Literature DB >> 29577524

Pulmonary infarction secondary to pulmonary embolism: An evolving paradigm.

Marjan Islam1, Jason Filopei2, Matthew Frank1, Navitha Ramesh2, Stacey Verzosa3, Madeline Ehrlich2, Eric Bondarsky2, Albert Miller2, David Steiger2.   

Abstract

BACKGROUND AND
OBJECTIVE: Pulmonary infarction (PI) from pulmonary embolism (PE) remains an entity of unclear aetiology. PI has been thought to occur in elderly patients with cardiopulmonary disease. We hypothesize younger patients without cardiopulmonary comorbidities are at highest risk. Our study aims to characterize PI clinically and radiographically, determine associated risk factors and determine their clinical significance.
METHODS: We conducted a single-centre retrospective review of 367 consecutive patients with PE. Clinical and radiographic data were compared between patients with and without PI using chi-square and F-tests. Univariate and multivariate analyses were performed to evaluate risk factors for PI.
RESULTS: PI occurred in 62 of 367 patients with acute PE (16.9%). Patients with PI were significantly younger (48 ± 20.3 vs 59.6 ± 17.2 years, P < 0.01), with lower pulmonary embolism severity index (PESI) scores (73.7 ± 38.1 vs 91.9 ± 37.5 years, P < 0.01) and endorsed chest pain with significantly higher frequency (65% vs 39%, P < 0.01). There was no significant difference in other clinical symptoms, hospital length of stay or mortality between groups. Presence of radiographic cardiopulmonary disease was significantly lower in patients with PI (emphysema: 5% vs 22%, P = <0.01; aortic atherosclerosis: 23% vs 43%, P = <0.01). In multivariate analysis, age ≤33 (OR 3.5 CI: 1.37-8.95, P < 0.01), chest pain (OR 2.15 CI: 1.15-4.00, P = 0.02) and pleural effusion (OR 2.18 CI: 1.08-4.41, P = 0.03) increased PI risk and presence of emphysema decreased risk (OR 0.21 CI: 0.06-0.70, P = 0.01).
CONCLUSION: Younger patients without cardiopulmonary comorbidities are at highest risk of PI. Chest pain and pleural effusion significantly increased risk of PI while presence of radiographic emphysema reduced risk.
© 2018 Asian Pacific Society of Respirology.

Entities:  

Keywords:  emphysema; inflammation; pulmonary circulation; pulmonary embolism; pulmonary hypertension

Year:  2018        PMID: 29577524     DOI: 10.1111/resp.13299

Source DB:  PubMed          Journal:  Respirology        ISSN: 1323-7799            Impact factor:   6.424


  9 in total

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Authors:  Mona Salehi Ravesh; Karolin Tesch; Annett Lebenatus; Ioannis Koktzoglou; Robert R Edelman; Matthias Eden; Patrick Langguth; Joachim Graessner; Olav Jansen; Marcus Both
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3.  Diagnostic yield of CT pulmonary angiography for pulmonary embolism in clinically suspected patients.

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5.  Dynamics of CT visible pleural effusion in patients with pulmonary infarction.

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6.  Pulmonary Complications of COVID-19: A case report.

Authors:  Wai Y Chan; Marlina T Ramli Hamid; Yi T Lim; Ching C Ng; Nadia F M Gowdh; Kartini Rahmat
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Review 7.  Pulmonary Embolism Presenting with Pulmonary Infarction: Update and Practical Review of Literature Data.

Authors:  Giulia Gagno; Laura Padoan; Stefano D'Errico; Elisa Baratella; Davide Radaelli; Alessandra Lucia Fluca; Alessandro Pierri; Milijana Janjusevic; Elena Aleksova Noveska; Maria Assunta Cova; Roberto Copetti; Franco Cominotto; Gianfranco Sinagra; Aneta Aleksova
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8.  Clinical relevance of chronic respiratory disease in Korean patients with pulmonary thromboembolism.

Authors:  Hyeyoung Park; Seung-Ick Cha; Jae-Kwang Lim; Kyung-Min Shin; Yong-Hoon Lee; Hyewon Seo; Seung-Soo Yoo; Shin-Yup Lee; Jaehee Lee; Chang-Ho Kim; Jae-Yong Park
Journal:  J Thorac Dis       Date:  2019-06       Impact factor: 2.895

9.  Prediction of Pulmonary Embolism Following Resection of Pulmonary Infarction: A Case Series.

Authors:  Hiroshi Yamasaki; Hideki Ujiie; Tatsuya Kato; Yasuhiro Hida; Kichizo Kaga; Satoru Wakasa; Yoshihiro Matsuno
Journal:  Ann Thorac Cardiovasc Surg       Date:  2021-05-14       Impact factor: 1.520

  9 in total

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