Diagnostic Thyroid Surgery
ProcedureDiagnostic Thyroid Surgery
Other names: Thyroid Lobectomy, Hemithyroidectomy, Thyroidectomy
NCT Number: NCT02208544
The purpose of this study is to determine whether the use of molecular imaging using FDG-PET/CT could prevent unnecessary diagnostic thyroid surgery in case of indeterminate cytology during fine-needle aspiration biopsy.
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Notify Me18 year and older
All sexes
Interventional
Not applicable
Radboudumc, Nijmegen, Gelderland, Netherlands
Rationale: Only about ¼ of patients with thyroid nodules with indeterminate cytology are proven to suffer from a malignancy at diagnostic hemithyroidectomy. Therefore ~¾ is operated upon unbeneficially. Recent studies using FDG-PET/CT have suggested that it can decrease the fraction of unbeneficial procedures from ~73% to ~40%. Thereby the direct costs per patient, the number of hospitalization and average sick leave days might decrease and the experienced HRQoL might increase. A study will be undertaken to show the additional value of FDG-PET/CT after indeterminate cytology with respect to unbeneficial procedures, costs and utilities.
Main objective: To determine the impact of FDG-PET/CT on decreasing the fraction of patients with cytologically indeterminate thyroid nodules undergoing unbeneficial patient management.
Study design: A prospective, multicentre, randomized, stratified controlled blinded trial with an experimental study-arm (FDG-PET/CT-driven) and a control study-arm (diagnostic hemithyroidectomy, independent of FDG-PET/CT-result).
Study population: Adult patients with a cytologically indeterminate thyroid nodule, without exclusion criteria, in 15 (university and regional) hospitals distributed over the Netherlands.
Intervention: One single FDG-PET/low-dose non-contrast enhanced CT of the head and neck is performed in all patients. Patient management depends on allocation and results of this FDG-PET/CT.
Main study parameters/endpoints: The number of unbeneficial interventions, i.e. surgery for benign disease or watchful-waiting for malignancy.
Secondary objectives: complication rate, consequences of incidental PET-findings, number of hospitalisation and sick leave days, volumes of healthcare consumed, experienced health-related quality-of-life (HRQoL), genetic, cytological and (immuno)histopathological features of the nodules.
Sample size calculation/data analysis: Based on above-mentioned estimated reduction in unbeneficial interventions from ~73% to ~40%, at least 90 patients with nodules>10 mm need to be analyzed (2:1 allocation, α=0.05, power=0.90, single-sided Fisher's exact test). After correction for nodule size and data-attrition, 132 patients need to be included in total. Intention-to-treat analysis will be performed. Incremental Net Monetary Benefit based on the total direct costs per patients and the gain in HRQoL-adjusted survival years are computed. Cytological, histological and genetic parameters for FDG-avidity will be described.
Nature and extent of the burden and risks associated with participation, benefit and group relatedness: All patients undergo one FDG-PET/CT scan of head/neck (effective dose: <3.5 mSv) and are asked to fill in 6 questionnaires at 4 timepoints. FDG-PET/CT negative patients in the experimental arm will undergo a single confirmatory US (±FNAC). An interim/posterior analysis of the control subjects is performed to ensure oncological safety. In case of an unexpected high false-negative ratio in this control arm, all patients will be advised to undergo surgery.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Diagnostic Thyroid Surgery
Other names: Thyroid Lobectomy, Hemithyroidectomy, Thyroidectomy
Confirmatory Neck Ultrasonography in FDG-PET/CT negative patient in the experimental arm
Head and Neck FDG-PET/CT
Other names: fluorodeoxyglucose positron emission tomography
Time frame: 12 months after inclusion
Unbeneficial treatment is defined as either:
benign or malignant disease is defined on final histology (after surgery) or 12 month follow-up including confirmatory neck ultrasonography.
This parameter is compared between both study arms based on intention-to-treat.
Time frame: 12 months after inclusion
SO1b: To determine the effect of incorporation of FDG-PET/CT on the complication-ratio.
Time frame: 12 months after inclusion
SO1c: To determine the false-negative fraction of FDG-PET/CT in this population.
Time frame: 12 months after inclusion
SO1d: To determine the influence of lesion size, pathological classification and patient characteristics on the diagnostic accuracy of FDG-PET/CT.
Time frame: 12 months after inclusion
SO1e: To determine whether incorporation of FDG-PET/CT of the head and neck lead to overdiagnosis in non-thyroidal incidental findings.
Time frame: 12 months after inclusion
SO1f: To determine the short-term overall and disease free survival in both study arms.
Time frame: 12 months after inclusion
SO1g: To determine which factors hamper implementation of this modality for this indication (structured interviews).
Time frame: 12 months after inclusion
SO1h: To determine the fraction of patients that cannot be reassured by a negative PET-scan (experimental arm only) despite careful selection of patients (implementability).
Time frame: Baseline, 2 months, 6 months and 12 months after inclusion
SO2a: To determine the impact on the experienced HRQoL between the group with and without FDG-PET/CT according to 4 different questionnaires at 4 timepoints during the first 12 months after FDG-PET/CT.
SO2b: To determine whether patients in the experimental arm with negative PET-findings have a different HRQoL than those who receive surgery independent of the FDG-PET/CT results.
Time frame: 12 months after inclusion
SO3a: To determine the effect of incorporation of FDG-PET/CT on the mean direct costs (=volume of care multiplied by activity based costs) per patient during the first 12 months after FDG-PET/CT.
Time frame: 12 months after inclusion
SO3b: To determine the effect of incorporation of FDG-PET/CT on the average length of hospital stay for treatment of (complications of) thyroid lesions?
Time frame: 3 months after inclusions
SO3c: To determine the total number of sick leave days for the first three months in the patients? Do these differ between both study arms?
Time frame: 12 months after inclusion
SO3d: To determine the incremental Net Monetary Benefit of incorporation of FDG-PET/CT with respect to quality-adjusted life-years (QALYs, based on EQ-5D-5L index and overall survival) saved including sensitivity analysis.
SO3e: To determine the incremental Net Monetary Benefit of incorporation of FDG-PET/CT with respect to decrease in unbeneficial treatment.
Sensitivity analysis will be performed. A mere description will be given as there is no "accepted" value for this kind of analysis.
Time frame: 12 months after inclusion of last patient
SO4a: Are there potential protein- or gene-expression profiles, capable of determining the nature of the FNAC-indeterminate nodes (cytology) SO4b: What is the interaction/correlation between the parameters mentioned in SO4a and the results of the FDG-PET/CT scan and the final diagnosis?
Time frame: 12 months after inclusion of last patient
SO4b: What is the interaction/correlation between the parameters mentioned in SO4a and the results of the FDG-PET/CT scan and the final diagnosis?
Radboud University Medical Center
Other
Efficacy of [18F]-2-fluoro-2-deoxy-D-glucose Positron Emission Tomography (FDG-PET) in Evaluation of Cytological Indeterminate Thyroid Nodules Prior to Surgery: a Multicentre Cost-effectiveness Study
Acronym: EfFECTS
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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