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NCT Number: NCT07273227

A Multicenter Randomized Controlled Trial of Echocardiography-Guided Atrial Septal Defect Closure Performed in a Mobile Surgical Unit

Cardiovascular disease remains a major threat to global health, and structural heart disease which encompassing congenital heart defects, valvular disease, and cardiomyopathies constitutes a substantial proportion of its burden. Atrial septal defect (ASD) is among the most common congenital heart conditions, occurring in approximately 1.6 per 1,000 live births. Percutaneous closure of ASD has become the standard treatment due to its minimally invasive nature and proven efficacy. However, conventional closure procedures rely heavily on fluoroscopic guidance and iodinated contrast, which carry risks of radiation exposure, contrast-related harm, and limit applicability in specific patient groups. Moreover, such procedures must be performed in catheterization laboratories equipped with digital subtraction angiography systems.

To overcome these limitations, our team has spent over a decade developing a fully ultrasound-guided, radiation-free, contrast-free percutaneous intervention system-an original Chinese innovation that has pioneered "no incision, no fluoroscopy, and no general anesthesia" treatment for structural heart disease. This methodology has evolved into a comprehensive technical system and has been successfully applied to ASD, PFO, ventricular septal defect (VSD), patent ductus arteriosus (PDA), and several valvular disorders. It has been recognized by national clinical guidelines (2017), awarded the Chinese Medical Association First-Class Science and Technology Award (2022), and honored by the World Health Organization Innovation Award.

Building upon the unique advantages of ultrasound-only guidance, we further developed a Mobile Surgical Vehicle. This mobile surgical unit integrates ultrasound imaging, sterilization, monitoring, and anesthesia equipment, enabling true "hospital-free" procedures for underserved regions lacking large medical devices. Early applications in remote areas of Southwest China and Belt-and-Road countries have demonstrated promising safety and feasibility.

Nevertheless, high-quality clinical evidence evaluating this mobile platform for ASD closure is lacking. To address this gap, we propose a multicenter randomized controlled trial to demonstrate that mobile-platform ultrasound-guided closure is non-inferior to conventional in-hospital ultrasound-guided procedures. This study will also refine methodology, workflow, and safety protocols for mobile interventional therapy. Its findings will provide essential evidence supporting this original Chinese technology, expand its international impact, and enable broader access for patients in remote regions.

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Key information

Age range

8 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 4

Primary location

Chinese Academy of Medical Sciences, Fuwai Hospital, Beijing

Beijing, Beijing Municipality, 100037, China

Location contact

Cheng Wang, MD.PhD

CONTACT

[email protected]

18610945896

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Patients ≥8 years and able to undergo percutaneous intervention under local anesthesia.
  • Diagnosed with secundum ASD with a defect diameter of ≥6 mm and ≤36 mm, accompanied by right-sided volume overload.
  • Anatomical features suitable for transcatheter closure: the distance from the defect rim to the coronary sinus, superior vena cava, inferior vena cava, and pulmonary veins is ≥5 mm; and the distance to the mitral valves is ≥7 mm.

Exclusion criteria

  • Presence of primum ASD or sinus venosus ASD.
  • Infective endocarditis or intracardiac thrombus.
  • ASD with right-to-left shunting.
  • Concomitant intracardiac anomalies requiring simultaneous surgical repair.

Treatment and study plan

Mobile Surgical Vehicle Echocardiography-guided ASD closure Group

Other

Patients undergo ultrasound-guided percutaneous atrial septal defect closure performed inside a mobile surgical vehicle.

Conventional Operating Room Echocardiography-guided ASD closure Group

Other

Patients undergo ultrasound-guided percutaneous atrial septal defect closure performed in a conventional operating room.

Primary outcomes

  1. composite endpoint events

    Time frame: at 30 days after the procedure

    Composite endpoint events at 30 days after procedure, including failure of ultrasound-guided closure (conversion to fluoroscopy-guided intervention or open-heart surgery), residual shunt >2 mm, device embolization or migration, new-onset arrhythmia, bleeding, and infection.

Secondary outcomes

  1. failure of ultrasound-guided closure (conversion to fluoroscopy-guided intervention or open-heart surgery)

    Time frame: immediately after the procedure

    failure of ultrasound-guided closure (conversion to fluoroscopy-guided intervention or open-heart surgery)

  2. residual shunt >2 mm

    Time frame: at 30 days after the procedure

    residual shunt >2 mm under echocardiography

  3. device embolization or migration

    Time frame: at 30 days after the procedure

    new device embolization or migration after procedure

  4. new-onset arrhythmia

    Time frame: at 30 days after the procedure

    new-onset arrhythmia after procedure

  5. bleeding

    Time frame: at 30 days after the procedure

    new bleeding after the procedure

  6. infection

    Time frame: at 30 days after the procedure

    new infection after procedure

  7. Composite endpoint events at 1 year

    Time frame: at 1 year after the procedure

    Composite endpoint events at 1 year after procedure, including failure of ultrasound-guided closure (conversion to fluoroscopy-guided intervention or open-heart surgery), residual shunt >2 mm, device embolization or migration, new-onset arrhythmia, bleeding, and infection.

  8. length of postoperative hospital stay

    Time frame: at discharge (within 10 days after the procedure)

    length of postoperative hospital stay

  9. hospitalization costs

    Time frame: at discharge (within 10 days after the procedure)

    hospitalization cost

Study contacts

Contact information is provided by the study sponsor or research team.

Cheng Wang, MD,PhD

CONTACT

[email protected]

18610945896

Sponsors and collaborators

Lead sponsor

China National Center for Cardiovascular Diseases

Other Gov

Registry information

Important dates

Study start
2025
Primary completion
2027
Study completion
2028
First posted
Dec 9, 2025
Registry last updated
Dec 9, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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