Miranda-Filho A, Lortet-Tieulent J, Bray F et al (2021) Thyroid cancer incidence trends by histology in 25 countries: a population-based study. Lancet Diabetes Endocrinol 9:225–234
Chen AY, Jemal A, Ward EM (2009) Increasing incidence of differentiated thyroid cancer in the United States, 1988–2005. Cancer 115:3801–3807
Siegel RL, Miller KD, Jemal A (2017) Cancer statistics, 2017. CA Cancer J Clin 67:7–30
Haugen BR, Alexander EK, Bible KC et al (2016) 2015 American Thyroid Association Management Guidelines for Adult Patients with Thyroid Nodules and Differentiated Thyroid Cancer: the American Thyroid Association Guidelines Task Force on Thyroid Nodules and Differentiated Thyroid Cancer. Thyroid 26:1–133
Article PubMed PubMed Central Google Scholar
Yan B, Hou Y, Chen D, He J, Jiang Y (2018) Risk factors for contralateral central lymph node metastasis in unilateral cN0 papillary thyroid carcinoma: a meta-analysis. Int J Surg 59:90–98
Chen BD, Zhang Z, Wang KK et al (2019) A multivariable model of BRAF(V600E) and ultrasonographic features for predicting the risk of central lymph node metastasis in cN0 papillary thyroid microcarcinoma. Cancer Manag Res 11:7211–7217
Article CAS PubMed PubMed Central Google Scholar
Liu LS, Liang J, Li JH et al (2017) The incidence and risk factors for central lymph node metastasis in cN0 papillary thyroid microcarcinoma: a meta-analysis. Eur Arch Otorhinolaryngol 274:1327–1338
Wang TS, Dubner S, Sznyter LA, Heller KS (2004) Incidence of metastatic well-differentiated thyroid cancer in cervical lymph nodes. Arch Otolaryngol Head Neck Surg 130:110–113
Adam MA, Pura J, Goffredo P et al (2015) Presence and number of lymph node metastases are associated with compromised survival for patients younger than age 45 years with papillary thyroid cancer. J Clin Oncol 33:2370–2375
Zaydfudim V, Feurer ID, Griffin MR, Phay JE (2008) The impact of lymph node involvement on survival in patients with papillary and follicular thyroid carcinoma. Surgery 144:1070–1077
Ito Y, Fukushima M, Tomoda C et al (2009) Prognosis of patients with papillary thyroid carcinoma having clinically apparent metastasis to the lateral compartment. Endocr J 56:759–766
Yu Y, Ouyang W, Huang Y et al (2024) AI-based multimodal multi-tasks analysis reveals tumor molecular heterogeneity, predicts preoperative lymph node metastasis and prognosis in papillary thyroid carcinoma: a retrospective study. Int J Surg. https://doi.org/10.1097/js9.0000000000001875
Randolph GW, Duh QY, Heller KS et al (2012) The prognostic significance of nodal metastases from papillary thyroid carcinoma can be stratified based on the size and number of metastatic lymph nodes, as well as the presence of extranodal extension. Thyroid 22:1144–1152
Londero SC, Krogdahl A, Bastholt L et al (2015) Papillary thyroid carcinoma in Denmark, 1996-2008: outcome and evaluation of established prognostic scoring systems in a prospective national cohort. Thyroid 25:78–84
Hay ID, Grant CS, van Heerden JA, Goellner JR, Ebersold JR, Bergstralh EJ (1992) Papillary thyroid microcarcinoma: a study of 535 cases observed in a 50-year period. Surgery 112:1139–1146
Raffaelli M, De Crea C, Sessa L et al (2021) Modulating the extension of thyroidectomy in patients with papillary thyroid carcinoma pre-operatively eligible for lobectomy: reliability of ipsilateral central neck dissection. Endocrine 72:437–444
Article CAS PubMed Google Scholar
Raffaelli M, Sessa L, De Crea C et al (2021) Is it possible to intraoperatively modulate the extent of thyroidectomy in small papillary thyroid carcinoma? Surgery 169:77–81
