scholarly journals Comparison of [18F] NaF PET/CT dynamic analysis methods and a static analysis method including derivation of a semi-population input function for site-specific measurements of bone formation in a population with chronic kidney disease-mineral and bone disorder

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
M. H. Vrist ◽  
J. N. Bech ◽  
T. G. Lauridsen ◽  
C. A. Fynbo ◽  
J. Theil

Abstract Purpose The purpose of this study is to compare dynamic and static whole-body (WB) [18F]NaF PET/CT scan methods used for analysis of bone plasma clearance in patients with chronic kidney disease-mineral and bone disorder (CKD-MBD). Methods Seventeen patients with CKD-MBD underwent a 60-min dynamic scan followed by a 30-min static WB scan. Tracer kinetics in four thoracic vertebrae were analysed using nonlinear regression and Patlak analysis using image-derived arterial input functions. The static WB scan was analysed using a simplified Patlak method requiring only a single data point in combination with a fixed y-intercept value (V0), both obtained using a semi-population function. The semi-population function was constructed by combining a previously derived population input function in combination with data from venous blood samples. Static WB scan analysis data, obtained from the semi-population input functions, was compared with paired data obtained using dynamic input functions. Results Bone plasma clearance (Ki) from Patlak analyses correlated well with nonlinear regression analysis, but Ki results using Patlak analysis were lower than Ki results using nonlinear regression analysis. However, no significant difference was found between Ki obtained by static WB scans and Ki obtained by dynamic scans using nonlinear regression analysis (p = 0.29). Conclusion Bone plasma clearance measured from static WB scans correlates with clearance data measured by dynamic analysis. Static [18F]NaF PET/CT scans can be applied in future studies to measure Ki in patients with CKD-MBD, but the results should not be compared uncritically with results obtained by dynamic scan analysis.

2021 ◽  
Author(s):  
Marie Houmaa Vrist ◽  
Jesper Nørgaard Bech ◽  
Thomas Guldager Lauridsen ◽  
Claire Anne Fynbo ◽  
Jørn Theil

Abstract PurposeImplementation and comparison of non-invasive dynamic and static whole-body (WB) [18F]NaF PET/CT scan methods to replace invasive bone biopsy, used for quantitative analysis of bone clearance in patients with chronic kidney disease - mineral and bone disorder (CKD-MBD).MethodsSeventeen patients with CKD-MBD underwent a 60-minute dynamic scan followed by a 30-minute static WB scan. Tracer kinetics in four thoracic vertebrae were analyzed using non-linear regression and Patlak analysis using image-derived arterial input functions. We validated the use of a semi-population input function in this population.ResultsSkeletal plasma clearance (Ki) from Patlak analyses correlated well with non-linear regression analysis, but Ki-results using Patlak analysis were lower compared to Ki-results using non-linear regression analysis. However, no significant difference was found between Ki obtained by static WB scans and Ki obtained by dynamic scans using non-linear regression analysis (p=0.29). ConclusionOur results show good correlation between dynamic and static analysis of skeletal plasma clearance with no significant difference between the Ki-results obtained by non-linear regression analysis and the more clinically suitable static scan analysis method. We found lower Ki-results when Patlak analysis was applied. Thus, WB [18F]NaF PET/CT scans can be applied in future studies to measure Ki in CKD-BMD patients, but the results should not be compared uncritically with results obtained by dynamic scans analysis.


2020 ◽  
Author(s):  
Marie Houmaa Vrist ◽  
Jesper Nørgaard Bech ◽  
Thomas Guldager Lauridsen ◽  
Claire Anne Fynbo ◽  
Jørn Theil

Abstract BackgroundMethods for assessing bone metabolism which can replace the gold standard bone biopsy are sorely needed in the clinical setting in patients with chronic kidney disease - mineral and bone disorder (CKD-MBD). The aim of the present study was implementation, validation and comparison of non-invasive dynamic and static whole-body (WB) [18F]NaF PET/CT scan methods to replace invasive bone biopsy, used for quantitative analysis of bone clearance in CKD-MBD patients.MethodsSeventeen patients with CKD-MBD underwent a 60-minute dynamic scan followed by a 30-minute static WB scan. Tracer kinetics in four thoracic vertebrae were analyzed using non-linear regression with the Hawkins model and two different Patlak-analysis methods using image-derived arterial input functions obtained from the left myocardial ventricle and the thoracic aorta. For future use in WB PET/CT scans, we validated the use of a semi-population input function. The resulting kinetic parameters (Ki, K1, k2, k3, k4, V0) were compared between the different methods of analysis using the various derived input functions.ResultsDynamic kinetic results from both standard and single-point Patlak analyses correlate well with non-linear regression analysis, but Ki results using Patlak analysis are generally lower for all tested input functions compared to regression analysis. Single-point Patlak analysis on WB scans correlates well with standard Patlak analysis on dynamic scans but show 13-21% higher Ki-values. ConclusionsOur results show good correlation between dynamic and static analysis of skeletal plasma clearance but different Ki-values depending on the analysis method and choice of input function used. Thus, WB [18F]NaF PET/CT scans can be applied in future studies, but the results should not be compared uncritically with results obtained using non-linear regression analysis.


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