Literature DB >> 32628910

Pulse oximetry in low-resource settings during the COVID-19 pandemic.

Nichole Starr1, Daniela Rebollo2, Yohannes Molla Asemu3, Leulayehu Akalu4, Hanan Ali Mohammed5, Misrak Woldeyohannes Menchamo4, Eyayelem Melese4, Senait Bitew6, Iain Wilson7, Mahelet Tadesse8, Thomas G Weiser9.   

Abstract

Entities:  

Mesh:

Year:  2020        PMID: 32628910      PMCID: PMC7333981          DOI: 10.1016/S2214-109X(20)30287-4

Source DB:  PubMed          Journal:  Lancet Glob Health        ISSN: 2214-109X            Impact factor:   26.763


× No keyword cloud information.
Pulse oximetry is essential for assessing oxygen saturation during respiratory compromise and for monitoring patients undergoing anaesthesia, who are critically ill, or whose condition is rapidly evolving. More immediately, during the ongoing COVID-19 pandemic, silent hypoxia (ie, abnormally low oxygen saturation without symptoms of dyspnoea), is common in patients with COVID-19. In low-resource settings where oxygen supplies and monitored beds are scarce, pulse oximetry is a crucial device for triaging patients and establishing the need for supplemental oxygen. Early recognition of hypoxia and oxygen administration has been shown to reduce mortality, and a triage tool developed in collaboration with WHO uses pulse oximetry to guide management of oxygen therapy. In Ethiopia, pulse oximetry is not widely available. The Federal Ministry of Health has developed a National Newborn and Child Survival Strategy to address these gaps, and efforts have been made between the Ministry and aid organisations to combat pneumonia and neonatal hypoxaemia and tackle shortfalls in perioperative care.5, 6 As part of a long-term pulse oximeter training and distribution programme developed by the Lifebox Foundation, we surveyed Ethiopian hospitals for the presence and functionality of devices and capacity for oxygen saturation monitoring. In partnership with national anaesthesia professional societies, we approached anaesthesia providers in facilities capable of providing surgical care, because these providers and hospitals have been the focus of previous distribution efforts and they typically have access to a pulse oximeter if it is available. Hospitals were selected by purposive sampling, including ten hospitals each in the five most populated regions, and at least two each in the remaining six regions. From 90 candidate public hospitals nationwide, 60 were identified and one anaesthesia provider from each was contacted for participation; 58 public hospitals and one private hospital completed the survey. All surveyed hospitals reported at least one functioning operating room. They had a median of 3 (IQR 2–5) integrated pulse oximetry monitors (IPOs) and 0 (0–2) portable pulse oximetry monitors (PPOs; appendix). Most surveyed hospitals (49 [83%]) reported additional integrated monitors in their post-anaesthesia care unit (PACU) but few portable monitors (median 0 [IQR 0–1]). Of the 41 (70%) hospitals with an intensive care unit (ICU), there were a median of 4 (4–6) integrated monitors but 0 (0–1) portable devices. 54 (91%) hospitals had an emergency room with at least one bed for critically ill patients (median 4 [IQR 2–6]), but a median of only 1 (0–2) integrated and 0 (0–1) portable pulse oximetry monitors. We calculated the monitoring gap (designated high-acuity beds–pulse oximetry monitors) for each clinical area. In operating rooms, the mean monitoring gap was −0·6 beds (SD 2·3), meaning that on average, every operating room bed was monitored. The mean gap in PACUs was 2·9 beds (SD 3·1), in ICUs it was 1·2 (SD 2·7), and in emergency rooms it was 2·9 (SD 3·1). Although pulse oximetry monitoring capacity is well met in most of the Ethiopian operating rooms surveyed, four referral and two general hospitals reported at least one operating room without a patient monitor. Furthermore, large gaps remain in other critical units of the hospital, including PACUs, ICUs, and emergency rooms, where on average there were 1–3 unmonitored high-acuity beds per unit. Particularly in emergency rooms, about 75% of critical beds were unmonitored in referral and general hospitals, and primary hospitals had essentially no access to pulse oximetry. Over the past 8 years, Lifebox has distributed 1108 devices in Ethiopia, typically directly to anaesthesia providers; nearly half of those surveyed had received one, and of 140 devices that were identified during the survey work, 123 were still in use up to 7 years later (nine were reported as missing and eight reported as malfunctioning). These were typically owned by the providers themselves and were thus not available for flexible clinical use. Despite its durability and usefulness in clinical care, there were very few generally available portable pulse oximeters that could move to areas of a hospital as needed, whether to recovery rooms, intensive care, emergency units, or even point-of-care screening and triage areas. The pulse oximeter was a crucial monitoring device before the pandemic, and will be long after it subsides. Although oxygen saturation assessment and monitoring is a critical component of patient triage and clinical decision making during the COVID-19 pandemic, few pulse oximeters are available in low-resource settings. Ethiopia is no exception, and closing the monitoring gap in clinical environments, including emergency and critical care units, should be prioritised, as should availability of oxygen resources. Pulse oximeters enable clinicians to identify and rapidly treat hypoxia, monitor patients in respiratory distress or at risk of deterioration, and aid decision making and allocation of precious hospital beds and oxygen resources. Their scarcity is symptomatic of the insufficient investment in emergency and essential critical care and the surgical, obstetric, and anaesthetic ecosystem. Investing in these devices pays tremendous dividends because they are durable, highly valued, and can be rapidly used across clinical units.
  6 in total

1.  National Surgical, Obstetric, and Anesthesia Planning in the Context of Global Surgery: The Way Forward.

Authors:  Kristin A Sonderman; Isabelle Citron; John G Meara
Journal:  JAMA Surg       Date:  2018-10-01       Impact factor: 14.766

2.  Safe Surgery for All: Early Lessons from Implementing a National Government-Driven Surgical Plan in Ethiopia.

Authors:  Daniel Burssa; Atlibachew Teshome; Katherine Iverson; Olivia Ahearn; Tigistu Ashengo; David Barash; Erin Barringer; Isabelle Citron; Kaya Garringer; Victoria McKitrick; John Meara; Abraham Mengistu; Swagoto Mukhopadhyay; Cheri Reynolds; Mark Shrime; Asha Varghese; Samson Esseye; Abebe Bekele
Journal:  World J Surg       Date:  2017-12       Impact factor: 3.352

Review 3.  Severe Covid-19.

