pulmonary embolism

Use of PERC/Wells in Combination with OtherClinical Prediction Rules to Reduce CTPA Demand in Same Day Emergency Care: A Retrospective Cohort Study

Pulmonary embolism (PE) is a common and potentially life-threatening condition encountered in acute medicine. Clinical prediction rules (CPRs), including PERC, Wells, Revised Geneva, YEARS and LEGEND, have been developed to support rational use of computed tomography pulmonary angiography (CTPA). This study evaluated whether retrospective co-application of Revised Geneva, YEARS or LEGEND alongside an existing PERC/Wells-based diagnostic pathway could reduce CTPA utilisation in a Same Day Emergency Care (SDEC) population.
We conducted a retrospective cohort study of all patients who had CTPA for suspected PE in a UK SDEC unit between January and June 2024. CPRs were applied retrospectively using documented clinical data. The primary outcomes were the potential reduction in CTPA utilisation and the proportion of scans that would have contained PE.
Of 433 CTPAs identified, 362 patients met inclusion criteria. The prevalence of PE among those scanned was 16.6%. Retrospective co-application of Revised Geneva, YEARS and LEGEND would have reduced CTPA utilisation by 5.5%, 29.0% and 39.2% respectively. No PEs were identified among scans potentially avoided using Revised Geneva, whereas PE was present in 4.8% and 5.6% of avoided scans using YEARS and LEGEND. Missed events occurred in a clinically stable ambulatory cohort and were not associated with radiological evidence of right ventricular strain; however, the clinical significance of these findings remains uncertain.
In this selected SDEC population, layering additional CPRs onto an existing diagnostic pathway may have the potential to reduce CTPA utilisation, although strategies achieving larger reductions were associated with missed diagnoses. These findings should be regarded as hypothesis-generating and require prospective validation before informing changes to clinical practice.

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Use of PERC/Wells in Combination with OtherClinical Prediction Rules to Reduce CTPA Demand in Same Day Emergency Care: A Retrospective Cohort Study Read More

Incidence, predictors and outcomes associated with acute pulmonary embolism in patients hospitalized with pneumonia: Insights from the National Inpatient Sample

Background: The prevalence of acute pulmonary embolism (PE) among patients hospitalized with pneumonia and its association with adverse outcomes remain uncertain.Methods: Data from the US National Inpatient Sample between 2016 to 2020 was used to determine the proportion of patients with chief diagnosis of pneumonia that had concomitant PE and to examine the relationship between...

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Performance of AI-powered chatbots in diagnosing acute pulmonary thromboembolism from given clinical vignettes

Background: Chatbots hold great potential to serve as support tool in diagnosis and clinical decision process. In this study, we aimed to evaluate the accuracy of chatbots in diagnosing pulmonary embolism (PE). Furthermore, we assessed their performance in determining the PE severity.
Method: 65 case reports meeting our inclusion criteria were selected for this study. Two emergency medicine (EM) physicians crafted clinical vignettes and introduced them to the Bard, Bing, and ChatGPT-3.5 with asking the top 10 diagnoses. After obtaining all differential diagnoses lists, vignettes enriched with supplemental data redirected to the chatbots with asking the severity of PE.
Results: ChatGPT-3.5, Bing, and Bard listed PE within the top 10 diagnoses list with accuracy rates of 92.3%, 92.3%, and 87.6%, respectively. For the top 3 diagnoses, Bard achieved 75.4% accuracy, while ChatGPT and Bing both had 67.7%. As the top diagnosis, Bard, ChatGPT-3.5, and Bing were accurate in 56.9%, 47.7% and 30.8% cases, respectively. Significant differences between Bard and both Bing (p=0.000) and ChatGPT (p=0.007) were noted in this group. Massive PEs were correctly identified with over 85% success rate. Overclassification rates for Bard, ChatGPT-3.5 and Bing at 38.5%, 23.3% and 20%, respectively. Misclassification rates were highest in submassive group.
Conclusion: Although chatbots aren’t intended for diagnosis, their high level of diagnostic accuracy and success rate in identifying massive PE underscore the promising potential of chatbots as clinical decision support tool. However, further research with larger patient datasets is required to validate and refine their performance in real-world clinical settings.

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Quantitative assessment of the relative effects of patient and pulmonary embolism-related factors on longer-term mortality after pulmonary embolism

This observational study used a large audit dataset to examine the relative effects of patient-related factors and those related to the pulmonary embolism (PE) on longer-term mortality after PE. We identified that longer-term mortality is higher in provoked compared to unprovoked PE and that, in this group, obesity is relatively protective. Simplified PE severity index (sPESI), known to link to short term mortality, remains predictive in the longer-term and there is no relationship of mortality to right heart strain or extent of clot. Interestingly mortality is higher in those with negative CTPA scans than those with PE. These clinically important results should encourage careful, holistic clinical assessment of patients in these groups prior to discharge to look for treatable comorbidities.

