was predicted from anthropometry. "Best compromise" allometric equations (y = a.xb) revealed a common body mass (BM) exponent of 0.78 (95% CI, 0.65-0.91). The widely adopted ratio scaling (RS) method assumes that the exponent b = 1. In this sample, use of RS would penalize heavier subjects by overcorrecting for BM. The equivalent mean FFM exponent of 1.07 was not different from unity (95% CI, 0.92-1.22). Hence, RS using BM would appear to penalize those subjects who are heavier owing to excess fat not excess FFM. Gender differences in LVM were 70.44, and 18%, for absolute values per BM 0.78 and per FFM 1.07, respectively, (P < 0.05). This reveals quantitative differences in heart size independent of body dimensions. We conclude that sample specific AS permits meaningful intersubject or intergroup comparisons.

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Cite This Study

Batterham et al. (1997) reported a cross-sectional. Body dimensions (body mass and fat free mass) vs. Ratio scaling was evaluated on Allometric scaling exponent for body mass to left ventricular mass (exponent 0.78, 95% CI 0.65-0.91). Allometric scaling of left ventricular mass by body mass yielded an exponent of 0.78 (95% CI, 0.65-0.91), demonstrating that traditional ratio scaling overcorrects for body mass in heavier subjects.

synapsesocial.com/papers/6a24979aa2bdc3b666fcb020https://doi.org/10.1097/00005768-199702000-00003
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Modeling the influence of body size and composition on M-mode echocardiographic dimensions1998 · 32 citations
  2. 2Is Height <sup>2.7</sup> Appropriate for Indexation of Left Ventricular Mass in Healthy Adolescents? The Importance of Sex Differences2023 · 11 citations
  3. 3Allometric scaling for left ventricular mass and geometry in male and female athletes of mixed and endurance sports2024 · 8 citations
  4. 4The impact of scalar variable and process on athlete-control comparisons of cardiac dimensions1998 · 44 citations
  5. 5Scaling left ventricular mass in adolescent boys aged 11–15 years2014 · 7 citations