Gonadal Imaging in Endocrine Disorders.

2区 医学 Q2 Medicine Frontiers of Hormone Research Pub Date : 2016-03-21 DOI:10.1159/000442319
F. Lanfranco, G. Motta
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引用次数: 1

Abstract

Ultrasound (US) is the most widely available method of diagnostic imaging for the evaluation and characterization of gonadal lesions and is usually the method of choice because of its high accuracy, low cost and wide availability. Today's high-resolution images allow for a confident diagnosis of many scrotal and adnexal lesions, with high sensitivity and specificity. Magnetic resonance imaging (MRI) is reliable in the detection of gonadal lesions in males, allowing the differentiation into testicular or nontesticular lesions, and their characterization. It is also an accurate and cost-effective diagnostic adjunct in those patients with solid scrotal lesions for whom the findings of clinical and US evaluations are inconclusive. In females, MRI is recommended as a second-line investigation for the characterization of complex adnexal masses that are indeterminate on US. In this review, gonadal pathologies related with the steroidogenic and gametogenic function of the testes and ovaries will be discussed. The main imaging features of benign and malignant lesions will also be presented.
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内分泌疾病的性腺成像。
超声(US)是最广泛使用的诊断成像方法,用于评估和表征性腺病变,通常是首选的方法,因为它的准确性高,成本低,可用性广。今天的高分辨率图像允许一个自信的诊断许多阴囊和附件病变,具有高灵敏度和特异性。磁共振成像(MRI)在男性性腺病变的检测中是可靠的,可以区分睾丸或非睾丸病变及其特征。对于那些临床和美国评估结果不确定的实心阴囊病变患者,它也是一种准确和经济有效的诊断辅助手段。在女性中,对于超声不确定的复杂附件肿块的特征,推荐MRI作为二线检查。本文将讨论与睾丸和卵巢的类固醇生成和配子体功能有关的性腺病理。良、恶性病变的主要影像学特征也将被介绍。
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来源期刊
Frontiers of Hormone Research
Frontiers of Hormone Research 医学-内分泌学与代谢
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期刊介绍: A series of integrated overviews on cutting-edge topics New sophisticated technologies and methodological approaches in diagnostics and therapeutics have led to significant improvements in identifying and characterizing an increasing number of medical conditions, which is particularly true for all aspects of endocrine and metabolic dysfunctions. Novel insights in endocrine physiology and pathophysiology allow for new perspectives in clinical management and thus lead to the development of molecular, personalized treatments. In view of this, the active interplay between basic scientists and clinicians has become fundamental, both to provide patients with the most appropriate care and to advance future research.
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