CT 图像上小叶间隔增厚的不常见原因及其鉴别特征。

IF 2.2 4区 医学 Q2 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Tomography Pub Date : 2024-04-17 DOI:10.3390/tomography10040045
A. Donuru, Drew A. Torigian, Friedrich Knollmann
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引用次数: 0

摘要

在许多肺部疾病的计算机断层扫描(CT)图像中,小叶间隔增厚(ILST)是一个常见且容易识别的特征。小叶间隔增厚可以是平滑的(最常见),也可以是结节状或不规则的。光滑的 ILST 可见于肺水肿、肺泡蛋白沉着症和肿瘤的淋巴管扩散。结节状 ILST 可见于肿瘤的淋巴管扩散、肉样瘤病和矽肺。不规则的 ILST 提示间质纤维化,这是纤维化肺病(包括肉样瘤病和常见的间质性肺炎)的常见症状。肺水肿和肿瘤的淋巴管扩散是导致 ILST 的常见原因。通过评估 ILST 的外观和分布,以及其他肺部和肺外发现,尽可能缩小鉴别诊断范围非常重要。本综述将重点讨论继发性肺小叶和 ILST 的 CT 特征。将讨论导致 ILST 的各种不常见原因,包括感染、间质性肺炎、沉积/浸润性病症、吸入性疾病、恶性肿瘤、先天性/遗传性病症和先天性原因。了解 ILST 的影像学表现和各种病因有助于采取系统的方法,这对及时诊断非常重要。本研究强调了采用结构化方法进行 CT 扫描分析的重要性,即考虑 ILST 的特征、相关发现和鉴别诊断考虑因素,以促进准确诊断。
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Uncommon Causes of Interlobular Septal Thickening on CT Images and Their Distinguishing Features.
Interlobular septa thickening (ILST) is a common and easily recognized feature on computed tomography (CT) images in many lung disorders. ILST thickening can be smooth (most common), nodular, or irregular. Smooth ILST can be seen in pulmonary edema, pulmonary alveolar proteinosis, and lymphangitic spread of tumors. Nodular ILST can be seen in the lymphangitic spread of tumors, sarcoidosis, and silicosis. Irregular ILST is a finding suggestive of interstitial fibrosis, which is a common finding in fibrotic lung diseases, including sarcoidosis and usual interstitial pneumonia. Pulmonary edema and lymphangitic spread of tumors are the commonly encountered causes of ILST. It is important to narrow down the differential diagnosis as much as possible by assessing the appearance and distribution of ILST, as well as other pulmonary and extrapulmonary findings. This review will focus on the CT characterization of the secondary pulmonary lobule and ILST. Various uncommon causes of ILST will be discussed, including infections, interstitial pneumonia, depositional/infiltrative conditions, inhalational disorders, malignancies, congenital/inherited conditions, and iatrogenic causes. Awareness of the imaging appearance and various causes of ILST allows for a systematic approach, which is important for a timely diagnosis. This study highlights the importance of a structured approach to CT scan analysis that considers ILST characteristics, associated findings, and differential diagnostic considerations to facilitate accurate diagnoses.
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来源期刊
Tomography
Tomography Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
2.70
自引率
10.50%
发文量
222
期刊介绍: TomographyTM publishes basic (technical and pre-clinical) and clinical scientific articles which involve the advancement of imaging technologies. Tomography encompasses studies that use single or multiple imaging modalities including for example CT, US, PET, SPECT, MR and hyperpolarization technologies, as well as optical modalities (i.e. bioluminescence, photoacoustic, endomicroscopy, fiber optic imaging and optical computed tomography) in basic sciences, engineering, preclinical and clinical medicine. Tomography also welcomes studies involving exploration and refinement of contrast mechanisms and image-derived metrics within and across modalities toward the development of novel imaging probes for image-based feedback and intervention. The use of imaging in biology and medicine provides unparalleled opportunities to noninvasively interrogate tissues to obtain real-time dynamic and quantitative information required for diagnosis and response to interventions and to follow evolving pathological conditions. As multi-modal studies and the complexities of imaging technologies themselves are ever increasing to provide advanced information to scientists and clinicians. Tomography provides a unique publication venue allowing investigators the opportunity to more precisely communicate integrated findings related to the diverse and heterogeneous features associated with underlying anatomical, physiological, functional, metabolic and molecular genetic activities of normal and diseased tissue. Thus Tomography publishes peer-reviewed articles which involve the broad use of imaging of any tissue and disease type including both preclinical and clinical investigations. In addition, hardware/software along with chemical and molecular probe advances are welcome as they are deemed to significantly contribute towards the long-term goal of improving the overall impact of imaging on scientific and clinical discovery.
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