このページは自動翻訳されたものであり、翻訳の正確性は保証されていません。を参照してください。 英語版 ソーステキスト用。

Comparison of Three-dimensional and Two-dimensional Left Ventricle Strain With Speckle-tracking Echocardiography in Heart Failure With Reduced and Mildly Reduced Ejection Fraction (3V2-STEM-HF)

2026年8月18日 更新者:Istituti Clinici Scientifici Maugeri SpA

Left Ventricular Myocardial Strain Assessed by Three-dimensional Speckle-tracking Echocardiography in Heart Failure With Reduced and Mildly Reduced Ejection Fraction. A Comparison With Two-dimensional Evaluation in a Prospective Study

This study will compare two ultrasound techniques, 2D and 3D speckle-tracking echocardiography, for measuring how well the heart muscle contracts in patients with heart failure and reduced pumping function. While 2D global longitudinal strain (GLS) is widely used and has proven value in predicting outcomes, 3D GLS may provide a more complete assessment of heart function. Researchers will enroll 419 patients from seven cardiac rehabilitation hospitals in Italy and analyze heart ultrasound images using standardized equipment and software. The study will assess how closely 2D and 3D GLS measurements agree, identify factors that influence any differences, and determine whether 3D GLS better predicts the risk of death than 2D GLS.

調査の概要

状態

募集

条件

詳細な説明

Left Ventricular Myocardial Strain Assessed by Three-Dimensional Speckle-Tracking Echocardiography in Heart Failure with Reduced or Mildly Reduced Ejection Fraction: Comparison with Two-Dimensional Assessment in a Prospective Observational Study

Background

Global longitudinal strain (GLS) derived from speckle-tracking echocardiography (STE) is a robust, well-validated, and reproducible technique for assessing left ventricular (LV) longitudinal deformation and is available on most modern echocardiography systems. GLS appears to provide superior prognostic value compared with ejection fraction (EF) for predicting major adverse cardiac events across various clinical settings, including chronic heart failure (CHF).

Three-dimensional (3D) STE represents a further advancement in myocardial deformation imaging, enabling rapid and comprehensive assessment of all LV segments and measurement of global 3D GLS from a single dataset. However, in healthy individuals, reference values for 3D and 2D GLS differ significantly, likely because 3D GLS more accurately captures the complex mechanics of LV contraction, whereas 2D GLS provides higher spatial and temporal resolution.

Although 3D STE is increasingly being used to evaluate LV systolic function in patients with CHF, data regarding the agreement and differences between 2D and 3D measurements in this clinical setting remain limited. This issue is particularly relevant in patients with systolic heart failure, as reduced EF appears to weaken the correlation between 2D and 3D GLS measurements, according to available studies with relatively small sample sizes.

Objectives

This prospective multicenter study aims to evaluate the agreement between 2D and 3D GLS measurements obtained using single-vendor ultrasound systems and analysis software in patients with heart failure with reduced ejection fraction (HFrEF) or mildly reduced ejection fraction (HFmrEF).

Secondary objectives are to identify factors associated with differences between 2D and 3D GLS measurements and to determine whether 3D GLS is a stronger independent predictor of all-cause mortality than 2D GLS.

Methods Study Population

This multicenter prospective observational study will enroll patients with HFrEF and HFmrEF, defined as a left ventricular ejection fraction (LVEF) ≤40% and 41-49%, respectively, from the echocardiography laboratories of the Cardiovascular Department of Istituti Clinici Scientifici (ICS) Maugeri across seven tertiary cardiac rehabilitation hospitals in Italy.

The study protocol has been approved to the local Ethics Committee. Written informed consent will be obtained from all participants before eligibility screening.

Image Acquisition and Analysis

Echocardiographic datasets will be acquired using Vivid E95 ultrasound systems (GE Vingmed Ultrasound AS, Horten, Norway) equipped with M5S and 4V probes for 2D and 3D imaging, respectively, or a 4VC probe for both 2D and 3D acquisitions.

The acquisition protocol will include 2-, 3-, and 4-chamber apical views, as well as parasternal short-axis views at the mid-papillary level for 2D imaging, together with 3D LV datasets for the assessment of myocardial strain parameters using 2D and 3D STE. If necessary, two- to six-beat full-volume 3D acquisitions will be performed to ensure complete LV coverage with a frame rate of at least 37 volumes/s.

