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Airway management is a key skill in emergency and critical care settings, as maintaining a clear airway is essential for adequate oxygenation and ventilation.Head Tilt-Chin Lift TechniqueThe head tilt-chin lift maneuver is an essential technique primarily used in patients without suspected cervical spine injuries. To perform this maneuver, one hand is placed on the patient’s forehead, and gentle pressure is applied backward to tilt the head. The fingertips of the other hand are positioned...
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Interprofessional Consensus Regarding Design Requirements for Liquid-Based Perinatal Life Support (PLS) Technology.

M Beatrijs van der Hout-van der Jagt1,2,3, E J T Verweij4, Peter Andriessen5,6

  • 1Department of Obstetrics and Gynecology, Máxima Medical Centre, Veldhoven, Netherlands.

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|February 7, 2022
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Summary

Liquid-based perinatal life support (PLS) technology is nearing human trials. This framework guides PLS development, integrating technical, ethical, and design factors for extremely preterm infants.

Keywords:
AAPTartificial placentadesign implicationsperinatal life supportuser perspectivesvalue-sensitive design

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Area of Science:

  • Neonatal care and bio-engineering
  • Perinatal medicine and bioethics
  • Biomedical modeling and design

Background:

  • Liquid-based perinatal life support (PLS) technology is anticipated for human trials within ten years.
  • Current PLS development requires addressing technical, socio-ethical, legal, and design considerations.
  • A multidisciplinary consensus informed this framework for PLS research and development.

Purpose of the Study:

  • To establish a comprehensive framework for the research and development of liquid-based perinatal life support (PLS) technology.
  • To guide the creation of PLS systems that support the physiological development of extremely preterm infants.
  • To integrate diverse perspectives, including healthcare professionals, designers, ethicists, researchers, and patient representatives.

Main Methods:

  • Consensus-building among experts in tertiary obstetric and neonatal care, bio-ethics, and biomedical design.
  • Incorporation of insights from experimental perinatal animal models and biomedical modeling.
  • Consideration of user perspectives for co-creating a functional PLS system.

Main Results:

  • A framework outlining key requirements for PLS technology research and development.
  • Emphasis on a holistic approach encompassing technical, ethical, legal, and design aspects.
  • Focus on facilitating physiological growth and development for extremely preterm infants.

Conclusions:

  • PLS technology requires a multidisciplinary and integrated approach for successful implementation.
  • Future PLS systems should prioritize the physiological needs and development of extremely preterm infants.
  • Co-creation involving all stakeholders is essential for developing effective and ethical PLS solutions.