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1.
J Ultrasound Med ; 41(12): 3103-3111, 2022 Dec.
Article in English | MEDLINE | ID: mdl-36063066

ABSTRACT

OBJECTIVES: We aimed to decrease barriers to acquiring Point-of-Care Ultrasound (POCUS) knowledge among attending physicians and improve the safety of trainee POCUS use through a novel flexible and cognitive based curriculum. METHODS: We developed three educational pathways using varied approaches to educational delivery: a novel and asynchronous cognitive curriculum to allow Educational Supervision, a hands-on pathway for Limited Practice, and a more robust pathway for Independent Practice and credentialing. RESULTS: From November 2018 through June 2021, 102 of 116 hospitalists engaged in some portion of the curriculum. Twenty-four completed the Educational Supervision pathway, 31 completed the Limited Practice pathway, and 17 enrolled in the Independent Practice pathway with three achieving independent practice. Faculty who completed the Educational Supervision pathway had improved scores on a comprehensive POCUS knowledge assessment, 43.5% [95% Confidence Interval (CI) 38.2-48.8] versus 72.0% [95% CI 65.2-78.8], P < .001. Junior faculty were more likely to engage in the supervision pathway and senior faculty were more likely to complete an intensive course to complete the Limited Practice pathway. CONCLUSIONS: A flexible, cognitive focused POCUS curriculum was effective in creating high levels of engagement, and a cognitive only curriculum resulted in significant improvement in hospitalists' POCUS knowledge without hands on training. Finally, we found that hospitalist engagement in the curriculum did not follow the lowest barrier to entry or time commitment and engagement varied by time in practice. Training faculty to independent practice remains a substantial challenge.


Subject(s)
Hospital Medicine , Internship and Residency , Humans , Point-of-Care Systems , Clinical Competence , Curriculum , Ultrasonography/methods , Faculty , Cognition
2.
J Ultrasound Med ; 41(1): 89-96, 2022 Jan.
Article in English | MEDLINE | ID: mdl-33665872

ABSTRACT

OBJECTIVES: Lung ultrasound (LUS) can accurately diagnose several pulmonary diseases, including pneumothorax, effusion, and pneumonia. LUS may be useful in the diagnosis and management of COVID-19. METHODS: This study was conducted at two United States hospitals from 3/21/2020 to 6/01/2020. Our inclusion criteria included hospitalized adults with COVID-19 (based on symptomatology and a confirmatory RT-PCR for SARS-CoV-2) who received a LUS. Providers used a 12-zone LUS scanning protocol. The images were interpreted by the researchers based on a pre-developed consensus document. Patients were stratified by clinical deterioration (defined as either ICU admission, invasive mechanical ventilation, or death within 28 days from the initial symptom onset) and time from symptom onset to their scan. RESULTS: N = 22 patients (N = 36 scans) were included. Eleven (50%) patients experienced clinical deterioration. Among N = 36 scans, only 3 (8%) were classified as normal. The remaining scans demonstrated B-lines (89%), consolidations (56%), pleural thickening (47%), and pleural effusion (11%). Scans from patients with clinical deterioration demonstrated higher percentages of bilateral consolidations (50 versus 15%; P = .033), anterior consolidations (47 versus 11%; P = .047), lateral consolidations (71 versus 29%; P = .030), pleural thickening (69 versus 30%; P = .045), but not B-lines (100 versus 80%; P = .11). Abnormal findings had similar prevalences between scans collected 0-6 days and 14-28 days from symptom onset. DISCUSSION: Certain LUS findings may be common in hospitalized COVID-19 patients, especially for those that experience clinical deterioration. These findings may occur anytime throughout the first 28 days of illness. Future efforts should investigate the predictive utility of these findings on clinical outcomes.