Two-dimensional and three-dimensional datasets will be analyzed offline using the Q-Analysis and 4D AutoLVQ software packages (EchoPAC BT12 and BT13; GE Vingmed Ultrasound AS) by investigators with at least three years of experience.

Peak global 2D longitudinal strain (2DLε) will be calculated from the three apical views, whereas peak global 2D circumferential strain (2DCε) will be derived from the parasternal short-axis view. Three 3D strain parameters will be obtained from the 3D LV dataset: longitudinal strain (3DLε), circumferential strain (3DCε), radial strain (3DRε), and area strain (3DAε).

Datasets will be excluded from analysis under the following conditions:

  1. poor image quality of either the 2D or 3D datasets, defined using a 4-point scale (poor = 1, fair = 2, good = 3, excellent = 4) because of inadequate signal-to-noise ratio, poor blood-tissue contrast, stitching artifacts or incomplete visualization of the LV wall;
  2. inadequate tracking of more than two LV segments in a single apical 2D view for global 2DLε analysis or in the parasternal short-axis view for 2DCε and 2DRε analysis;
  3. inadequate tracking of more than three LV segments during 3D dataset analysis.

Sample Size

Agreement between 2D and 3D GLS measurements will be assessed using Bland-Altman analysis. Based on published data reporting a mean difference of 0.1% and a standard deviation of differences of 2.9%, the required sample size was calculated to be 419 participants, assuming a maximum acceptable difference between methods of ±6.5%, a type I error (α) of 5%, and a type II error (β) of 20%.

Statistical Analysis

Normally distributed continuous variables will be summarized as mean ± standard deviation (SD), whereas non-normally distributed continuous variables will be reported as median and interquartile range (IQR). Categorical variables will be expressed as counts and percentages.

All LV strain parameters will be analyzed as absolute values, with lower values indicating worse myocardial deformation and higher values indicating better deformation.

Differences between groups will be assessed using unpaired t-tests for normally distributed variables and Mann-Whitney U tests for non-normally distributed variables. Agreement between 2D and 3D LV strain measurements will be evaluated using Bland-Altman analysis. Differences between paired 2D and 3D strain measurements within predefined subgroups will be assessed using paired statistical tests, as appropriate.

Pearson correlation analysis will be used to evaluate associations between the differences in 2D and 3D GLS measurements and demographic, cardiac, and technical variables. Stepwise multivariable linear regression analysis will be performed to identify independent predictors of the differences between 2D and 3D GLS measurements, including age, sex, weight, height, blood pressure, body surface area (BSA), LV volumes, LV mass, temporal resolution, and 3D image quality.

The area under the receiver operating characteristic curve (AUC-ROC) will be used to assess the predictive performance of 2D and 3D GLS for all-cause mortality. The DeLong test will be used to compare the AUCs of the two methods.

All hypothesis tests will be two-sided, and a p-value <0.05 will be considered statistically significant. Statistical analyses will be performed using SPSS software (IBM, Armonk, NY, USA).

研究の種類

観察的

入学 (推定)

419

連絡先と場所

このセクションには、調査を実施する担当者の連絡先の詳細と、この調査が実施されている場所に関する情報が記載されています。

研究連絡先

研究連絡先のバックアップ

研究場所

      • Veruno、イタリア、28013
        • 募集
        • ICS Maugeri - Istituto di Veruno
        • コンタクト:
    • BA
      • Bari、BA、イタリア、70124
    • MI
      • Milan、MI、イタリア、20138
    • PV
      • Pavia、PV、イタリア、27100
    • TO
      • Torino、TO、イタリア、10124

参加基準

研究者は、適格基準と呼ばれる特定の説明に適合する人を探します。これらの基準のいくつかの例は、人の一般的な健康状態または以前の治療です。

適格基準

就学可能な年齢

  • 大人
  • 高齢者

健康ボランティアの受け入れ

いいえ

サンプリング方法

非確率サンプル

調査対象母集団

Patients with a diagnosis of heart failure and a reduced or mildly reduced ejection fration of left ventricle

