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1.
Radiographics ; 44(3): e230031, 2024 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-38329903

RESUMO

Infective endocarditis (IE) is a complex multisystemic disease resulting from infection of the endocardium, the prosthetic valves, or an implantable cardiac electronic device. The clinical presentation of patients with IE varies, ranging from acute and rapidly progressive symptoms to a more chronic disease onset. Because of its severe morbidity and mortality rates, it is necessary for radiologists to maintain a high degree of suspicion in evaluation of patients for IE. Modified Duke criteria are used to classify cases as "definite IE," "possible IE," or "rejected IE." However, these criteria are limited in characterizing definite IE in clinical practice. The use of advanced imaging techniques such as cardiac CT and nuclear imaging has increased the accuracy of these criteria and has allowed possible IE to be reclassified as definite IE in up to 90% of cases. Cardiac CT may be the best choice when there is high clinical suspicion for IE that has not been confirmed with other imaging techniques, in cases of IE and perivalvular involvement, and for preoperative treatment planning or excluding concomitant coronary artery disease. Nuclear imaging may have a complementary role in prosthetic IE. The main imaging findings in IE are classified according to the site of involvement as valvular (eg, abnormal growths [ie, "vegetations"], leaflet perforations, or pseudoaneurysms), perivalvular (eg, pseudoaneurysms, abscesses, fistulas, or prosthetic dehiscence), or extracardiac embolic phenomena. The differential diagnosis of IE includes evaluation for thrombus, pannus, nonbacterial thrombotic endocarditis, Lambl excrescences, papillary fibroelastoma, and caseous necrosis of the mitral valve. The location of the lesion relative to the surface of the valve, the presence of a stalk, and calcification or enhancement at contrast-enhanced imaging may offer useful clues for their differentiation. ©RSNA, 2024 Test Your Knowledge questions for this article are available in the supplemental material.


Assuntos
Falso Aneurisma , Endocardite Bacteriana , Endocardite , Humanos , Endocardite Bacteriana/diagnóstico , Endocardite Bacteriana/microbiologia , Endocardite Bacteriana/patologia , Endocardite/diagnóstico por imagem , Tomografia Computadorizada por Raios X/métodos , Imagem Multimodal
2.
Radiographics ; 42(4): 991-1011, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-35687519

RESUMO

Transcatheter pulmonary valve replacement (TPVR) is a minimally invasive procedure for treatment of right ventricular outflow tract (RVOT) dysfunction in surgically repaired congenital heart diseases. TPVR is performed in these patients to avoid the high risk and complexity of repeat surgeries. Several TPVR devices are now available to be placed in the right ventricle (RV) to pulmonary artery (PA) conduit, native RVOT, or surgical bioprosthetic valves. Imaging is used before TPVR to determine patient eligibility and optimal timing, which is critical to avoid irreversible RV dilatation and failure. Imaging is also required for evaluation of contraindications, particularly proximity of the RVOT to the left main coronary artery and its branches. Cross-sectional imaging provides details of the complex anatomy in which the TPVR device will be positioned and measurements of the RVOT, RV-PA conduit, or PA. Echocardiography is the first-line imaging modality for evaluation of the RVOT or conduit to determine the need for intervention, although its utility is limited by the complex RVOT morphology and altered anatomy after surgery. CT and MRI provide complementary information for TPVR, including patient eligibility, assessment of contraindications, and key measurements of the RVOT and PA, which are necessary for procedure planning. TPVR, performed using a cardiac catheterization procedure, includes a sizing step in which a balloon is expanded in the RVOT, which also allows assessment of the risk for extrinsic coronary artery compression. Follow-up imaging with CT and MRI is used for evaluation of postprocedure remodeling and valve function and to monitor complications. ©RSNA, 2022 Online supplemental material is available for this article.


Assuntos
Cardiopatias Congênitas , Implante de Prótese de Valva Cardíaca , Próteses Valvulares Cardíacas , Valva Pulmonar , Cateterismo Cardíaco/efeitos adversos , Cateterismo Cardíaco/métodos , Ecocardiografia , Cardiopatias Congênitas/diagnóstico por imagem , Cardiopatias Congênitas/cirurgia , Implante de Prótese de Valva Cardíaca/métodos , Humanos , Valva Pulmonar/diagnóstico por imagem , Valva Pulmonar/cirurgia , Estudos Retrospectivos , Resultado do Tratamento
3.
Radiol Cardiothorac Imaging ; 4(6): e220039, 2022 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-36601455