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Quantitative assessment of the relationship between body mass index and risk of pulmonary embolism: a retrospective case-control study

In the context of a significant increase in obesity rates, quantifying the relationship between body mass index (BMI) and risk of pulmonary embolism (PE) is an essential component of accurate clinical risk assessment. This observational study is the first to explore this association by clinician-defined cause of the PE. We demonstrate that the association between BMI and PE is driven by patients with otherwise ‘unprovoked’ PE where there is a strong positive correlation with odds ratios equivalent to well-recognised major risk factors such as cancer, pregnancy and surgery. We make a case for the inclusion of BMI in risk-prediction tools.

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Real-world characteristics and outcomes of patients with intermediate high risk acute pulmonary embolism

Exact benefits of currently recommended close monitoring in intermediate high risk acute pulmonary embolism (PE) patients are unknown.
This prospective observational cohort study determined clinical characteristics, and disease course of intermediate high risk acute PE patients in an academic hospital setting.

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Guest Editorial – Pulmonary Embolism: the risk of what we don’t yet know!

Pulmonary embolism (PE) is a common and potentially life-threatening condition encountered routinely in acute care. The diagnosis and management of PE has been the topic of National Institute of Health Care Excellence and European Cardiology Society guidelines.

Guest Editorial – Pulmonary Embolism: the risk of what we don’t yet know! Read More

Impact of Pleural Effusion on Clinical Outcomes in Patients with Pulmonary Embolism: Insights from the National Inpatient Sample

Background: The incidence of hospital admissions for pulmonary embolism (PE) and associated pleural effusion, and the impact of these effusions on outcomes on a national level is unknown.
Methods: Data from the National Inpatient Sample between 2016 to 2019 was used to conduct a retrospective nationwide cohort study of hospital admissions for PE with and without pleural effusion. Multiple logistic regressions and linear regression analyses were used to determine the independent impact of effusions on in-hospital mortality, length of stay, and cost.
Results: There were 937,744 hospital admissions with PE included in our analysis (median age 64 [interquartile range 50-76] years; 52.5% females). The in-hospital mortality rate overall was 3.7% which was 5.5% for patients with pleural effusion and 3.6% for patients without pleural effusion (p<0.001). The median length of stay was longer in the group with pleural effusion (6 [3-12] days vs 4 [2-6] days, p<0.001) and the median healthcare cost was higher among patients with pleural effusion (13,689 [7,279-30,915] vs 8,855 [5,472-16,531], p<0.001). The factors most associated with pleural effusion were atrial fibrillation (OR 1.89 95%CI 1.78-2.00, p<0.001) and arterial thrombosis (OR 1.48 95%CI 1.19-1.84, p<0.001). Pleural effusion was associated with increased odds of mortality in patients with PE (OR 1.30 95%CI 1.18-1.45, p<0.001). Pleural effusion was associated with increased length of stay (Coefficient 4.15 95%CI 3.99 to 4.32, p<0.001), and healthcare costs (Coefficient 12,164; 95%CI:11,639 to 12,688, p<0.001)). Conclusion: Concomitant pleural effusion is not uncommon among PE patients which is more common in patients with atrial fibrillation and previous arterial thrombosis. Pleural effusions in patients with PE are associated with higher in-hospital mortality, length of stay and cost.

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Does thrombolysis for pulmonary embolism reduce the risk of chronic complications?

We assessed the efficacy of thrombolysis in avoiding long-term complications.

Notes of patients thrombolysed for PE in the 2-year period were reviewed. The initial CTPA and echocardiogram results before thrombolysis were compared to the results of follow up imaging repeated after 6 months.

Twenty-two patients were thrombolysed for PE. 14 patients had sub-massive PE and 8 patients had massive PE. The right ventricle (RV) was dilated on pre-thrombolysis echocardiogram in 16 patients.

On follow up echocardiography all patients with massive PE (6 studies) had a normal RV size, with pulmonary artery pressures (PAP) of 29mmHg. Follow up echocardiography of patients with submassive PE (13 studies) showed 11 patients with a normal RV, with PAP of 28 mmHg.

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Pacemaker Lead Perforation Mimicking Symptoms of Acute Pulmonary Embolism

Myocardial perforation is a rare yet serious complication following cardiac pacemaker or defibrillator device procedures.

In this article, the authors describe a case of right ventricular pacemaker lead perforation presenting to our hospital’s medical assessment unit with a clinical presentation suggestive of an acute pulmonary embolism. Treatment dose low molecular weight heparin (LMWH) was commenced while awaiting CT scan. CT images were negative for PE however demonstrated RV lead perforation. Echocardiogram demonstrated pericardial effusion with the tip of RV lead in the pericardial free space. A rapid deterioration in the patient’s haemodynamics prompted an emergency pericardial drain insertion and successful RV lead re-position in the cardiac catheter lab. The patient recovered well and was discharged with routine pacemaker clinic follow-up.

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