説明

Inclusion Criteria:

  • Left ventricular ejection fraction (LVEF) ≤ 49%;
  • Echocardiographic image quality judged to be at least adequate according to a four-point visual image quality scale (good, adequate, poor, or inadequate)

Exclusion Criteria:

  • Inability to maintain the correct position for acquiring echocardiographic images;
  • Arrhythmias that make multi-beat acquisition impossible (if required), such as frequent extrasystoles (supraventricular or ventricular) and atrial fibrillation;
  • Failure to visualize more than 2 segments of the left ventricle (LV), or inability to assess more than 3 segments during 3D GLS analysis;
  • Failure to sign the informed consent form and inability of the participant to understand the objectives of the study

研究計画

このセクションでは、研究がどのように設計され、研究が何を測定しているかなど、研究計画の詳細を提供します。

研究はどのように設計されていますか?

デザインの詳細

コホートと介入

グループ/コホート
Heart failure with reduced ejection fraction (HFrEF) or mildly reduced ejection fraction (HFmrEF)
Patients with HFrEF or EFmrEF will be assessed with 2D and 3D echocardiography to evaluate the agreement between 2D and 3D global longitudinal strain measurements

この研究は何を測定していますか?

主要な結果の測定

結果測定
メジャーの説明
時間枠
Bland-Altman mean difference (bias) and the limits of agreement (LOA) in comparison with a clinically acceptable range (±6.5%)
時間枠:At baseline
Bias and the LOA will be compared with a clinically acceptable range (±6.5%)
At baseline

二次結果の測定

結果測定
メジャーの説明
時間枠
Covariates and Confounders
時間枠:At baseline
The factors associated with differences between 2D and 3D GLS measurements
At baseline
Comparison of all-cause mortality by 2D and 3D global longitudinal strain
時間枠:From enrollment to the end of follow-up (1 year)
The area under the receiver operating characteristic curve (AUC-ROC) will be used to assess the predictive performance of 2D and 3D GLS for all-cause mortality. The DeLong test will be used to compare the AUCs of the two methods.
From enrollment to the end of follow-up (1 year)

協力者と研究者

ここでは、この調査に関係する人々や組織を見つけることができます。

出版物と役立つリンク

研究に関する情報を入力する責任者は、自発的にこれらの出版物を提供します。これらは、研究に関連するあらゆるものに関するものである可能性があります。

一般刊行物

研究記録日

これらの日付は、ClinicalTrials.gov への研究記録と要約結果の提出の進捗状況を追跡します。研究記録と報告された結果は、国立医学図書館 (NLM) によって審査され、公開 Web サイトに掲載される前に、特定の品質管理基準を満たしていることが確認されます。

主要日程の研究

研究開始 (実際)

2026年1月8日

一次修了 (推定)

2027年12月31日

研究の完了 (推定)

2027年12月31日

試験登録日

最初に提出

2026年7月28日

QC基準を満たした最初の提出物

2026年7月28日

最初の投稿 (実際)

2026年8月3日

学習記録の更新

投稿された最後の更新 (実際)

2026年8月19日

QC基準を満たした最後の更新が送信されました

2026年8月18日

最終確認日

2026年8月1日

詳しくは

本研究に関する用語

個々の参加者データ (IPD) の計画

個々の参加者データ (IPD) を共有する予定はありますか?

はい

IPD プランの説明

All data (anonymized)

IPD 共有時間枠

Start date: 6 months after publication of the primary study results. End date: 5 years after publication of the primary study results.

IPD 共有アクセス基準

De-identified individual participant data underlying the published results, together with the study protocol and statistical analysis plan, will be available to qualified researchers upon reasonable request to the principal investigator. Access will be granted following review and approval of a research proposal and completion of a data-sharing agreement. Data will be provided electronically in a secure manner

この情報は、Web サイト clinicaltrials.gov から変更なしで直接取得したものです。研究の詳細を変更、削除、または更新するリクエストがある場合は、register@clinicaltrials.gov。 までご連絡ください。 clinicaltrials.gov に変更が加えられるとすぐに、ウェブサイトでも自動的に更新されます。

購読する