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March 1, 2005Circulation233 citationsOpen Access

Assessment of Left Ventricular Torsional Deformation by Doppler Tissue Imaging

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YNYuichi NotomiRSRandolph M. SetserTSTakahiro Shiota

Key Result

Doppler tissue imaging accurately quantified left ventricular maximal torsion, demonstrating a strong correlation with tagged magnetic resonance imaging (r=0.95, P<0.0001).

Study Design

Type

Observational (n=20)

Structured PICO

Does Doppler tissue imaging (DTI) accurately quantify left ventricular torsional deformation compared to tagged MRI in patients?

P
Population
20 patients who underwent both Doppler tissue imaging and tagged magnetic resonance imaging for the assessment of left ventricular torsion.
E
Exposure
Doppler tissue imaging (DTI) to quantify left ventricular torsion
C
Comparator
Tagged magnetic resonance imaging (MRI) as a reference standard
O
Outcome
Correlation of rotational and torsional profiles throughout systole and diastole between DTI and tagged MRIsurrogate

Doppler tissue imaging provides an accurate, noninvasive method for quantifying left ventricular torsional deformation, correlating closely with the reference standard of tagged MRI.

Main Result

Effect estimate: r=0.95

p-value: p=<0.0001

Abstract

BACKGROUND: Left ventricular (LV) torsional deformation is a sensitive index for LV performance but difficult to measure. The present study tested the accuracy of a novel method that uses Doppler tissue imaging (DTI) for quantifying LV torsion in humans with tagged magnetic resonance imaging (MRI) as a reference. METHODS AND RESULTS: Twenty patients underwent DTI and tagged MRI studies. Images of the LV were acquired at apical and basal short-axis levels to assess LV torsion. We calculated LV rotation by integrating the rotational velocity, determined from DTI velocities of the septal and lateral regions, and correcting for the LV radius over time. LV torsion was defined as the difference in LV rotation between the 2 levels. DTI rotational and torsional profiles throughout systole and diastole were compared with those by tagged MRI at isochronal points. Rotation and torsion by DTI were closely correlated with tagged MRI results during systole and early diastole (apical and basal rotation, r=0.87 and 0.90, respectively; for torsion, 0.84; P<0.0001, by repeated-measures regression models). Maximal torsion showed even better correlation (r=0.95, P<0.0001). CONCLUSIONS: The present study has shown that DTI can quantify LV torsional deformation over time. This novel method may facilitate noninvasive quantification of LV torsion in clinical and research settings.

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Cite This Study

Notomi et al. (2005) reported an observational. Doppler tissue imaging (DTI) vs. Tagged magnetic resonance imaging (MRI) was evaluated on Correlation of left ventricular rotation and torsion between DTI and tagged MRI (r=0.95, p=<0.0001). Doppler tissue imaging accurately quantified left ventricular maximal torsion, demonstrating a strong correlation with tagged magnetic resonance imaging (r=0.95, P<0.0001).

synapsesocial.com/papers/6a1fd211eea2c6885e117885https://doi.org/10.1161/01.cir.0000157151.10971.98
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