Subject(s)
COVID-19 , Pneumonia , Adult , Humans , Lung/diagnostic imaging , SARS-CoV-2 , Ultrasonography
3.
J Ultrasound Med ; 41(6): 1367-1375, 2022 Jun.
Article in English | MEDLINE | ID: mdl-34468039

ABSTRACT

OBJECTIVES: Point-of-care ultrasound (POCUS) detects the pulmonary manifestations of COVID-19 and may predict patient outcomes. METHODS: We conducted a prospective cohort study at four hospitals from March 2020 to January 2021 to evaluate lung POCUS and clinical outcomes of COVID-19. Inclusion criteria included adult patients hospitalized for COVID-19 who received lung POCUS with a 12-zone protocol. Each image was interpreted by two reviewers blinded to clinical outcomes. Our primary outcome was the need for intensive care unit (ICU) admission versus no ICU admission. Secondary outcomes included intubation and supplemental oxygen usage. RESULTS: N = 160 patients were included. Among critically ill patients, B-lines (94 vs 76%; P < .01) and consolidations (70 vs 46%; P < .01) were more common. For scans collected within 24 hours of admission (N = 101 patients), early B-lines (odds ratio [OR] 4.41 [95% confidence interval, CI: 1.71-14.30]; P < .01) or consolidations (OR 2.49 [95% CI: 1.35-4.86]; P < .01) were predictive of ICU admission. Early consolidations were associated with oxygen usage after discharge (OR 2.16 [95% CI: 1.01-4.70]; P = .047). Patients with a normal scan within 24 hours of admission were less likely to require ICU admission (OR 0.28 [95% CI: 0.09-0.75]; P < .01) or supplemental oxygen (OR 0.26 [95% CI: 0.11-0.61]; P < .01). Ultrasound findings did not dynamically change over a 28-day scanning window after symptom onset. CONCLUSIONS: Lung POCUS findings detected within 24 hours of admission may provide expedient risk stratification for important COVID-19 clinical outcomes, including future ICU admission or need for supplemental oxygen. Conversely, a normal scan within 24 hours of admission appears protective. POCUS findings appeared stable over a 28-day scanning window, suggesting that these findings, regardless of their timing, may have clinical implications.


Subject(s)
COVID-19 , Adult , Humans , Intensive Care Units , Oxygen , Point-of-Care Systems , Prospective Studies , SARS-CoV-2
4.
J Ultrasound Med ; 40(11): 2369-2376, 2021 Nov.
Article in English | MEDLINE | ID: mdl-33426734

ABSTRACT

BACKGROUND: Lung ultrasound (LUS) has received considerable interest in the clinical evaluation of patients with COVID-19. Previously described LUS manifestations for COVID-19 include B-lines, consolidations, and pleural thickening. The interrater reliability (IRR) of these findings for COVID-19 is unknown. METHODS: This study was conducted between March and June 2020. Nine physicians (hospitalists: n = 4; emergency medicine: n = 5) from 3 medical centers independently evaluated n = 20 LUS scans (n = 180 independent observations) collected from patients with COVID-19, diagnosed via RT-PCR. These studies were randomly selected from an image database consisting of COVID-19 patients evaluated in the emergency department with portable ultrasound devices. Physicians were blinded to any patient information or previous LUS interpretation. Kappa values (κ) were used to calculate IRR. RESULTS: There was substantial IRR on the following items: normal LUS scan (κ = 0.79 [95% CI: 0.72-0.87]), presence of B-lines (κ = 0.79 [95% CI: 0.72-0.87]), ≥3 B-lines observed (κ = 0.72 [95% CI: 0.64-0.79]). Moderate IRR was observed for the presence of any consolidation (κ = 0.57 [95% CI: 0.50-0.64]), subpleural consolidation (κ = 0.49 [95% CI: 0.42-0.56]), and presence of effusion (κ = 0.49 [95% CI: 0.41-0.56]). Fair IRR was observed for pleural thickening (κ = 0.23 [95% CI: 0.15-0.30]). DISCUSSION: Many LUS manifestations for COVID-19 appear to have moderate to substantial IRR across providers from multiple specialties utilizing differing portable devices. The most reliable LUS findings with COVID-19 may include the presence/count of B-lines or determining if a scan is normal. Clinical protocols for LUS with COVID-19 may require additional observers for the confirmation of less reliable findings such as consolidations.


Subject(s)
COVID-19 , Humans , Lung/diagnostic imaging , Observer Variation , Reproducibility of Results , SARS-CoV-2 , Ultrasonography
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