Key result
Follow-up I-MIBG scintigraphy had a higher diagnostic sensitivity (89.5%) than initial imaging (72.2%) for discriminating Parkinson disease from atypical Parkinsonian syndromes.
Why the study?
Prior studies evaluating single-session myocardial 123I-MIBG scintigraphy showed low sensitivity for differentiating Parkinson disease from atypical Parkinsonian syndromes, prompting evaluation of a two-phase approach.
Does follow-up sequential myocardial 123I-MIBG scintigraphy improve diagnostic sensitivity to discriminate Parkinson disease from atypical Parkinsonian syndromes compared to initial imaging alone?
Observational (n=188)
Does follow-up sequential myocardial 123I-MIBG scintigraphy improve diagnostic sensitivity to discriminate Parkinson disease from atypical Parkinsonian syndromes compared to initial imaging alone?
Absolute Event Rate: 89.5% vs 72.2%
Follow-up myocardial 123I-MIBG scintigraphy at 2 years improves the diagnostic sensitivity for discriminating Parkinson disease from atypical Parkinsonian syndromes compared to a single initial scan.
May enhance differentiation of Parkinson disease in select cases; leaves open need for prospective validation before routine use.
PURPOSE: Previous single-center or meta-analysis studies analyzed myocardial I-metaiodobenzylguanidine (I-MIBG) scintigraphy in a single image session and demonstrated low sensitivity and high specificity for discriminating Parkinson disease (PD) from atypical Parkinsonian syndromes (APS). This study aimed to assess diagnostic ability of myocardial I-MIBG scintigraphy at 2 phases to discriminate PD from APS. PATIENTS AND METHODS: This hospital-based prospective study enrolled 162 PD and 26 APS patients who underwent 2 sequential I-MIBG scintigraphy evaluations. Patients were stratified into normal and decreased I-MIBG groups according to early and delayed heart-to-mediastinum (H/M) ratios. Patients with PD and normal I-MIBG uptake (initial delayed H/M ratio, ≥1.78) were considered scans without evidence of cardiac norepinephrine deficit (SWEND). Early and delayed H/M ratios on the initial and 2-year follow-up scintigraphs were studied. The diagnostic sensitivity and specificity were calculated from these confusion matrices and were analyzed according to receiver-operating characteristic curve analysis. A repeated-measures general linear model was used to investigate differences among groups over time in H/M ratio changes and washout rates. RESULTS: Follow-up I-MIBG scintigraphy analysis had a higher diagnostic sensitivity (89.5%) than the initial imaging (72.2%). The improved sensitivity was associated with a steeper decrease in H/M ratio in the SWEND group than in the APS group. CONCLUSIONS: Follow-up I-MIBG scintigraphy can identify cardiac sympathetic denervation and its progression in patients with PD and may be effective in discriminating PD from APS. A later decrease in myocardial I-MIBG uptake in the group with SWEND meets the Braak staging threshold hypothesis for synucleinopathy.
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Ryu et al. (2019) conducted an observational in Parkinson disease and atypical Parkinsonian syndromes (n=188). Follow-up I-MIBG scintigraphy vs. Initial I-MIBG scintigraphy was evaluated on Diagnostic sensitivity to discriminate Parkinson disease from atypical Parkinsonian syndromes. Follow-up I-MIBG scintigraphy had a higher diagnostic sensitivity (89.5%) than initial imaging (72.2%) for discriminating Parkinson disease from atypical Parkinsonian syndromes.
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