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Speckle-Tracking and Volume Expansion

Myocardial Effects of Volume Expansion Evaluated Using Speckle-Tracking (STRAIN) in Intensive Care Unit Patients

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03702569
Acronym
FLUID-STRAIN
Enrollment
77
Registered
2018-10-11
Start date
2018-11-20
Completion date
2021-02-17
Last updated
2021-11-05

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Left Ventricular Contractility, Volume Expansion

Keywords

Volume Expansion, Intensive Care Unit, Left Ventricular Contractility, Speckle Tracking, STRAIN

Brief summary

Volume expansion is the cornerstone of hemodynamic management of patients suffering from circulatory failure. The main objective of volume expansion is to increase stroke volume. This increase in stroke volume is due to myocardial contractility improvement. Nowadays, this improvement cannot be assessed using classical monitoring used at the bedside. The main objective of this study is to evaluate left ventricular contractility using Speckle-Tracking before and after volume expansion in intensive care unit patients, to determine if this technology is more sensitive than previous for left ventricular contractility assessment.

Detailed description

The main objective of volume expansion is to increase stroke volume. Frank-Starling curve is schematically divided into two portions: a vertical portion which mean that an increase in preload secondary to volume expansion will induce an increase in stroke volume; and a flat portion which mean that a same increase in preload will not induce an increase in stroke volume. Stroke volume increase is due to a myocardial contractility improvement. Nowadays this improvement cannot be assessed using classical monitoring used at the bedside (left ventricular ejection fraction, fractional area changes, etc …). A new method is available to assess left ventricular contractility at the bedside. Two-dimensional speckle tracking images with echocardiography allows one to track a natural myocardial marker within the myocardium by standard transthoracic echocardiography. It provides unique insights into myocardial function such as tissue deformations and strain rate, which is the rate of deformation. This method is more sensitive than classical echographic left ventricular ejection fraction evaluation. Few data are available about the potential interest of speckle tracking to track an improvement of left ventricular contractility following a volume expansion in intensive care unit patients. This study is observational, prospective in one center. Patients needing a volume expansion will benefit from an echocardiography (stroke volume and longitudinal strain assessment) before and after fluid challenge (500mL of crystalloids). The follow up will be restricted to the duration of volume expansion. The last data will be collected just after the end of volume expansion.

Interventions

DIAGNOSTIC_TESTLeft ventricular global longitudinal strain measure

Left ventricular global longitudinal strain value measured before and immediately after volume expansion (500mL crystalloid) using speckle tracking images with echocardiography

Sponsors

University Hospital, Bordeaux
Lead SponsorOTHER

Study design

Observational model
CASE_ONLY
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* patient older than 18 years * hospitalized in neuro-intensive care unit * volume expansion indicated by the physician * indication of a transthoracic echocardiography

Exclusion criteria

* low echogenicity

Design outcomes

Primary

MeasureTime frameDescription
Left ventricular Global Longitudinal Strain3 minutes before the beginning of volume expansion of 500ml of crystalloidIt is calculated using values of longitudinal strain measured in the three-,four-, and two-chamber of the left ventricle of the heart. GLS is expressed as percentage. Strain is a measure of myocardial muscle fiber shortening during contraction and is calculated as the systolic segment shortening between end-systolic (ES) segment length (L) and end-diastolic (ED) length: strain = (-LES - LED)/LED x 100 %.
Stroke volume3 minutes before the beginning of volume expansion of 500ml of crystalloid

Countries

France

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026