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February 1, 1987Hypertension550 citationsOpen Access

Detection of left ventricular hypertrophy by M-mode echocardiography. Anatomic validation, standardization, and comparison to other methods.

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RDRichard B. Devereux

Key Result

M-mode echocardiography provides accurate estimation of left ventricular mass, with provisional hypertrophy criteria of >134 g/m2 in men and >110 g/m2 in women.

Key Points

  • The aim is to validate M-mode echocardiography for measuring left ventricular mass and compare it to other imaging methods.
  • Comparison of echocardiographic left ventricular mass measurements to necropsy data for anatomical validation.
  • Assessment of variability in mass estimates under different clinical conditions and populations.
  • The standard error of M-mode echocardiography is approximately 40 g under challenging conditions.
  • Accuracy for measuring left ventricular mass is comparable to contrast angiography but may be less than advanced imaging techniques.
  • Provisional criteria for hypertrophy identification include left ventricular mass index over 134 g/m2 in men and above 110 g/m2 in women.

Structured PICO

How accurate is M-mode echocardiography for measuring left ventricular mass compared to other methods?

P
Population
Patients undergoing left ventricular mass measurement
I
Intervention
M-mode echocardiography
C
Comparator
Contrast angiography, magnetic resonance imaging, cine-computed tomography, three-dimensional echocardiographic reconstruction, and necropsy
O
Outcome
Accuracy and variability of left ventricular mass measurementsurrogate

M-mode echocardiography is a widely used, relatively accurate, and low-cost method for estimating left ventricular mass, though newer imaging modalities may offer greater accuracy.

Limitations

  • M-mode methods are less accurate in abnormally shaped ventricles.
  • Less accurate in abnormally shaped ventricles
  • May be exceeded in accuracy by newer methods with greater cost or radiation exposure

Abstract

Because of its simplicity, widespread availability, relatively low cost, and lack of adverse effects, M-mode echocardiography has become the most widely used technique for measurement of human left ventricular mass. Necropsy comparison studies have yielded formulas for anatomically accurate estimation of left ventricular mass in patients with normally shaped ventricles using left ventricular measurements by either Penn or American Society of Echocardiography conventions, but M-mode methods are less accurate in abnormally shaped ventricles. The standard error of M-mode echocardiographic left ventricular mass measurements is approximately 40 g under difficult clinical recording conditions and 30 g or less for research studies of stable subjects. Interstudy variability of mass estimates appeared somewhat lower, resulting in 95% confidence limits for serial change up to 58 g for individual subjects and up to 10 g for study populations of 34 patients or more. The accuracy of M-mode echocardiography for measurement of left ventricular mass is similar to that of contrast angiography but may be exceeded by newer methods with greater cost or radiation exposure, including magnetic resonance imaging, cine-computed tomography, and three-dimensional echocardiographic reconstruction. Identification of left ventricular hypertrophy needs to take into account the influence of sex and body size, the variables that most influence normal ventricular mass, with provisional criteria for recognition of hypertrophy being left ventricular mass index over 134 g/m2 in men and above 110 g/m2 in women.

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Cite This Study

Richard B. Devereux (1987) conducted a review in Left ventricular hypertrophy. M-mode echocardiography vs. Contrast angiography, MRI, cine-computed tomography, and three-dimensional echocardiography was evaluated on Left ventricular mass measurement accuracy and standard error. M-mode echocardiography provides accurate estimation of left ventricular mass, with provisional hypertrophy criteria of >134 g/m2 in men and >110 g/m2 in women.

synapsesocial.com/papers/6a0760f285d51e7cc7584e71https://doi.org/10.1161/01.hyp.9.2_pt_2.ii19
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