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1.
BMJ Health Care Inform ; 28(1)2021 Jul.
Article in English | MEDLINE | ID: covidwho-1322804

ABSTRACT

OBJECTIVES: Patients with COVID-19 can present to the emergency department (ED) without immediate indication for admission, but with concern for decompensation. Clinical experience has demonstrated that critical illness may present later in the disease course and hypoxia is often the first indication of disease progression. The objectives of this study are to (a) assess feasibility and describe a protocol for ED-based outpatient pulse-oximetry monitoring with structured follow-up and (b) determine rates of ED return, hospitalisation and hypoxia among participants. METHODS: Prospective observational study of patients presenting to a single academic ED in Boston with suspected COVID-19. Eligible patients were adults being discharged from the ED with presumed COVID-19. Exclusion criteria included resting oxygen saturation <92%, ambulatory oxygen saturation <90%, heart rate >110 beats per minute or inability to use the device. Study personnel made scripted phone calls on postdischarge days 1, 3 and 7 to review the pulse-oximetry readings and to evaluate for decompensation. Return visit and admission information were collected via medical record and 28-day follow-up calls. RESULTS: 81 patients were enrolled of which 10 (12%) developed hypoxia after their initial discharge from the ED. Overall, 23 (28%) of the 81 patients returned to the ED at least once and 10 of those who returned (43%) were admitted. We successfully contacted 76/81 (94%) of subjects via phone at least once for follow-up assessment. DISCUSSION: Patients are eager and willing to participate in home monitoring systems and are comfortable with using technology, which will allow providers and health systems to extend our hospitals capabilities for tracking patient populations in times of crisis. CONCLUSIONS: It is feasible to implement an outpatient pulse-oximetry monitoring protocol to monitor patients discharged from the ED with confirmed or suspected COVID-19.


Subject(s)
COVID-19/therapy , Emergency Service, Hospital , Guidelines as Topic , Monitoring, Physiologic , Oximetry , Patient Discharge , Aftercare , Boston , Female , Hospitalization , Humans , Hypoxia/etiology , Male , Middle Aged , Prospective Studies , Telemedicine
2.
Am J Emerg Med ; 46: 640-645, 2021 Aug.
Article in English | MEDLINE | ID: covidwho-956857

ABSTRACT

OBJECTIVE: Proning has been shown to improve oxygenation and mortality in certain populations of intubated patients with acute respiratory distress syndrome. Small observational analyses of COVID-19 patients suggest awake proning may lead to clinical improvement. Data on safety and efficacy is lacking. We sought to describe the effect of proning on oxygenation in nonintubated COVID-19 patients. We also evaluated feasibility, safety, and other physiological and clinical outcomes associated with this intervention. METHODS: We conducted a prospective, observational cohort study of nonintubated patients with COVID-19 who underwent proning per an Emergency Department (ED) clinical protocol. Patients with mild to moderate respiratory distress were included. We calculated change in oxygenation by comparing the oxygen saturation to fraction of inspired oxygen ratio (SpO2:FiO2) during the five minutes prior to proning and first 30 min of proning. We also captured data on respiratory rate, duration of proning, need for intubation, intensive care unit admission, survival to discharge. RESULTS: Fifty-two patients were enrolled. Thirty were excluded for not meeting protocol inclusion criteria or missing baseline oxygenation data, leaving 22 for analysis. The SpO2:FiO2 ratio increased by a median of 5 (IQR: 0-15) in the post-proning period compared to the pre-proning period (median: 298 (IQR: 263-352) vs 295 (IQR: 276-350), p = 0.01). Respiratory rate did not change significantly between time periods. No immediate adverse events occurred during proning. Five patients (23%) were intubated within 48 h of admission. CONCLUSION: Early, awake proning may be feasible in select COVID-19 patients and was associated with improved oxygenation.


Subject(s)
COVID-19/therapy , Intensive Care Units , Patient Positioning/methods , Prone Position/physiology , Respiration, Artificial/methods , SARS-CoV-2 , Wakefulness/physiology , Adult , Aged , Aged, 80 and over , COVID-19/epidemiology , Female , Follow-Up Studies , Humans , Male , Middle Aged , Pandemics , Prospective Studies , Young Adult
3.
Am J Manag Care ; 26(10): 423-424, 2020 10.
Article in English | MEDLINE | ID: covidwho-891082

ABSTRACT

In the midst of the coronavirus disease 2019 (COVID-19) pandemic, health care leaders must work to optimize emergency department and hospital efficiency while maintaining patient access to care.


Subject(s)
Betacoronavirus , Coronavirus Infections/therapy , Elective Surgical Procedures/statistics & numerical data , Emergency Service, Hospital/statistics & numerical data , Patient Admission/statistics & numerical data , Pneumonia, Viral/therapy , COVID-19 , Humans , Intensive Care Units/statistics & numerical data , Pandemics , SARS-CoV-2
4.
Case Rep Neurol ; 12(2): 199-209, 2020.
Article in English | MEDLINE | ID: covidwho-638529

ABSTRACT

COVID-19 has been associated with a hypercoagulable state causing cardiovascular and neurovascular complications. To further characterize cerebrovascular disease (CVD) in COVID-19, we review the current literature of published cases and additionally report the clinical presentation, laboratory and diagnostic testing results of 12 cases with COVID-19 infection and concurrent CVD from two academic medical centers in Houston, TX, USA, between March 1 and May 10, 2020. To date, there are 12 case studies reporting 47 cases of CVD in COVID-19. However, only 4 small case series have described the clinical and laboratory findings in patients with COVID-19 and concurrent stroke. Viral neurotropism, endothelial dysfunction, coagulopathy and inflammation are plausible proposed mechanisms of CVD in COVID-19 patients. In our case series of 12 patients, 10 patients had an ischemic stroke, of which 1 suffered hemorrhagic transformation and two had intracerebral hemorrhage. Etiology was determined to be embolic without a clear cause identified in 6 ischemic stroke patients, while the remaining had an identifiable source of stroke. The majority of the patients had elevated inflammatory markers such as D-dimer and interleukin-6. In patients with embolic stroke of unclear etiology, COVID-19 may have played a direct or indirect role in the processes that eventually led to the strokes while in the remaining cases, it is unclear if infection contributed partially or was an incidental finding.

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