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Evaluation of Atelectasis Formation With Electrical Impedance Tomography During Anesthesia for MRI in Children

Evaluation of Atelectasis Formation With Electrical Impedance Tomography During Anesthesia for MRI in Children

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04507581
Acronym
ATLANTIS
Enrollment
30
Registered
2020-08-11
Start date
2020-07-30
Completion date
2024-10-30
Last updated
2026-05-12

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

Conditions

Anesthesia

Keywords

children, electrical impedance tomography

Brief summary

This study investigates under controlled conditions the variation of poorly ventilated lung units (silent spaces) in children between 1 and 6 years of age measured by electrical impedance tomography during intravenous anaesthesia in a day-hospital setting and before discharge to help further raise safety standards in paediatric anaesthesia

Detailed description

Eligible, children, with parental written informed consent, scheduled for a cerebral magnetic resonance image (MRI) will receive an intravenous anaesthesia using a Propofol infusion of 10 mg/kg/h. At the Bern Children's Hospital all children will be premedicated with Midazolam rectal/oral 0.5 mg/kg or Dexmedetomidine nasal 2 mcg/kg 20 minutes before the beginning of the procedure Eligible children will be prepared for procedure according to the local SOPs of the paediatric anaesthesia departments. Mandatory monitoring will consist of: SpO2, HR, NIBP. An iv-line for drugs injection will be placed. Induction of anaesthesia: after iv-line placement a bolus of Propofol of 2 mg/kg followed by a continuous infusion of 10 mg/kg/h will be applied. Administration of low-flow oxygen for all children (0.3 l/kg/min) via Microstream® Smart CapnoLine® paediatric cannula (Philips Healthcare, Amsterdam, Netherlands). This cannula allows to measure the etCO2. In case of extremely agitated child an inhalative induction may be performed. This technique represent the actual standard of care and is not associated with increased risks because of the study. Before induction of the anaesthesia, before the radiological procedure when the induction is terminated, after the termination of the radiological procedure, before transport to the Post anaesthesia Care Unite (PACU), and before the discharge from the PACU after 2 hours of monitoring ventilation distribution changes by thoracic electrical impedance tomography are measured (each measurement will last 1 min).

Interventions

OTHERelectrical impedance tomography during anaesthesia

Before induction of the anaesthesia, before the radiological procedure when the induction is terminated, after the termination of the radiological procedure, before transport to the Post anaesthesia Care Unite (PACU), and before the discharge from the PACU after 2 hours of monitoring ventilation distribution changes by thoracic electrical impedance tomography are measured (each measurement will last 1 min). For this, resulting potential differences are measured, and impedance distribution sampled at 30 Hz will be calculated by an automated linearized Newton-Raphson reconstruction algorithm (9). Relative change in poorly ventilated lung regions (silent spaces) and end-expiratory lung impedance (EELI) and measures of ventilation inhomogeneity such as the global inhomogeneity index will be calculated as described previously, using customised software (Matlab R2013a, The MathWorks, Nattick, Massachusetts, USA)(10-12).

Sponsors

Insel Gruppe AG, University Hospital Bern
Lead SponsorOTHER

Study design

Observational model
OTHER
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
1 Years to 6 Years
Healthy volunteers
Yes

Inclusion criteria

* ASA physical status 1 to 3, * 1 to 6 years of age with legal guardians providing written informed consent.

Exclusion criteria

*

Design outcomes

Primary

MeasureTime frameDescription
Changes in poorly ventilated lung areas at 2 Hours after intervention2 hoursChanges in poorly ventilated lung areas (silent spaces) by using electrical impedance tomography (EIT) 2 hours after the end of anaesthesia before discharge at home, which will help quantify the degree of atelectasis

Secondary

MeasureTime frameDescription
2 min after Anesthesia induction2 minutes after the end of anaesthesia inductionChanges in silent spaces and end-expiratory lung impedance (EELI) by using electrical impedance tomography (EIT) 2 minutes after the end of induction, before the radiological procedure.
end of the radiological procedure.2 minutes after the end of radiological procedureChanges in silent spaces and end-expiratory lung impedance (EELI) by using electrical impedance tomography (EIT) at the end of the radiological procedure
2 minutes after the end of anaesthesia2 minutes after the end of anaesthesia, before the transport in Post Anaesthesia Care UnitChanges in silent spaces and end-expiratory lung impedance (EELI) by using electrical impedance tomography (EIT) 2 minutes after the end of anaesthesia, before the transport in PACU.
Duration of radiological procedure.minutesDuration of radiological procedure.
Duration of anaesthesiaminutesDuration of anaesthesia

Countries

Switzerland

Contacts

PRINCIPAL_INVESTIGATORThomas H Riva, MD

University of Bern

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: May 13, 2026