Right Ventricular Function

5

Review clinical trials related to Right Ventricular Function. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

RIght VEntricle Response to Major Lung Resection in VATS and Robotic Surgery

Major pulmonary resection is associated with high postoperative morbidity and mortality, mainly due to cardiorespiratory complications. Right ventricular (RV) function is closely related to pulmonary artery pressure and tone, and it is particularly sensitive to changes in afterload. An increase in RV flow resistance can lead to acute RV dilation and reduced left ventricular compliance, potentially progressing to cardiogenic shock. In a previous study (RIVER), it was observed that increased afterload following open thoracic surgery reduces RV function, although this impairment remains subclinical. The aim of this study is to investigate the same parameters in patients with severe cardiovascular comorbidities undergoing pulmonary resection via minimally invasive approaches (VATS and robotic surgery) compared to open thoracotomy.

Participants needed: 100
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: Istituto Clinico HumanitasUpdated: Jun 25, 2026Locations: 1
Eligibility criteria

Adult patients aged ≥18 years [+10]

Urgent/emergency surgery [+6]

Status: Recruiting

Multimodality RV Phenotyping for Risk Stratification and Short-Term Outcomes in Group 1 PAH

The MIRROR-PAH is a single-center, prospective, observational cohort study evaluating the incremental value of multimodality imaging-derived right ventricular characteristics for risk stratification in patients with Group 1 pulmonary arterial hypertension (PAH). The study aims to determine whether incorporation of echocardiographic and cardiac magnetic resonance (CMR)-derived right ventricular parameters into established non-invasive risk assessment models results in risk reclassification and improves identification of patients at risk for short-term clinical worsening. Adult patients with established Group 1 PAH undergoing routine follow-up and with available right heart catheterization (RHC) and CMR data will be consecutively enrolled. Clinical, laboratory, echocardiographic, and follow-up data will be prospectively collected over a 6-month period. Associations between multimodality imaging findings, invasive hemodynamic measurements, risk classification, and short-term clinical outcomes will be evaluated.

Participants needed: 50
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: Istanbul University - CerrahpasaUpdated: Jun 25, 2026Locations: 1
Eligibility criteria

Adults aged 18 years or older [+5]

Age younger than 18 years [+4]

Status: Not yet recruiting

Bedside Assessment of Right Ventricular Output Lying in Prone Or Supine Position

Right ventricular failure (RVF) is a common complication to cardiac surgery, which is associated to mortality, kidney failure, stroke, prolonged mechanical ventilation and ICU stay. The right ventricle is particularly vulnerable to an increased afterload. By increasing pulmonary vascular resistance (PVR), atelectasis might mitigate a negative effect on the right ventricle. Recruitment maneuvers have been shown to resolve atelectasis and improve hemodynamics by increasing cardiac output and lowering PVR. However these maneuvers transiently raise airway pressures, which in turn increases right ventricular afterload, a situation often poorly tolerated by patients with RVF. Prone position is used in patients with respiratory failure and has been shown to decrease mortality in patients with ARDS. Prone position decreases atelectasis and moves ventilation dorsally. In ARDS it also seems to mediate beneficial hemodynamic effects such as an increase in cardiac output and a decrease in PVR. The investigators hypothesis is that prone position early after cardiac surgery will increase cardiac output by recruitment of atelectasis and thereby decrease PVR.

Participants needed: 80
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Sahlgrenska University HospitalUpdated: Jun 8, 2026Locations: 1
Eligibility criteria

Scheduled for cardiac surgery using cardiopulmonary bypass

BMI >40 [+6]

Status: Recruiting

Effect of Acute Hypoxia on RIght VEntRicular Function in Asthma.

More and more people are engaging in sports in the mountains, including individuals with heart or lung diseases. At the same time, such diseases are becoming more common in Switzerland. At high altitude, less oxygen is available, which places stress on the body-particularly on the heart, which has to pump blood through the lungs. How the heart, especially the right ventricle, in people with asthma responds to this stress is still not well understood. Therefore, this study investigates how the heart responds to simulated altitudes of 2,500 m and 4,000 m, both at rest and during light physical activity in patients with asthma. The primary objective is to assess how right ventricular function changes under conditions of reduced oxygen availability. In addition, vital signs, changes in blood gases, oxygen levels in blood and tissue and shortness of breath are assessed. The "altitude" is simulated using a special gas mixture that participants inhale. Participants undergo three altitude conditions (490, 2,500, and 4,000 m above sea level). The order of the altitude conditions is assigned at random. The aim is to better understand how the right ventricle and other parameters respond to low-oxygen conditions and how affected patients can be better supported in the future.

Participants needed: 18
Trial details
Age: 18-80Biological sex: AllType: InterventionalSponsor: Mona LichtblauUpdated: May 29, 2026Locations: 1
Eligibility criteria

Signed informed consent [+4]

<18, >80 years old [+7]

Status: Recruiting

Effect of Acute Hypoxia on RIght VEntRicular Function in HAPE.

More and more people are engaging in sports in the mountains, including individuals with heart or lung diseases. At the same time, such diseases are becoming more common in Switzerland. At high altitude, less oxygen is available, which places stress on the body-particularly on the heart, which has to pump blood through the lungs. How the heart, especially the right ventricle, in people with past HAPE responds to this stress is still not well understood. Therefore, this study investigates how the heart responds to simulated altitudes of 2,500 m and 4,000 m, both at rest and during light physical activity in patients with past HAPE. The primary objective is to assess how right ventricular function changes under conditions of reduced oxygen availability. In addition, vital signs, changes in blood gases, oxygen levels in blood and tissue and shortness of breath are assessed. The "altitude" is simulated using a special gas mixture that participants inhale. Participants undergo three altitude conditions (490, 2,500, and 4,000 m above sea level). The order of the altitude conditions is assigned at random. The aim is to better understand how the right ventricle and other parameters respond to low-oxygen conditions and how affected patients can be better supported in the future.

Participants needed: 18
Trial details
Age: 18-80Biological sex: AllType: InterventionalSponsor: Mona LichtblauUpdated: May 1, 2026Locations: 1
Eligibility criteria

Signed informed consent [+4]

<18, >80 years old [+7]