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Comparison between CT and MRI in the assessment of pulmonary embolism: A meta-analysis
Feng Chen1, Yi-Hong Shen, Xu-Qing Zhu
1Department of Respiratory Medicine, Taizhou Municipal Hospital, Taizhou Department of Respiration, The First Affiliated Hospital, Zhejiang University, Hangzhou Department of Gastroenterology, Taizhou Municipal Hospital, Taizhou Department of Respiratory Medicine, The Second Hospital of Jiaxing, Jiaxing, China.
Objective:
Besides pulmonary arteriography, a number of imaging techniques, such as magnetic resonance imaging (MRI) and computed tomography (CT), were adopted in the detection of identifying pulmonary embolism (PE). However, the contrast of sensitivity and specificity in these methods was studied little in a statistical way. To compare the effects of MRI and CT, this study used a series of methods to analyze data in included researches.
Methods:
A comprehensive computer search was conducted through internet up to July 2016. The quality assessment was performed by the Quality Assessment Tool for Diagnostic Accuracy Studies, version 2 tool. The diagnostic value of comparison between MRI and CT was evaluated by using the pooled estimate of sensitivity, specificity, and summary receiver operating characteristic (SROC) curve. In addition, sensitivity analysis and bias analysis were applied to ensure the accuracy of the results.
Results:
Ten studies with 590 cases were involved in the study. Only 2 trials had high risk regarding bias while other trials were supposed to be at low risk of applicability. Heterogeneity existed in analysis of both CT and MRI. The pooled sensitivity of CT was 0.90 (95% CI: 0.85-0.93), pooled specificity was 0.88 (95% CI: 0.77 to 0.95), the pooled sensitivity of MRI was 0.92 (95% CI: 0.89-0.94), and pooled specificity was 0.91 (95% CI: 0.77-0.97). The Q index of sensitivity and specificity for CT and MRI were 71.38, 19.67, 47.14, and 12.35, respectively. The SROC curve area under the curve of CT and MRI were 0.94 (95% CI: 0.91-0.96) and 0.93 (95% CI: 0.91-0.95), respectively.
Conclusion:
This meta-analysis demonstrates that MRI has better sensitivity and specificity in detecting subsegmental artery PE. MRI is a relatively better detection technique for PE. This conclusion is consistent with many published researches.
Insights
Magnetic resonance imaging (MRI) shows higher sensitivity and specificity than computed tomography (CT) for detecting pulmonary embolism (PE). This meta-analysis confirms MRI as a superior imaging technique for diagnosing PE.
Area of Science:
- Radiology
- Diagnostic Imaging
- Medical Technology
Background:
- Pulmonary embolism (PE) diagnosis relies on imaging, with pulmonary arteriography, CT, and MRI being common methods.
- Statistical comparisons of sensitivity and specificity between MRI and CT for PE detection are limited.
Purpose of the Study:
- To statistically compare the diagnostic performance of MRI and CT in detecting pulmonary embolism.
- To evaluate the sensitivity and specificity of MRI versus CT for PE identification.
Main Methods:
- A comprehensive literature search was conducted up to July 2016.
- Diagnostic accuracy was assessed using the Quality Assessment Tool for Diagnostic Accuracy Studies (version 2).
- Pooled sensitivity, specificity, and summary receiver operating characteristic (SROC) curves were used to evaluate diagnostic value, with sensitivity and bias analyses performed.
Main Results:
- Ten studies including 590 cases were analyzed, with most trials having low risk of bias.
- Pooled sensitivity for CT was 0.90 and specificity was 0.88; for MRI, pooled sensitivity was 0.92 and specificity was 0.91.
- The area under the SROC curve for CT was 0.94, and for MRI was 0.93, indicating high diagnostic accuracy for both, with MRI showing a slight advantage.
Conclusions:
- MRI demonstrates superior sensitivity and specificity compared to CT in detecting subsegmental artery PE.
- MRI is identified as a relatively better imaging technique for the detection of pulmonary embolism.
- Findings align with existing research supporting MRI's efficacy in PE diagnosis.
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