Background: Awake prone position is an emerging rescue therapy applied in patients undergoing noninvasive ventilation (NIV) for acute hypoxemic respiratory failure (ARF) related to novel coronavirus disease (COVID-19). Although applied to stabilize respiratory status, in awake patients, the application of prone position may reduce comfort with a consequent increase in the workload imposed on respiratory muscles. Thus, we primarily ascertained the effect of awake prone position on diaphragmatic thickening fraction, assessed through ultrasound, in COVID-19 patients undergoing NIV.
Methods: We enrolled all COVID-19 adult critically ill patients, admitted to intensive care unit (ICU) for hypoxemic ARF and undergoing NIV, deserving of awake prone positioning as a rescue therapy. Exclusion criteria were pregnancy and any contraindication to awake prone position and NIV. On ICU admission, after NIV onset, in supine position, and at 1 h following awake prone position application, diaphragmatic thickening fraction was obtained on the right side. Across all the study phases, NIV was maintained with the same setting present at study entry. Vital signs were monitored throughout the entire study period. Comfort was assessed through numerical rating scale (0 the worst comfort and 10 the highest comfort level). Data were presented in median and 25th-75th percentile range.
Results: From February to May 2021, 20 patients were enrolled and finally analyzed. Despite peripheral oxygen saturation improvement [96 (94-97)% supine vs 98 (96-99)% prone, p = 0.008], turning to prone position induced a worsening in comfort score from 7.0 (6.0-8.0) to 6.0 (5.0-7.0) (p = 0.012) and an increase in diaphragmatic thickening fraction from 33.3 (25.7-40.5)% to 41.5 (29.8-50.0)% (p = 0.025).
Conclusions: In our COVID-19 patients assisted by NIV in ICU, the application of awake prone position improved the oxygenation at the expense of a greater diaphragmatic thickening fraction compared to supine position. Trial registration ClinicalTrials.gov, number NCT04904731. Registered on 05/25/2021, retrospectively registered. https://clinicaltrials.gov/ct2/show/NCT04904731 .
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http://dx.doi.org/10.1186/s13054-021-03735-x | DOI Listing |
Br J Anaesth
January 2025
Department of Anaesthesiology, Perioperative and Pain Medicine, Nanjing First Hospital, Nanjing Medical University, Nanjing, China.
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Int J Radiat Oncol Biol Phys
January 2025
Department of Radiation Oncology, New York University Langone Health and Perlmutter Cancer Center, New York, NY.
Background: In patients with breast cancer, prone radiation therapy (RT) has been shown to reduce heart and lung dose. Though prone positioning is routinely used for whole breast RT, its use when treating the regional lymph nodes (RLNs) is not widespread.
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Crit Care Resusc
December 2024
Australian and New Zealand Intensive Care - Research Centre, School of Public Health and Preventive Medicine, Monash University, Melbourne Australia.
Objective: To describe the use of and outcomes from awake prone positioning (APP) in nonintubated patients with COVID-19 in Australian intensive care units (ICUs) in comparison to those who did not receive APP, and to explore the temporal relationship between publication of APP research and changes in clinical practice.
Design: Multicentre, observational cohort study.
Setting: Seventy-eight Australian ICUs participating in SPRINT-SARI Australia.
Arthrosc Tech
December 2024
American Hip Institute Research Foundation, Chicago, Illinois, U.S.A.
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View Article and Find Full Text PDFMed Klin Intensivmed Notfmed
January 2025
Universitätsklinik für Innere Medizin I, Medizinische Universität Wien, Allgemeines Krankenhaus der Stadt Wien, Währinger Gürtel 18-20, 1090, Wien, Österreich.
Acute respiratory distress syndrome (ARDS) is defined as an acute inflammatory syndrome leading to increased pulmonary capillary leakage and subsequent interstitial and alveolar pulmonary edema. Hypoxia is the predominant symptom. The definition of ARDS comprises acute onset, bilateral patchy infiltration on chest X‑ray and a reduction of the ratio of arterial partial pressure of oxygen (PaO) to the fraction of inspired oxygen (FiO), which also determines the classification into mild (≤ 300), moderate (≤ 200) and severe (≤ 100) ARDS.
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