Background. The COVID-19 infection which emerged in December 2019, is caused by the virus SARS-CoV-2. Infection with this virus can lead to severe respiratory illness, however, myocarditis has also been reported. The purpose of this study is to identify the clinical features of myocarditis in COVID-19 patients. Methods. A systematic review was conducted to investigate characteristics of myocarditis in patients infected with COVID-19 using the search term "Coronavirus" or "COVID" and "myocarditis," "heart," or "retrospective." Case reports and retrospective studies were gathered by searching Medline/Pubmed, Google Scholar, CINAHL, Cochrane CENTRAL, and Web of Science databases. 11 articles were selected for review. Results. COVID-19 myocarditis affected patients over the age of 50 and incidences among both genders were equally reported. Patients presented with dyspnea, cough, fever with hypotension and chest pain. Laboratory tests revealed leukocytosis with increased C-reactive protein, while arterial blood gas analysis demonstrated respiratory acidosis. All cardiac markers were elevated. Radiographic imaging of the chest showed bilateral ground glass opacities or bilateral infiltrates, while cardiac magnetic resonance imaging produced late gadolinium enhancements. Electrocardiography demonstrated ST-segment elevation or inverted T waves, while echocardiography revealed reduced left ventricular ejection fraction with cardiomegaly or increased wall thickness. Management with corticosteroids was favored in most cases, followed by antiviral medication. The majority of studies reported either recovery or no further clinical deterioration. Conclusion. Current available data on COVID-19 myocarditis is limited. Further research is needed to advance our understanding of COVID-19 myocarditis.
Introduction: Mastery of respiratory auscultation skills is fundamental for clinicians to develop. We created a case-based educational session utilizing a high-fidelity simulator to teach lung sound auscultation to medical students at our institution. We employed a hypothesis-driven approach and deliberate practice to enhance students' learning experience and retention of acquired skills. Methods: We developed the session to teach second-year medical students how to discriminate between normal and pathological respiratory sounds within the context of clinical vignettes. Faculty facilitators, in conjunction with near-peer educators, made use of a high-fidelity auscultation manikin to guide students through case-based problem sets. Students were given the opportunity to auscultate the manikin while being observed and receiving feedback from the faculty. Results: We introduced the manikin in 2016, with a total of 759 second-year medical students from four class years having participated in the session since then. Students evaluated the session through an end-of-the-week and end-of-unit survey. The survey showed an overall improvement in learner satisfaction over previous years. Survey results and feedback were used to make adjustments to the session. Discussion: Our respiratory auscultation session was well received overall. Proper faculty development is crucial for implementing the session. Because of the focus on deliberate practice, adequate time must be allotted to hold the session. This program is reproducible with similar high-fidelity simulators.
Venous thromboembolism (VTE) is the fourth most commonly reported complication in trauma patients. For these patients, thromboprophylaxis is a standard of care. Patient compliance with sequential compression devices (SCDs), a form of mechanical VTE prophylaxis, has been a focus of efforts to improve patient safety. At our institution, a baseline audit in July 2020 revealed that patients admitted to the trauma floors have poor compliance with the use of SCDs. In this quality improvement project, we developed a patient education intervention to improve SCD compliance. We distributed an informational flyer to patients and led short educational sessions on VTE risk factors and proper SCD use. Our aim was to increase our SCD compliance rate by 30% in 4 weeks. We used three plan-do-study-act (PDSA) cycles to implement and refine our intervention. We measured SCD compliance during morning and afternoon patient observations and generated run charts to understand how our cycles were leading to change. After a 4-week period, we did not achieve our aim, but increased our overall compliance from 45% to 60% and sustained this improvement throughout our PDSA cycles. Morning compliance was lower than afternoon compliance both at baseline (45% vs 48.5%) and at the end the project (45% vs 53%). Our results suggest that patient education should be coupled with interventions that address other barriers to SCD compliance.
Marijuana is the most widely used recreational drug across the United States. Ongoing efforts to legalize marijuana, as well as the drug's increasing popularity contribute to the marijuana's reputation as having a low risk profile. Marijuana's association with adverse cardiovascular events, such as arrhythmia and vasospasm is welldocumented. We synthesized what is known about how marijuana use pertains to and is implicated endothelial cell damage and its effects on microcirculation. THC exerts effects through the cannabinoid receptors, CB1 and CB2. The downstream effects of CB1 activation point to a role for this receptor in atherogenesis and vasospasm, likely by precipitating oxidative stress. Endothelial cells, when exposed to reactive oxygen species, provide a stimulus for vasoconstriction with a diminished ability for vasodilation. This phenomenon has manifested itself in cases of coronary vasospastic angina, and coronary slow and no flow that have resulted from marijuana use, as confirmed by cardiac catheterization reports that showed no evidence of obstructive lesions that could otherwise be responsible for the patients' symptoms. Marijuana users suffer from acute ischemic stroke at higher rates than non-users. Several theories have been proposed to support this observation, namely marijuana induced reversible cerebral vasoconstriction syndrome, and mitochondrial damage caused by oxidative stress that disproportionately affects cerebral vasculature. As marijuana use continues to grow, so does the important of elucidating the drug's effect on endothelial cells and microcirculation. Further studies should investigate the temporal association between marijuana and endothelial damage, as well as the possibility of recovery from such injury, and whether there is therapeutic potential in cannabinoid receptors.
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