儿科脑膜疾病:放射科医生需要知道的。

IF 2.2 4区 医学 Q2 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Tomography Pub Date : 2024-12-08 DOI:10.3390/tomography10120143
Dhrumil Deveshkumar Patel, Laura Z Fenton, Swastika Lamture, Vinay Kandula
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引用次数: 0

摘要

评估儿童精神状态改变和疑似脑膜疾病通常从影像学开始,通常在腰椎穿刺前。挑战在于脑膜增强是一系列病理的共同发现,使得诊断复杂。本文根据脑膜疾病的主要影像学特征对其进行分类。它包括对导致儿童和青少年脑膜薄或厚增强的各种疾病的临床和影像学特征的详细描述。这些疾病包括感染性脑膜炎(病毒性、细菌性、结核性、藻类和真菌性)、自身免疫性疾病(如抗mog脱髓鞘、神经结节病、格林-巴勒综合征、特发性肥厚性厚膜脑膜炎和nmda相关脑炎)、原发性和继发性肿瘤(包括儿童弥漫性胶质神经元肿瘤、原发性中枢神经系统横纹肌肉瘤、原发性中枢神经系统肿瘤转移、颅外肿瘤转移和淋巴瘤)、肿瘤样疾病(朗格汉斯细胞组织细胞增多症和alk阳性组织细胞增多症)、血管原因(如颅底血管瘤病、anca相关血管炎和烟雾病)和其他疾病,如自发性颅内低血压和后部可逆性脑病综合征。尽管与脑膜病变相关的影像学发现具有非特异性,但缩小鉴别诊断范围至关重要,因为每种情况都需要量身定制和特定的治疗方法。
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Pediatric Meningeal Diseases: What Radiologists Need to Know.

Evaluating altered mental status and suspected meningeal disorders in children often begins with imaging, typically before a lumbar puncture. The challenge is that meningeal enhancement is a common finding across a range of pathologies, making diagnosis complex. This review proposes a categorization of meningeal diseases based on their predominant imaging characteristics. It includes a detailed description of the clinical and imaging features of various conditions that lead to leptomeningeal or pachymeningeal enhancement in children and adolescents. These conditions encompass infectious meningitis (viral, bacterial, tuberculous, algal, and fungal), autoimmune diseases (such as anti-MOG demyelination, neurosarcoidosis, Guillain-Barré syndrome, idiopathic hypertrophic pachymeningitis, and NMDA-related encephalitis), primary and secondary tumors (including diffuse glioneuronal tumor of childhood, primary CNS rhabdomyosarcoma, primary CNS tumoral metastasis, extracranial tumor metastasis, and lymphoma), tumor-like diseases (Langerhans cell histiocytosis and ALK-positive histiocytosis), vascular causes (such as pial angiomatosis, ANCA-related vasculitis, and Moyamoya disease), and other disorders like spontaneous intracranial hypotension and posterior reversible encephalopathy syndrome. Despite the nonspecific nature of imaging findings associated with meningeal lesions, narrowing down the differential diagnoses is crucial, as each condition requires a tailored and specific treatment approach.

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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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