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Recruiting NCT07467200

Effect of Trendelenburg Position on Patient State Index

Observational Laparoscopic Hysterectomy

For patients and families

In plain language

An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.

What is being studied
This is an observational study: the protocol does not assign a study treatment.
Who it may be relevant to
Registry conditions: Laparoscopic Hysterectomy. Basic parameters: 18 years — 65 years · Female.
What needs checking
Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
Where it takes place
Turkey (Türkiye)
Next step
Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
Official title

Effect of the Trendelenburg Position on Patient State Index and Frontal Cerebral Oxygenation: A Prospective Observational Study

Overview

The goal of this observational study is to evaluate whether the Trendelenburg position affects electroencephalography-based depth of anesthesia monitoring and cerebral oxygenation during general anesthesia. The main questions it aims to answer are: * Does the Trendelenburg position cause a change in the Patient State Index (PSI), an Electroensephalography (EEG)-derived indicator of anesthetic depth? * Are changes in PSI associated with changes in frontal cerebral oxygen saturation (rSO₂) and hemodynamic parameters? The study will include adult female patients undergoing elective laparoscopic gynecologic surgery under general anesthesia. Participants will receive standard anesthesia and routine intraoperative monitoring. In addition to standard monitoring, Patient State Index (PSI) and frontal cerebral oxygen saturation (rSO₂) will be recorded using non-invasive sensors. No additional intervention will be performed for research purposes. Physiological parameters including PSI, cerebral oxygen saturation, mean arterial pressure, heart rate, oxygen saturation, and end-tidal carbon dioxide will be recorded at predefined intraoperative time points before and after the Trendelenburg position. The study aims to determine whether position-related physiological changes influence EEG-based anesthesia depth indices and to improve the interpretation of intraoperative brain monitoring.

Detailed description

Electroencephalography (EEG)-based depth of anesthesia monitors are widely used to assess the hypnotic component of general anesthesia. The Patient State Index (PSI) is a processed EEG parameter derived from frontal EEG signals and provides a numerical estimate of anesthetic depth ranging from 0 to 100. Although these indices are primarily designed to reflect the pharmacologic effects of anesthetic agents, physiological factors that influence cerebral hemodynamics may also affect EEG-derived parameters.

The Trendelenburg position is frequently used during laparoscopic pelvic surgery to improve surgical exposure. This position can alter venous return, increase cerebral venous pressure, and influence intracranial dynamics. When combined with pneumoperitoneum, these physiological changes may modify cerebral blood flow and cerebral oxygenation. Such alterations may potentially influence EEG-based indices of anesthetic depth independently of anesthetic drug concentration.

Previous studies have demonstrated that body position can influence processed EEG indices such as the bispectral index (BIS), particularly in the beach-chair position. However, the response of the Patient State Index to the Trendelenburg position has not been clearly established.

This prospective observational study aims to evaluate whether the Trendelenburg position affects PSI values during general anesthesia and to investigate the relationship between PSI changes and cerebral oxygenation measured by near-infrared spectroscopy (NIRS).

Adult female patients undergoing elective laparoscopic hysterectomy under general anesthesia will be included. Standard intraoperative monitoring will be applied, including electrocardiography, non-invasive blood pressure, pulse oximetry, end-tidal carbon dioxide, and anesthetic gas monitoring. In addition, EEG-based depth of anesthesia monitoring will be performed using the PSI monitor (Masimo SedLine), and frontal cerebral oxygen saturation (rSO₂) will be measured using near-infrared spectroscopy sensors.

Physiological parameters including PSI, cerebral oxygen saturation, mean arterial pressure, heart rate, oxygen saturation, and end-tidal carbon dioxide will be recorded at predefined intraoperative time points: before induction of anesthesia, after tracheal intubation in the supine position, after pneumoperitoneum, and at several intervals following the Trendelenburg position.

No intervention will be performed for research purposes. Anesthetic management and surgical positioning will follow routine clinical practice. The study will analyze whether position-related physiological changes are associated with variations in PSI and whether these changes correlate with cerebral oxygenation or hemodynamic parameters.

Understanding the influence of patient positioning on EEG-based anesthesia depth indices may improve the interpretation of intraoperative brain monitoring and help prevent unnecessary adjustments of anesthetic drug dosing.

Primary outcome measures

  • Change in Patient State Index (ΔPSI) After Trendelenburg Position [Time frame: From Post-intubation (Supine) to Trendelenburg Positioning]
Secondary outcome measures (3)
  • Change in Frontal Cerebral Oxygen Saturation (rSO₂) [Time frame: Intraoperative period (recorded at predefined time points before and after Trendelenburg positioning)]
  • Mean Arterial Pressure Changes During Trendelenburg Position [Time frame: Intraoperative period (recorded at predefined time points before and after Trendelenburg positioning)]
  • Heart Rate Changes During Trendelenburg Position [Time frame: Intraoperative period (recorded at predefined time points before and after Trendelenburg positioning)]

Eligibility criteria

Inclusion criteria

  • Female patients aged 18-65 years
  • American Society of Anesthesiologists (ASA) physical status I-III
  • Scheduled for elective laparoscopic hysterectomy under general anesthesia
  • Ability to provide written informed consent

Exclusion criteria

  • History of neurological disease (e.g., stroke, epilepsy)
  • Known cerebrovascular disease, glaucoma, or retinal disease
  • Severe cardiac or pulmonary disease
  • Contraindication to near-infrared spectroscopy sensor placement
  • Obesity (Body Mass Index > 35 kg/m²)

Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.

Healthy volunteers: No

Study design

Observational model
Cohort

Study locations

Turkey (Türkiye) · 1 center
  • Sakarya University Training and Research Hospital, Department of Anesthesiology and Reanim — Sakarya

Publications

  • Buget MI, Atalar AC, Edipoglu IS, Sungur Z, Sivrikoz N, Karadeniz M, Saka E, Kucukay S, Senturk MN. Patient state index and cerebral blood flow changes during shoulder arthroscopy in beach chair position. Braz J Anesthesiol. 2016 Sep-Oct;66(5):470-4. doi: 10.1016/j.bjane.2015.02.002. Epub 2015 Oct 1. PMID 27591460
  • Chen W, Wang J, Wang L, Hu W, Chen X, Jin L. Effect of patient position on the EEG bispectral index and entropy index under general anaesthesia. Technol Health Care. 2025;33(1):311-319. doi: 10.3233/THC-241026. PMID 39302400

Identifiers

NCT: NCT07467200 · SEAH-TrendelenburgPsi-2026

Primary sources (government registries)

View this study on ClinicalTrials.gov ↗