RESUMO

Purpose: To describe the design and methodological approach of a multicenter, retrospective study to externally validate a clinical and imaging-based model for predicting the risk of late adverse events in patients with initially uncomplicated type B aortic dissection (uTBAD). Materials and Methods: The Registry of Aortic Diseases to Model Adverse Events and Progression (ROADMAP) is a collaboration between 10 academic aortic centers in North America and Europe. Two centers have previously developed and internally validated a recently developed risk prediction model. Clinical and imaging data from eight ROADMAP centers will be used for external validation. Patients with uTBAD who survived the initial hospitalization between January 1, 2001, and December 31, 2013, with follow-up until 2020, will be retrospectively identified. Clinical and imaging data from the index hospitalization and all follow-up encounters will be collected at each center and transferred to the coordinating center for analysis. Baseline and follow-up CT scans will be evaluated by cardiovascular imaging experts using a standardized technique. Results: The primary end point is the occurrence of late adverse events, defined as aneurysm formation (≥6 cm), rapid expansion of the aorta (≥1 cm/y), fatal or nonfatal aortic rupture, new refractory pain, uncontrollable hypertension, and organ or limb malperfusion. The previously derived multivariable model will be externally validated by using Cox proportional hazards regression modeling. Conclusion: This study will show whether a recent clinical and imaging-based risk prediction model for patients with uTBAD can be generalized to a larger population, which is an important step toward individualized risk stratification and therapy.Keywords: CT Angiography, Vascular, Aorta, Dissection, Outcomes Analysis, Aortic Dissection, MRI, TEVAR© RSNA, 2022See also the commentary by Rajiah in this issue.

4.
Eur Heart J Case Rep ; 5(2): ytaa535, 2021 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-33738403

RESUMO

BACKGROUND: Inflammation of the pericardium, or pericarditis, is a frequent cause of acute chest pain in young patients. Pericarditis is typically associated with viral infections, but other potential causes may have distinct prognostic and therapeutic implications. CASE SUMMARY: A 26-year-old man presented with typical signs and symptoms of acute pericarditis. However, imaging disclosed an anterior mediastinal mass that compressed the right ventricular outflow tract. The coarse outflow murmur convincingly mimicked a pericardial friction rub on auscultation. CONCLUSION: Clinicians should be aware of alternative aetiologies to pericarditis in patients who present with prolonged or refractory symptoms.

5.
J Radiol Case Rep ; 13(2): 1-8, 2019 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-31565166

RESUMO

Retropharyngeal abscess is potentially associated with high morbidity and mortality as a result of its direct anatomical connection with the mediastinum. Therefore, knowledge of the relevant anatomy is essential for recognizing the presence and extent of disease in a timely manner. In this case report, we aim to review the pertinent anatomy and patterns of spread of infection from a full blown deep neck space infection to result in mediastinitis and empyema.


Assuntos
Mediastinite/diagnóstico por imagem , Dente Serotino/cirurgia , Pescoço/diagnóstico por imagem , Abscesso Retrofaríngeo/diagnóstico por imagem , Extração Dentária/efeitos adversos , Empiema/diagnóstico por imagem , Empiema/etiologia , Feminino , Fluoroscopia , Humanos , Mediastinite/etiologia , Complicações Pós-Operatórias/diagnóstico por imagem , Abscesso Retrofaríngeo/etiologia , Tomografia Computadorizada por Raios X , Adulto Jovem
6.
Emerg Radiol ; 23(3): 291-301, 2016 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-26965007

RESUMO

Thoracic venous injuries are predominantly attributed to traumatic and iatrogenic causes. Gunshot wounds and knife stabbings make up the vast majority of penetrating trauma whereas motor vehicle collisions are the leading cause of blunt trauma to the chest. Iatrogenic injuries, mostly from central venous catheter complications are being described in growing detail. Although these injuries are rare, they pose a diagnostic challenge as their clinical presentation does not substantially differ from that of arterial injury. Furthermore, the highly lethal nature of some of these injuries provides limited literature for review and probably underestimates their true incidence. The widespread use of multi-detector computed tomography (MDCT) has increased the detection rate of these lesions in hemodynamically stable patients that survive the initial traumatic event. In this article, we will discuss and illustrate various causes of injury to each vein and their supporting CT findings while briefly discussing management. The available literature will be reviewed for penetrating, blunt, and iatrogenic injuries to the vena cava, innominate, subclavian, axillary, azygos, and pulmonary veins.


Assuntos
Traumatismos Torácicos/diagnóstico por imagem , Tomografia Computadorizada por Raios X , Veia Cava Inferior/lesões , Adulto , Humanos , Masculino , Motocicletas , Veias/lesões , Veia Cava Inferior/diagnóstico por imagem
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