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Impact of Chest Wall Mechanics on Lung and Cardiovascular Function During Delayed Sternal Closure

Impact of Chest Wall Mechanics on Lung and Cardiovascular Function During Delayed Sternal Closure

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05257525
Enrollment
10
Registered
2022-02-25
Start date
2022-08-26
Completion date
2024-01-08
Last updated
2025-07-16

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

Conditions

Cardiopulmonary Bypass, Chest Wall Mechanics, Neonatal Delayed Sternal Closure, Palliation of Congenital Heart Diseases

Keywords

chest wall mechanics, congenital heart disease, neonates, delayed sternal closure, cardiopulmonary bypass

Brief summary

This study aims to describe chest wall mechanics during delayed sternal closure (DSC) in neonates following cardiopulmonary bypass or palliation of congenital heart diseases.

Detailed description

This research study is being done so that investigators can understand the complex interactions between the heart, the lungs and the chest wall after heart surgery. Understanding this may guide future care that can help patients with their recovery from heart surgery. The heart and lungs work together to make sure the body has the oxygen-rich blood it needs to function properly. The chest wall protects the heart, lungs, and other important organs. Investigators would like to learn how a patient's chest wall contributes to the heart and lungs interaction when the chest is left open after heart surgery. Investigators will be using a device called an esophageal pressure catheter to estimate the pressure that is transmitted to the lungs and heart, called pleural pressure. Previous research has shown that this pressure measurement is used to adjust the breathing machine for patients with lung diseases. Measuring the pressure transmitted to the lungs and heart after heart surgery and delayed chest wall closure may help investigators understand how the chest wall contributes to the heart and lung interaction.

Interventions

OTHEREsophageal manometry catheter at various PEEP levels and tidal volumes

Participants will undergo placement of an esophageal manometry catheter before planned sternal closure. This catheter will be used to measure esophageal pressure which is a surrogate for pleural (intrathoracic) pressure. Esophageal pressure will then be used to estimate changes in respiratory system mechanics and hemodynamics following sternal closure and across different levels of positive end-expiratory pressure (PEEP) and tidal volumes.

Sponsors

Children's Hospital Los Angeles
CollaboratorOTHER
The Hospital for Sick Children
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
OTHER
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
No minimum to 28 Days
Healthy volunteers
No

Inclusion criteria

1. Informed consent provided by parent or primary guardian. 2. Aged \<28 days of life at the time of cardiac surgery. 3. Undergone surgery using CPB for congenital heart disease. 4. Undergoing DSC in CCCU.

Exclusion criteria

1. Gestational age \< 37 weeks or weight \< 2 kg at the time of surgery. 2. Endotracheal tube leak \>20%. 3. Need of extracorporeal support (ECMO), inhaled nitric oxide. 4. Pre-existing pulmonary disease (For example: Congenital diaphragmatic hernia). 5. Pre-existing or new arrhythmia that can impact hemodynamic assessment. 6. Severe coagulopathy or any other contraindication for the insertion of a nasogastric catheter (e.g., history of tracheo-esophageal fistula).

Design outcomes

Primary

MeasureTime frameDescription
Percentage of patients with successful insertion and measurement of esophageal pressuresImmediately prior to chest closure and repeated measurements after chest closureInvestigators hypothesize that successful esophageal catheter placement and measurement of Pes (full data set) will occur in ≥80% of enrolled subjects.

Secondary

MeasureTime frameDescription
Transmural systolic pressuresPrior to and immediately after sternal chest wall closure proceduremmHg
Transmural diastolic pressuresPrior to and immediately after sternal chest wall closure proceduremmHg
Chest wall and lung compliancePrior to and immediately after sternal chest wall closure proceduremL/cmH20
Changes in transmural pressuresPrior to and immediately after sternal chest wall closure proceduremmHg
Duration of inotropic supportAt 30 days post-operation or discharge (whichever comes first)Hours
End-inspiratory and end-expiratory transpulmonary pressurePrior to and immediately after sternal chest wall closure procedurecmH20
Length ICU StayAt 30 days post-operation or discharge (whichever comes first)Days
Duration of mechanical ventilationAt 30 days post-operation or discharge (whichever comes first)Hours
Length of Hospital StayAt 30 days post-operation or discharge (whichever comes first)Days
MortalityAt 30 days post-operation or discharge (whichever comes first)Yes/No
Duration of support with supplemental oxygenAt 30 days post-operation or discharge (whichever comes first)Days

Countries

Canada

Outcome results

None listed

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