Literature DB >> 29714678

Thyroid Nodules in Pediatric Patients: Sonographic Characteristics and Likelihood of Cancer.

Danielle M Richman1, Carol B Benson1, Peter M Doubilet1, Hope E Peters1, Stephen A Huang1, Elizabeth Asch1, Ari J Wassner1, Jessica R Smith1, Christine E Cherella1, Mary C Frates1.   

Abstract

Purpose To determine the relationship between demographic and sonographic characteristics of thyroid nodules and malignancy in a pediatric population. Materials and Methods All thyroid nodules in patients younger than 19 years that underwent ultrasound (US)-guided fine-needle aspiration biopsy between January 2004 and July 2017 were retrospectively identified. Age, sex, and background appearance of the thyroid gland were recorded for each patient, and sonographic characteristics and pathologic diagnosis were recorded for each nodule. Demographic and sonographic characteristics were assessed to determine which were associated with malignancy. Categorical and continuous variables and interobserver variability were assessed. Results A total of 404 nodules in 314 patients (82.8% female) (age range, 2-18 years; mean age, 14.9 years) were analyzed. A total of 77 nodules (19.1%) were malignant, the majority of which were papillary thyroid carcinoma (n = 68 [88.3%]). The likelihood of malignancy did not differ between boys and girls (27.8% vs 22.7%, P = .64), nor did it differ between prepubertal and pubertal patients (18.8% vs 19.1%, P > .99). The cancer rate in patients with a solitary nodule was higher than that in patients with multiple nodules (29.4% vs 14.2%, P = .003). Sonographic characteristics associated with malignant nodules included larger size, solid parenchyma, taller-than-wide shape, presence of speckled calcifications, lack of a smooth margin, and presence of abnormal lymph nodes. Interobserver variability for assessment of sonographic characteristics ranged from moderate to very strong. Conclusion In children with thyroid nodules, solitary nodules, larger nodule size, solid parenchyma, taller-than-wide shape, speckled calcifications, irregular margins, and abnormal lymph nodes raise concern for malignancy. © RSNA, 2018.

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Year:  2018        PMID: 29714678      PMCID: PMC6369930          DOI: 10.1148/radiol.2018171170

Source DB:  PubMed          Journal:  Radiology        ISSN: 0033-8419            Impact factor:   11.105


  12 in total

Review 1.  Pediatric thyroid ultrasound: a radiologist's checklist.

Authors:  Ioanna Tritou; Marina Vakaki; Rodanthi Sfakiotaki; Kalliroi Kalaitzaki; Maria Raissaki
Journal:  Pediatr Radiol       Date:  2020-03-12

2.  Comparison of the diagnostic performance of the 2017 ACR TI-RADS guideline to the Kwak guideline in children with thyroid nodules.

Authors:  Gali Shapira-Zaltsberg; Elka Miller; Claudia Martinez-Rios; Juan Bass; Ellen B Goldbloom; Ken Tang; Lamia Hayawi; Kerri Highmore
Journal:  Pediatr Radiol       Date:  2019-06-01

3.  The Role of Superb Microvascular Imaging and Shear Wave Elastography in Differentiation of Thyroid Nodules from Intrathyroidal Ectopic Thymus in Children.

Authors:  I Ihezagire; Z Bayramoglu; Y E Akpinar; I Adaletli
Journal:  Acta Endocrinol (Buchar)       Date:  2021 Apr-Jun       Impact factor: 0.877

4.  Adolescents with thyroid nodules: retrospective analysis of factors predicting malignancy.

Authors:  Junghwan Suh; Han Saem Choi; Ahreum Kwon; Hyun Wook Chae; Ho-Seong Kim
Journal:  Eur J Pediatr       Date:  2019-11-18       Impact factor: 3.183

5.  2020 Chinese guidelines for ultrasound malignancy risk stratification of thyroid nodules: the C-TIRADS.

Authors:  JianQiao Zhou; LiXue Yin; Xi Wei; Sheng Zhang; YanYan Song; BaoMing Luo; JianChu Li; LinXue Qian; LiGang Cui; Wen Chen; ChaoYang Wen; YuLan Peng; Qin Chen; Man Lu; Min Chen; Rong Wu; Wei Zhou; EnSheng Xue; YingJia Li; LiChun Yang; ChengRong Mi; RuiFang Zhang; Gang Wu; GuoQing Du; DaoZhong Huang; WeiWei Zhan
Journal:  Endocrine       Date:  2020-08-21       Impact factor: 3.633

6.  Diagnostic accuracy of ultrasonography versus fine-needle-aspiration cytology for predicting benign thyroid lesions.

Authors:  Sultan Abdulwadoud Alshoabi; Abdulkhaleq Ayedh Binnuhaid
Journal:  Pak J Med Sci       Date:  2019       Impact factor: 1.088

Review 7.  Imaging and Imaging-Based Management of Pediatric Thyroid Nodules.

Authors:  Ioannis Iakovou; Evanthia Giannoula; Christos Sachpekidis
Journal:  J Clin Med       Date:  2020-02-01       Impact factor: 4.241

8.  Ultrasound measurement of thyroid volume in euthyroid children under 3 years of age.

Authors:  Luís Ronan Marquez Ferreira de Souza; Nathalie de Almeida Sedassari; Eduarda Lemes Dias; Fernanda Cristina Mattos Dib; Heloisa Marcelina Cunha Palhares; Adriana Paula da Silva; Janaíne Machado Tomé; Maria de Fátima Borges
Journal:  Radiol Bras       Date:  2021 Mar-Apr

9.  Pediatric Thyroid Nodules: Ultrasound Characteristics as Indicators of Malignancy.

Authors:  Brandon Fornwalt; Manasa Melachuri; Matthew Kubina; Janice McDaniel; Anita Jeyakumar
Journal:  OTO Open       Date:  2022-03-08

10.  Is Thyroid Imaging Reporting and Data System Useful as an Adult Ultrasonographic Malignancy Risk Stratification Method ın Pediatric Thyroid Nodules?

Authors:  Yasemin Durum Polat; Veli Süha Öztürk; Nimet Ersoz; Ahmet Anık; Can Zafer Karaman
Journal:  J Med Ultrasound       Date:  2019-07-01
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