Authors:  David A Berlin; Roy M Gulick; Fernando J Martinez
Journal:  N Engl J Med       Date:  2020-05-15       Impact factor: 91.245

4.  Essential care of critical illness must not be forgotten in the COVID-19 pandemic.

Authors:  Tim Baker; Carl Otto Schell; Dan Brun Petersen; Hendry Sawe; Karima Khalid; Samson Mndolo; Jamie Rylance; Daniel F McAuley; Nobhojit Roy; John Marshall; Lee Wallis; Elizabeth Molyneux
Journal:  Lancet       Date:  2020-04-01       Impact factor: 79.321

5.  Adoption of COVID-19 triage strategies for low-income settings.

Authors:  Rodgers R Ayebare; Robert Flick; Solome Okware; Bongomin Bodo; Mohammed Lamorde
Journal:  Lancet Respir Med       Date:  2020-03-11       Impact factor: 30.700

6.  Lower mortality of COVID-19 by early recognition and intervention: experience from Jiangsu Province.

Authors:  Qin Sun; Haibo Qiu; Mao Huang; Yi Yang
Journal:  Ann Intensive Care       Date:  2020-03-18       Impact factor: 6.925

  6 in total
  10 in total

Review 1.  Evidence based management guidelines in dentistry during the COVID-19 pandemic - a review of the literature.

Authors:  Kanamarlapudi Venkata Saikiran; Putta Sai Sahiti; Somisetty Venkata Mahalakshmi Mounika; Sainath Reddy Elicherla; Raichurkar Hemanth Kumar; Gonegandla Giriraj Sandeep
Journal:  Med Pharm Rep       Date:  2021-10-30

2.  Derivation of a Contextually-Appropriate COVID-19 Mortality Scale for Low-Resource Settings.

Authors:  J L Pigoga; Y O Omer; L A Wallis
Journal:  Ann Glob Health       Date:  2021-03-26       Impact factor: 2.462

3.  Screening for COVID-19 in Older Adults: Pulse Oximeter vs. Temperature.

Authors:  Catherine R Van Son; Deborah U Eti
Journal:  Front Med (Lausanne)       Date:  2021-04-14

Review 4.  A proposal to make the pulse oximetry as omnipresent as thermometry in public health care systems.

Authors:  Arvinder Singh; Sushila Kataria; Payal Das; Amit Sharma
Journal:  J Glob Health       Date:  2020-12       Impact factor: 4.413

5.  SWIFT: A deep learning approach to prediction of hypoxemic events in critically-Ill patients using SpO2 waveform prediction.

Authors:  Akshaya V Annapragada; Joseph L Greenstein; Sanjukta N Bose; Bradford D Winters; Sridevi V Sarma; Raimond L Winslow
Journal:  PLoS Comput Biol       Date:  2021-12-21       Impact factor: 4.475

Review 6.  Pediatric Critical Care in Resource Limited Settings-Lessening the Gap Through Ongoing Collaboration, Advancement in Research and Technological Innovations.

Authors:  Ashley Bjorklund; Tina Slusher; Louise Tina Day; Mariya Mukhtar Yola; Clark Sleeth; Andrew Kiragu; Arianna Shirk; Kristina Krohn; Robert Opoka
Journal:  Front Pediatr       Date:  2022-01-31       Impact factor: 3.418

7.  Evaluation of a New Smartphone Powered Low-cost Pulse Oximeter Device.

Authors:  Hundessa Daba Nemomssa; Hakkins Raj
Journal:  Ethiop J Health Sci       Date:  2022-07

8.  Cost-effectiveness and sustainability of improved hospital oxygen systems in Nigeria.

Authors:  Hamish R Graham; Ayobami A Bakare; Adejumoke Idowu Ayede; Joseph Eleyinmi; Oyaniyi Olatunde; Oluwabunmi R Bakare; Blessing Edunwale; Eleanor F G Neal; Shamim Qazi; Barbara McPake; David Peel; Amy Z Gray; Trevor Duke; Adegoke G Falade
Journal:  BMJ Glob Health       Date:  2022-08

9.  Barriers to COVID-19 Health Products in Low-and Middle-Income Countries During the COVID-19 Pandemic: A Rapid Systematic Review and Evidence Synthesis.

Authors:  Ezekiel Boro; Beat Stoll
Journal:  Front Public Health       Date:  2022-07-22

10.  SWIFT: A Deep Learning Approach to Prediction of Hypoxemic Events in Critically-Ill Patients Using SpO 2 Waveform Prediction.

Authors:  Akshaya V Annapragada; Joseph L Greenstein; Sanjukta N Bose; Bradford D Winters; Sridevi V Sarma; Raimond L Winslow
Journal:  medRxiv       Date:  2021-03-05
  10 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.