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Updated: Sep 8, 2025

Echocardiographic Assessment Using Subxiphoid-Only Examination for Hypotensive Patients
Published on: April 18, 2025
Echoscopy in scanning cardiac diseases in critical care medicine
Daniel Wastl1, Axel Löwe2, Christoph F Dietrich2
1Medizinische Klinik, Krankenhaus Nordwest, Steinbacher Hohl 2-26, 60488, Frankfurt am Main, Germany. daniel-wastl@t-online.de.
Insights
Handheld ultrasound systems (HHUS) are effective for cardiac assessments in emergency settings, proving non-inferior to high-end ultrasound systems for detecting cardiac pathologies. This echoscopy approach enhances emergency and intensive care diagnostics.
Area of Science:
- Emergency Medicine
- Cardiology
- Medical Imaging
- Point-of-Care Ultrasound
Background:
- Echoscopy, defined by EFSUMB, utilizes handheld ultrasound systems (HHUS) for targeted examinations.
- Cardiac HHUS is feasible and holds potential for emergency and intensive care medicine.
- Limited data exists on the effectiveness of echoscopy in non-standardized emergency settings.
Purpose of the Study:
- To demonstrate the feasibility of using HHUS for echocardiography in emergency medicine.
- To compare the diagnostic performance of HHUS against high-end ultrasound systems (HEUS) for cardiac pathologies in emergency settings.
- To establish non-inferiority of HHUS to HEUS in detecting cardiac conditions under challenging circumstances.
Main Methods:
- Randomized, blinded examinations were conducted using HHUS (Vscan™) and HEUS (Acuson X‑300/X‑700).
- Examinations took place in intensive care units, emergency rooms, and ambulance services.
- Data on cardiac pathologies were recorded, with sensitivity and specificity calculated for HHUS.
Main Results:
- 93 patients were evaluated; examination conditions were optimal in <33% of cases for both HHUS and HEUS.
- HHUS demonstrated high sensitivity and specificity for various cardiac conditions, including pericardial effusion, right heart strain, and left ventricular dysfunction.
- Measurements of pericardial effusion, left ventricle, left atrium, and posterior wall showed positive correlation between HHUS and HEUS; septum and aortic root diameters showed negative correlation.
Conclusions:
- Echoscopy using HHUS is a viable and effective tool for diagnosing cardiac pathologies in emergency and intensive care settings.
- HHUS is non-inferior to HEUS for detecting defined cardiac pathologies in these critical care environments.
- The findings support the integration of HHUS into emergency medicine protocols for rapid cardiac assessment.
Background And Aims:
Targeted ultrasound examinations with a portable ultrasound device ("handheld ultrasound system"; HHUS) have been defined as "echoscopy" by the European Federation of Societies for Ultrasound in Medicine and Biology (EFSUMB). Cardiac scanning with HHUS is feasible. Echoscopy could play a major role in emergency and intensive care medicine, but adequate data on its effectiveness are still lacking. Sonographic examinations in the field of emergency and intensive care medicine can often not be carried out under standardized examination conditions. Thus, the aim of this study is to show that the use of HHUS for echocardiography in emergency medicine is possible and that for this setting HHUS is not inferior to a high-end ultrasound system (HEUS) for detecting cardiac pathologies.
Methods:
The examinations were carried out with a Vscan™ (GE Medical Systems, Solingen, Germany) and a high-end ultrasound device (Acuson X‑300 or X‑700). The examinations were randomized and blinded to two examiners within 30 min. The examinations took place in the intensive care unit, the emergency room and the ambulance service. The results were recorded in an examination sheet.
Results:
In all, 93 patients (61 men and 32 women, age 69 ± 14.76 [33-95] years). In 32.6% (30/93) of examinations with HEUS the examination conditions were optimal and in 29.03% (27/93) when the HHUS was used. Of the examinations, 50.08% (31/61) were carried out by both examiners in the same patient position. Using HHUS, the following sensitivity and specificities (respectively) were found: pericardial effusion (73.68%; 96.97%), hemodynamically relevant effusion (50%; 97.67%), right heart strain (90,91%; 96,72%), arrest of the right ventricle (100%; 87,5%), limitation of left ventricular pump function (91.49%; 86.11%), wall movement disorders (WMD, 97.29%; 78.95%), aortic valve sclerosis (42.86%; 86.67%), aortic regurgitation (60%; 95%), mitral valve sclerosis (60%; 100%), mitral reguritation (66.67%; 82.86%), tricuspid valve regurgitation (48%; 81,48%). Measurements of the dimensions of pericardial effusion, the left ventricle, the left atrium and the left ventricular posterior wall each had a positive correlation between the examination with HHUS and HEUS (Κ = 0.45 to 0.91). The diameters determined by HHUS and HEUS for the septum and aortic root, however, correlated negatively (κ = -0.61 to -0.86).
Conclusions:
The use of echoscopy in emergency and intensive care medicine is not inferior to HEUS for detecting defined cardiac pathologies.
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