The incidence and clinical spectrum of severe bacterial infection were studied in 89 patients with thalassemia major that was diagnosed between January 1971 and March 2002. There were 20 patients with 24 episodes of severe bacterial infection, resulting in an incidence of 1.6 infections per 100 patient-years. The clinical spectrum included liver abscess (6 cases), septicemia (6 cases), soft-tissue infection (2 cases), osteomyelitis (2 cases), corneal ulcer (1 case), enteritis (1 case), and abscesses of the lung, kidney, intra-abdominal region, retropharynx, gums, and buttocks (1 case each). The leading causal microorganisms were gram-negative bacilli, especially Klebsiella pneumoniae (10 of 20 isolates). Other responsible pathogens were Pseudomonas aeruginosa (2/20), Vibrio vulnificus (2/20), Acinetobacter baumanii (1/20), Streptococcus intermidius (1/20), Yersinia enterocolitica (1/20), Staphylococcus aureus (1/20), Escherichia coli (1/20), and Salmonella species (1/20). Splenectomy and delays in the start of iron-chelating therapy were 2 independent risk factors.
In patients with thalassemia major, genetic differences may influence their susceptibility to hypogonadotropic hypogonadism, possibly as a result of differences in the amounts of blood transfused and/or their vulnerability to free radical damage. The hematologic phenotype is a main determinant of the severity of thalassemia major; hence, it may influence the need for and frequency of blood transfusion and the patient's iron-overload status.
BackgroundTo explore the diagnostic performance of triggered angiography non-contrast-enhanced magnetic resonance imaging (TRANCE-MRI) for the evaluation of venous pathology of the lower extremity.MethodsThis was a single-centre prospective cohort study of 25 patients with suspected venous disease in the lower extremities. Each patient received Doppler ultrasonography (for venous evaluation) before the scheduled TRANCE-MRI (for venous and arterial evaluations) on a 1.5 T MR scanner (Philips Ingenia, Philips Healthcare, Best, the Netherlands), followed by lymphography and computed tomography angiography that were arranged according to the diagnostic indications.ResultsThe sensitivity, specificity and accuracy of TRANCE-MRI were 85.7%, 88/9 and 88%, respectively. The inter-rater agreement for deep vein thrombosis (DVT) of the thigh between the ultrasonography and TRANCE-MRI results was substantial agreement (Cohen’s kappa κ, 0.72). In ultrasonography-negative cases, TRANCE-MRI detected four additional cases (16%, 4/25) of DVT; three cases (12%, 3/25) of venous compression caused by pelvic lymphadenopathy, hip prosthesis or knee joint effusion; one case (4%, 1/25) of vena cava anomaly; two cases (8%, 2/25) of occult peripheral artery disease (PAD); and one case (4%, 1/25) of an occluded bypass graft.ConclusionTRANCE-MRI can be used as an alternative and objective tool for assessing lower extremity diseases, especially suspected venous pathology. Compared with ultrasonography, TRANCE-MRI plays a better role in assessing varicose veins of the lower extremities and deep veins of the pelvis and abdomen. However, false-positive results may occur in the left common iliac vein of elderly patients. Finally, occult PAD rarely occurs in patients with suspected lower extremity venous disease. Therefore, we recommend performing the TRANCE-MRV protocol instead of the full protocol (MRV + MRA) in the clinical setting in patients with venous scenarios.
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