Key result
Cardiac MIBG scintigraphy distinguishes probable MCI-LB from MCI-AD with 75% accuracy.
Why the study?
To evaluate whether cardiac I-123-metaiodobenzylguanidine sympathetic innervation imaging (MIBG) scintigraphy differentiates probable mild cognitive impairment with Lewy bodies from mild cognitive impairment due to Alzheimer disease, and to compare its accuracy with baseline FP-CIT scans.
Does cardiac MIBG scintigraphy accurately differentiate probable mild cognitive impairment with Lewy bodies from mild cognitive impairment due to Alzheimer disease?
Cohort (n=95)
No
Does cardiac MIBG scintigraphy accurately differentiate probable mild cognitive impairment with Lewy bodies from mild cognitive impairment due to Alzheimer disease?
Effect estimate: Accuracy 75% (95% CI 64%-84%)
Cardiac MIBG scintigraphy provides high specificity (88%) and is useful in early disease for distinguishing mild cognitive impairment with Lewy bodies from Alzheimer's disease.
May aid differentiation in select early MCI cases via high specificity; leaves open need for prospective validation before routine use.
OBJECTIVE: To provide evidence that cardiac I-123-metaiodobenzylguanidine sympathetic innervation imaging (MIBG) scintigraphy differentiates probable mild cognitive impairment with Lewy bodies (MCI-LB) from mild cognitive impairment due to Alzheimer disease (MCI-AD), we scanned patients with MCI and obtained consensus clinical diagnoses of their MCI subtype. We also performed baseline FP-CIT scans to compare the accuracy of MIBG and FP-CIT. METHODS: We conducted a prospective cohort study into the accuracy of cardiac MIBG scintigraphy in the diagnosis of MCI-LB. Follow-up clinical assessment was used to diagnose MCI-AD (no core features of MCI-LB and normal FP-CIT), probable MCI-LB (2 or more core features, or 1 core feature with abnormal FP-CIT), or possible MCI-LB (1 core feature or abnormal FP-CIT). For the comparison between MIBG and FP-CIT, only core clinical features were used for diagnosis. RESULTS: We recruited 95 people with mild cognitive impairment. Cardiac MIBG was abnormal in 22/37 probable and 2/15 possible MCI-LB cases and normal in 38/43 MCI-AD cases. The sensitivity in probable MCI-LB was 59% (95% confidence interval [CI], 42%-75%), specificity 88% (75%-96%), and accuracy 75% (64%-84%). The positive likelihood ratio was 5.1 and negative likelihood ratio 0.46. With symptom-only diagnoses, the accuracies were 79% for MIBG (95% CI, 68%-87%) and 76% for FP-CIT (95% CI, 65%-85%). CONCLUSIONS: Cardiac MIBG appears useful in early disease, with an abnormal scan highly suggestive of MCI-LB. Validation in a multicenter setting is justified. CLASSIFICATION OF EVIDENCE: This study provides Class I evidence that cardiac MIBG distinguishes MCI-LB from MCI-AD.
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Roberts et al. (2021) conducted a cohort in Mild cognitive impairment (n=95). Cardiac MIBG scintigraphy vs. FP-CIT scans and clinical diagnosis was evaluated on Accuracy in diagnosing probable MCI-LB (Accuracy 75%, 95% CI 64%-84%). Cardiac MIBG scintigraphy distinguished probable MCI-LB from MCI-AD with an accuracy of 75% (95% CI, 64%-84%), sensitivity of 59%, and specificity of 88%.
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