Comparison of Maternal Hemodynamics During Spinal Anesthesia with Different Cesarean Delivery Positioning

Trial statusNot yet recruiting
Trial phaseNot applicable
Trial typeInterventional
Biological sexFemale
Age20-40
SponsorAswan University

About this trial

Cesarean delivery is a common surgical procedure, and maintaining maternal hemodynamic stability during the procedure is crucial for both maternal and fetal outcomes . Hemodynamic instability, such as hypotension following spinal anesthesia, is a frequent complication and can lead to adverse maternal and neonatal outcomes. Traditionally, after spinal anesthesia, women are positioned supine, sometimes with a slight left lateral tilt to mitigate the risk of aortocaval compression . However, recent studies and clinical observations suggest that delayed supine positioning-keeping the patient in a sitting or semi-sitting position for a period following spinal anesthesiamay improve hemodynamic stability. These alternative positions may help to mitigate the abrupt drop in blood pressure commonly seen after spinal anesthesia by allowing for a more gradual redistribution of blood volume . Understanding the optimal positioning strategy could lead to improved clinical protocols that enhance maternal and fetal safety. By comparing immediate supine positioning with delayed supine positioning (in sitting and semi-sitting positions), this study aims to provide evidence on which positioning strategy offers the best hemodynamic outcomes.

Eligibility criteria

Qualifiers

Pregnant women scheduled for elective cesarean delivery.

Age between 18 and 40 years.

ASA (American Society of Anesthesiologists) physical status II.

Disqualifiers

Emergency cesarean delivery.

Pre-existing cardiovascular disease.

Severe preeclampsia or eclampsia.

Multiple pregnancies.

Trial design

Treatments tested in this trial

  • Positioninng during Cs

Treatment groups

216 Participants
are divided into 3 treatment groups

Sponsors and collaborators

Aswan University

Lead sponsor

Aswan University Hospital

Collaborator