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September 19, 2000Circulation175 citationsOpen Access

Tissue Doppler Imaging Consistently Detects Myocardial Contraction and Relaxation Abnormalities, Irrespective of Cardiac Hypertrophy, in a Transgenic Rabbit Model of Human Hypertrophic Cardiomyopathy

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Sherif F. Nagueh
Sherif F. NaguehCardiac Imaging
HKHelen A. KopelenHouston MethodistDLDo‐Sun LimInterventional Cardiology

Structured PICO

Does tissue Doppler imaging detect myocardial contraction and relaxation abnormalities irrespective of left ventricular hypertrophy in a transgenic rabbit model of human hypertrophic cardiomyopathy?

P
Population
62 rabbits: nontransgenic (n=24), wild-type beta-myosin heavy chain-arginine(403) (n=14), and mutant beta-myosin heavy chain-glutamic acid(403) transgenic rabbits (n=24) serving as a model of human hypertrophic cardiomyopathy.
I
Intervention
Tissue Doppler imaging
C
Comparator
Conventional echocardiography (M-mode, 2D, Doppler)
O
Outcome
Systolic and early diastolic tissue Doppler velocitiessurrogate

Tissue Doppler imaging can detect myocardial contraction and relaxation abnormalities in a transgenic rabbit model of HCM even in the absence of left ventricular hypertrophy, proving more sensitive than conventional echocardiography.

Abstract

BACKGROUND: Hypertrophic cardiomyopathy (HCM) is diagnosed clinically by the presence of left ventricular hypertrophy (LVH). However, LVH is absent in a significant number of genotype-positive patients. Because myocyte dysfunction and disarray are the primary abnormalities in HCM, we reasoned that tissue Doppler imaging could identify contraction and relaxation abnormalities, irrespective of hypertrophy, in a transgenic rabbit model of human HCM. METHODS AND RESULTS: M-mode, 2D, Doppler echocardiography and tissue Doppler imaging were performed in nontransgenic (n=24), wild-type beta-myosin heavy chain-arginine(403) (n=14), and mutant beta-myosin heavy chain-glutamic acid(403) (n=24) transgenic rabbits. Mean septal thicknesses were 2.0+/-0.3, 2.0+/-0.25, and 2.75+/-0.3 mm in the 3 groups, respectively (P:=0.001). LVH was absent in 9 of the 24 mutant rabbits. Left ventricular dimensions, systolic function, heart rate, mitral inflow velocities, and time intervals were similar in the groups. However, the difference between atrial reversal and transmitral A wave duration was increased in the mutant rabbits (P:<0.001). More importantly, systolic and early diastolic tissue Doppler velocities were significantly lower in all mutant rabbits (7.45+/-2.2 versus 10.8+/-2.3 cm/s in nontransgenic and 9. 0+/-0.76 cm/s in wild-type; P:<0.001), including the 9 without LVH. A systolic velocity <8.5 cm/s had an 86% sensitivity and 100% specificity in identifying the mutant transgenic rabbits. CONCLUSIONS: Myocardial contraction and relaxation were reduced in the mutant beta-myosin heavy chain-glutamic acid(403) transgenic rabbit model of human HCM, irrespective of the presence or absence of LVH. In addition, tissue Doppler imaging is more sensitive than conventional echocardiography for HCM screening.

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Cite This Study

Nagueh et al. (2000) studied this question.

synapsesocial.com/papers/6a10db18acd1dbe0646483e9https://doi.org/10.1161/01.cir.102.12.1346
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Also Consider

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

  1. 1Expression of a Mutant (Arg 92 Gln) Human Cardiac Troponin T, Known to Cause Hypertrophic Cardiomyopathy, Impairs Adult Cardiac Myocyte Contractility1997 · 90 citations
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