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4,164 results on '"papillary thyroid cancer"'

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1. The Prognostic Impact of Radioiodine Therapy in Patients with Papillary Thyroid Cancer.

2. Promoter mutation-independent TERT expression is related to the immune-enriched milieu in papillary thyroid cancer.

3. A computational approach to assessing the prognostic implications of BRAF and RAS mutations in patients with papillary thyroid carcinoma.

4. Psychological impacts of lobectomy and total thyroidectomy in PTC measuring 1 to 4 cm with low to intermediate risk of recurrence.

5. RAI therapy in low-risk papillary thyroid cancer: recurrence reduction and long-term outcomes in the Turkish population.

6. Assessing radioiodine therapy long-term outcomes in differentiated thyroid cancer using nomograms.

7. Anti-Proliferative and Anti-Migratory Activity of Licorice Extract and Glycyrrhetinic Acid on Papillary Thyroid Cancer Cell Cultures.

8. New Small-Molecule SERCA Inhibitors Enhance Treatment Efficacy in Lenvatinib-Resistant Papillary Thyroid Cancer.

9. BRAFV600E/p-ERK/p-DRP1(Ser616) Promotes Tumor Progression and Reprogramming of Glucose Metabolism in Papillary Thyroid Cancer.

10. Clinicopathological Features of CCDC6-RET and NCOA4-RET Fusions in Thyroid Cancer: A Single-Center Retrospective Cohort Study in a Chinese Population.

11. Changing Clinical Presentation of Pediatric Differentiated Thyroid Cancer in Poland: A Retrospective Cohort Study Spanning 45 Years.

12. Cytologic and Clinicopathologic Features of Papillary Thyroid Carcinoma with Prominent Hobnail Features on FNAC.

13. FUS-Mediated CircFGFR1 Accelerates the Development of Papillary Thyroid Carcinoma by Stabilizing FGFR1 Protein.

14. Active surveillance of nodal metastasis in differentiated thyroid carcinoma: a systematic review and meta-analysis.

15. Investigation the role of Human Leukocyte Antigen-G in Iraqi patients with papillary thyroid carcinoma.

16. Single-Institution Experience of Larotrectinib Therapy for Patients With NTRK Fusion-Positive Thyroid Carcinoma.

17. Potential functions and mechanisms of lysine crotonylation modification (Kcr) in tumorigenesis and lymphatic metastasis of papillary thyroid cancer (PTC).

18. Immune microenvironment in papillary thyroid carcinoma: roles of immune cells and checkpoints in disease progression and therapeutic implications.

19. Identification of LINC02454-related key pathways and genes in papillary thyroid cancer by weighted gene coexpression network analysis (WGCNA).

20. Pulmonary Injury after Radioactive Iodine Therapy in Pediatric Papillary Thyroid Cancer: A Case Report.

21. Long-Term Outcome of Patients with Low-Risk Differentiated Thyroid Cancer Treated with Total Thyroidectomy Alone.

22. The Association between Lymphocytic Thyroiditis and Papillary Thyroid Cancer Harboring Mutant BRAF: A Systematic Review and Meta-Analysis.

23. Differentiated Thyroid Cancer in Children and Adolescents: 12-year Experience in a Single Center.

24. Reproductive Factors and Thyroid Cancer Risk: The Multiethnic Cohort Study.

25. High Fatty Acid-Binding Protein 4 Expression Associated with Favorable Clinical Characteristics and Prognosis in Papillary Thyroid Carcinoma.

26. Development and Verification of Diagnosis Model for Papillary Thyroid Cancer Based on Pyroptosis-Related Genes: A Bioinformatic and in vitro Investigation

27. RAI therapy in low-risk papillary thyroid cancer: recurrence reduction and long-term outcomes in the Turkish population

28. The Application of microRNAs in Papillary Thyroid Cancer: A Bibliometric and Visualized Analysis

29. Assessing radioiodine therapy long-term outcomes in differentiated thyroid cancer using nomograms

30. Decreased sirtuin 4 levels promote cellular proliferation and invasion in papillary thyroid carcinoma

31. Potential functions and mechanisms of lysine crotonylation modification (Kcr) in tumorigenesis and lymphatic metastasis of papillary thyroid cancer (PTC)

32. Long-Term Outcome of Patients with Low-Risk Differentiated Thyroid Cancer Treated with Total Thyroidectomy Alone

33. Differentiated Thyroid Cancer in Children and Adolescents: 12-year Experience in a Single Center

34. Identification of LINC02454-related key pathways and genes in papillary thyroid cancer by weighted gene coexpression network analysis (WGCNA)

35. CircTIAM1 overexpression promotes the progression of papillary thyroid cancer by regulating the miR-338-3p/LASP1 axis.

36. Trends in papillary thyroid cancer mortality in Denmark according to stage and education.

37. Association of thyroid autoantibodies with aggressive characteristics of papillary thyroid cancer: a case-control study

38. Prediction model for lateral lymph node metastasis of papillary thyroid carcinoma in children and adolescents based on ultrasound imaging and clinical features: a retrospective study

39. Comparative Analysis of AI-SONICTM Thyroid System and Six Thyroid Risk Stratification Guidelines in Papillary Thyroid Cancer: A Retrospective Cohort Study

40. Immune response and mesenchymal transition of papillary thyroid carcinoma reflected in ultrasonography features assessed by radiologists and deep learning

41. Modified TI-RADS Coupled with BRAFV600E Enhances Diagnostic Efficiency in Papillary Thyroid Carcinoma: Prospective Study

42. From balance to imbalance: disruption of plasma glutathione concentration in micropapillary thyroid carcinoma

43. A controlled study of the hygienic technical evaluation of the transaxillary approach for inflation-free single-port lumpectomy versus conventional transcervical anterior open surgery in radical thyroid cancer resection

44. Construction of a new tool for predicting cancer-specific survival in papillary thyroid cancer patients who have not received surgery.

45. Prediction model for lateral lymph node metastasis of papillary thyroid carcinoma in children and adolescents based on ultrasound imaging and clinical features: a retrospective study.

46. Association of thyroid autoantibodies with aggressive characteristics of papillary thyroid cancer: a case-control study.

47. Surgical management of papillary thyroid carcinoma coexisting with Hashimoto's disease: a single-center retrospective cohort study.

48. From sequencing to validation: NGS-based exploration of plasma miRNA in papillary thyroid carcinoma.

49. Plasma miRNA-146b-3p, -222-3p, -221-5p, -21a-3p Expression Levels and TSHR Methylation: Diagnostic Potential and Association with Clinical and Pathological Features in Papillary Thyroid Cancer.

50. Influence of MiR-126-3p and MiR-146a-5p Dysregulation on The Risk and Clinicopathological Features of Papillary Thyroid Cancer in Patients with Thyroid Nodules.

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