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Published on: September 30, 2022
Imaging of Cardiac Device-Related Infection
Jose Aguilera1, Erika Hutt1, Wael A Jaber1
1Department of Cardiovascular Medicine, Cleveland Clinic Foundation, Cleveland, OH, United States.
Insights
Cardiac device infections are a serious complication. Multimodality imaging is recommended for accurate diagnosis and management of these infections, improving patient outcomes.
Area of Science:
- Cardiology
- Infectious Diseases
- Medical Imaging
Background:
- Cardiac implantable electronic devices (CIEDs) and other cardiac devices are increasingly used for cardiovascular conditions.
- An aging and complex patient population contributes to a rise in cardiac device-related infections.
- These infections are serious, leading to significant morbidity, mortality, and financial burden.
Purpose of the Study:
- To highlight the importance of accurate diagnosis of cardiac device-related infections.
- To emphasize the role of multimodality imaging in diagnosing these infections.
- To discuss the benefits of multimodality imaging for disease characterization and management.
Main Methods:
- Review of current literature and guidelines, including the 2020 European Heart Rhythm Association International Consensus document.
- Discussion of various imaging modalities: ultrasound, computed tomography (CT), transesophageal echocardiogram (TEE), magnetic resonance imaging (MRI), positron emission tomography (PET), and tagged white blood cell scans.
- Emphasis on multimodality imaging for comprehensive evaluation.
Main Results:
- Multimodality imaging is essential for accurate diagnosis of cardiac device infections.
- Imaging aids in disease characterization, identifying fluid collections, guiding aspiration, evaluating local disease extent, and detecting embolic manifestations.
- CT facilitates pre-procedural planning, potentially improving outcomes.
Conclusions:
- Accurate diagnosis of cardiac device infections is critical for effective management, often requiring device removal and antimicrobial therapy.
- Multimodality imaging is recommended for diagnosing CIED infections, offering detailed insights into the disease.
- Imaging techniques provide crucial information for diagnosis, treatment planning, and improving procedural success.
Abstract:
Cardiac devices are frequently used in different cardiovascular conditions for the purpose of morbidity or mortality prevention. These include cardiac implantable electronic devices (CIED) like permanent pacemakers and implantable cardiac defibrillators, ventricular assistance devices (VADs), left atrial appendage occlusion (LAAO) devices like the Watchman™, atrial and ventricular septal occluders like the Amplatzer™, among others. In the past years, there has been an increase in the development of these devices as a result of a rise in the number of indications for implantation, paired with the aging and more medically complex patient population. This has led to an increase in the incidence of cardiac device-related infections, one of the most feared and serious complications which is associated with significant morbidity, mortality and financial burden. Accurate diagnosis of cardiac device-related infections is essential given the management implications which often involve removal of the infected device, removal of other prosthetic material and long-term antimicrobial therapy. Clinical and laboratory data are useful diagnostic tools but multimodality imaging is often necessary. The recently published 2020 European Heart Rhythm Association International Consensus document, which is endorsed by many expert societies, has recommended the use of multimodality imaging for the diagnosis of CIED infections. (1) This allows better disease characterization by identifying abnormal fluid collections and guiding aspiration for both diagnostic and therapeutic purposes (i.e. soft tissue ultrasound and computed tomography), evaluation for local extent of disease (i.e. transesophageal echocardiogram to evaluate for concomitant infective endocarditis), embolic manifestation of disease (i.e. computed tomography and magnetic resonance imaging) and metabolic tissue characterization (positron emission tomography and tagged white blood cell scan). (2) In addition, computed tomography (CT) allows for pre-procedural planning which has shown to be associated with better procedural outcomes.
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