Albuck AL, Issa PP, Hussein M et al (2023) A combination of computed tomography scan and ultrasound provides optimal detection of cervical lymph node metastasis in papillary thyroid carcinomas: a systematic review and meta-analysis. Head Neck 45:2173–2184
Xiao W, Hu X, Zhang C, Qin X (2023) Ultrasonic feature prediction of large-number central lymph node metastasis in clinically node-negative solitary papillary thyroid carcinoma. Endocr Res 48:112–119
Xing Z, Qiu Y, Yang Q et al (2020) Thyroid cancer neck lymph nodes metastasis: meta-analysis of US and CT diagnosis. Eur J Radiol 129:109103
Zhu Y, Ren W, Song Y et al (2021) Cytomorphologic features as predictors of aggressiveness in patients with pT1 papillary thyroid carcinoma: a retrospective study of associations with clinicopathological parameters in 226 fine-needle aspirates. Gland Surg 10:319–327
Article PubMed PubMed Central Google Scholar
Bera K, Schalper KA, Rimm DL, Velcheti V, Madabhushi A (2019) Artificial intelligence in digital pathology—new tools for diagnosis and precision oncology. Nat Rev Clin Oncol 16:703–715
Article PubMed PubMed Central Google Scholar
Lambin P, Leijenaar RTH, Deist TM et al (2017) Radiomics: the bridge between medical imaging and personalised medicine. Nat Rev Clin Oncol 14:749–762
Gupta R, Srivastava D, Sahu M, Tiwari S, Ambasta RK, Kumar P (2021) Artificial intelligence to deep learning: machine intelligence approach for drug discovery. Mol Divers 25:1315–1360
Article CAS PubMed PubMed Central Google Scholar
Cibas ES, Ali SZ (2017) The 2017 Bethesda system for reporting thyroid cytopathology. Thyroid 27:1341–1346
Tessler FN, Middleton WD, Grant EG et al (2017) ACR thyroid imaging, reporting and data system (TI-RADS): white paper of the ACR TI-RADS Committee. J Am Coll Radiol 14:587–595
Cruz Rivera S, Liu X, Chan AW et al (2020) Guidelines for clinical trial protocols for interventions involving artificial intelligence: the SPIRIT-AI extension. Nat Med 26:1351–1363
Article CAS PubMed PubMed Central Google Scholar
Shen G, Ma H, Huang R, Kuang A (2020) Predicting large-volume lymph node metastasis in the clinically node-negative papillary thyroid microcarcinoma: a retrospective study. Nucl Med Commun 41:5–10
Sugitani I, Kasai N, Fujimoto Y, Yanagisawa A (2004) A novel classification system for patients with PTC: addition of the new variables of large (3 cm or greater) nodal metastases and reclassification during the follow-up period. Surgery 135:139–148
Leboulleux S, Rubino C, Baudin E et al (2005) Prognostic factors for persistent or recurrent disease of papillary thyroid carcinoma with neck lymph node metastases and/or tumor extension beyond the thyroid capsule at initial diagnosis. J Clin Endocrinol Metab 90:5723–5729
Article CAS PubMed Google Scholar
Lechien JR, Maniaci A, Gengler I, Hans S, Chiesa-Estomba CM, Vaira LA (2024) Validity and reliability of an instrument evaluating the performance of intelligent chatbot: the artificial intelligence performance instrument (AIPI). Eur Arch Otorhinolaryngol 281:2063–2079
Zhang M, Zhang Y, Wei H et al (2023) Ultrasound radiomics nomogram for predicting large-number cervical lymph node metastasis in papillary thyroid carcinoma. Front Oncol 13:1159114
Article PubMed PubMed Central Google Scholar
Zhu W, Huang X, Qi Q et al (2022) Artificial neural network-based ultrasound radiomics can predict large-volume lymph node metastasis in clinical N0 papillary thyroid carcinoma patients. J Oncol 2022:7133972
Article PubMed PubMed Central Google Scholar
Skoura E (2013) Depicting medullary thyroid cancer recurrence: the past and the future of nuclear medicine imaging. Int J Endocrinol Metab 11:e8156
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