| Literature DB >> 29713467 |
Hai Rong Ma1, Li Qin Sheng1, Ping Lei Pan2, Gen Di Wang2, Rong Luo2, Hai Cun Shi2, Zhen Yu Dai3, Jian Guo Zhong2.
Abstract
Brain 18F-fluorodeoxyglucose positron emission tomography (FDG-PET) has been utilized to monitor disease conversion from amnestic mild cognitive impairment (aMCI) to Alzheimer's dementia (AD). However, the conversion patterns of FDG-PET metabolism across studies are not conclusive. We conducted a voxel-wise meta-analysis using Seed-based d Mapping that included 10 baseline voxel-wise FDG-PET comparisons between 93 aMCI converters and 129 aMCI non-converters from nine longitudinal studies. The most robust and reliable metabolic alterations that predicted conversion from aMCI to AD were localized in the left posterior cingulate cortex (PCC)/precuneus. Furthermore, meta-regression analyses indicated that baseline mean age and severity of cognitive impairment, and follow-up duration were significant moderators for metabolic alterations in aMCI converters. Our study revealed hypometabolism in the left PCC/precuneus as an early feature in the development of AD. This finding has important implications in understanding the neural substrates for AD conversion and could serve as a potential imaging biomarker for early detection of AD as well as for tracking disease progression at the predementia stage.Entities:
Keywords: Alzheimer’s dementia; Conversion; FDG-PET; Meta-analysis; Mild cognitive impairment; Seed-based d mapping
Year: 2018 PMID: 29713467 PMCID: PMC5911957 DOI: 10.1186/s40035-018-0114-z
Source DB: PubMed Journal: Transl Neurodegener ISSN: 2047-9158 Impact factor: 8.014
Fig. 1Flow chart for the literature search. Abbreviations: MCI, mild cognitive impairment; AD, Alzheimer’s dementia; FDG-PET, 18F-fluorodesoxyglucose positron emission tomography; aMCI, amnestic MCI
Characteristics of FDG-PET studies included in the meta-analysis
| Study | Sample size (female) | Age (SD) | Education (years) | MMSE (SD) | Software | FWHM | Threshold | Follow-up Duration | Diagnostic Criteria | |
|---|---|---|---|---|---|---|---|---|---|---|
| Chetelat et al., 2003 [ | Converters | 7 (4) | 73 (5.1) | NA | 26.3 (1) | SPM99 | NA | 0.05, corrected | 18 months | Petersen et al. (2001) [ |
| Non-converters | 10 (5) | 67.8 (7) | NA | 27.8 (1.2) | ||||||
| Drzezga et al., 2003 [ | Converters | 8 (3) | 71.6 (4.3) | NA | 27.9 (1.2) | SPM99 | 12 mm | 0.001, uncorrected | 12 months | Petersen et al. (1999) [ |
| Non-converters | 12 (7) | 68.6 (6.5) | NA | 28.1 (1.3) | ||||||
| Mosconi et al., 2004 [ | Converters | 8 (NA) | 71 (5) | 8 (3) | 26.7 (1.3) | SPM99 | 12 mm | 0.05, corrected | 12.0 months | Petersen et al. (2001) [ |
| Non-converters | 29 (NA) | 66 (8) | 10 (5) | 28.3 (1.4) | 12.1 months | |||||
| Salmon et al., 2008 [ | Converters | 17 (12) | 71.3 (5.9) | 10.8 (2.5) | 24.0 (2.2) | SPM2 | 12 mm | 0.005, uncorrected | 36 months | Petersen et al. (2001) [ |
| Non-converters | 17 (7) | 66.2 (7.0) | 12.3 (5.2) | 25.7 (1.9) | ||||||
| Fouquet et al., 2009 [ | Converters | 7 (5) | 73.3 (4.3) | 11.0 (4.7) | 26.7 (1.0) | SPM2 | 10 mm | 0.005, uncorrected | 17.5 months | Petersen et al. (2001) [ |
| Non-converters | 10 (6) | 70.4 (11.2) | 9.9 (3.6) | 28.1 (1.0) | 18.2 months | |||||
| Kim et al., 2010 [ | Convertersa | 7 (NA) | 57.8 (3.7) | NA | 27.00 (1.15) | SPM2 | 12 mm | 0.001, uncorrected | 60 months | Petersen et al. (1999) [ |
| Non-convertersa | 5 (NA) | 60.0 (4.2) | NA | 28.00 (2.12) | ||||||
| Kim et al., 2010 [ | Convertersb | 8 (NA) | 71.7 (4.4) | NA | 27.50 (1.87) | SPM2 | 12 mm | 0.001, uncorrected | 60 months | Petersen et al. (1999) [ |
| Non-convertersb | 6 (NA) | 75.8 (4.1) | NA | 26.63 (1.69) | ||||||
| Morbelli et al., 2010 [ | Converters | 9 (7) | 77.1 (5.9) | 8.6 (4.3) | 27.8 (0.9) | SPM2 | 10 mm | 0.005, uncorrected | 22.6 months | Petersen et al. (2004) [ |
| Non-converters | 11 (5) | 74.0 (5.3) | 8.7 (4.5) | 27.8 (1.4) | 26.5 months | |||||
| Pagani et al., 2010 [ | Converters | 10 (8) | 77.7 (4.8) | 8.8 (3.9) | 27.5 (1.4) | SPM2 | 8 mm | 0.05, corrected | 22.0 months | Petersen et al. (2004) [ |
| Non-converters | 9 (4) | 75.8(5.9) | 11.0 (5.3) | 27.0 (2.0) | 23.7 months | |||||
| Sohn et al., 2015 [ | Converters | 12 (9) | 69.5 (7.7) | 7.5 (2.9) | 19.9 (3.5) | SPM8 | 12 mm | 0.005, uncorrected | 24 months | Albert et al. (2011) [ |
| Non-converters | 20 (14) | 71.6 (7.0) | 9.2 (4.1) | 23.9 (3.4) | ||||||
Abbreviations: FDG-PET 18F-fluorodesoxyglucose positron emission tomography, SD standard deviation, MMSE Mini-Mental State Examination, FWHM full width at half maximum, NA not available, SPM statistical parametric mapping
aearly-onset amnestic mild cognitive impairment
blate-onset amnestic mild cognitive impairment
Fig. 2Brain hypometabolism map for the main voxel-wise meta-analysis in aMCI converters and aMCI non-converters. Abbreviations: aMCI, amnestic mild cognitive impairment; L, left; R, right; SDM, Seed-based d Mapping. The color bar indicates the maximum and the minimum SDM-Z values
Clusters of regional hypometabolism in aMCI converters relative to aMCI non-converters
| Anatomical label | Peak MNI coordinate (x, y, z) | Number of voxels | SDM-Z value | p value (Egger’s test) | |
|---|---|---|---|---|---|
| Left/Right PCC/precuneus (BAs 23, 7, and 30) | −4, −48, 28 | 1959 | −2.73 | ~ 0 | 0.37 |
| Left/Right ACC (BAs 11, 32, 24, and 10) | −4, 32, 0 | 668 | −1.72 | 0.00047 | 0.23 |
| Left middle temporal gyrus (BAs 21, 20, and 38) | −44, 4, − 26 | 501 | −1.66 | 0.00067 | 0.16 |
| Left middle temporal gyrus (BAs 21 and 37) | −58, −52, −2 | 185 | − 1.65 | 0.00074 | 0.13 |
| Left middle frontal gyrus, orbital part (BA 11) | −20, 40, −18 | 22 | −1.39 | 0.0031 | 0.30 |
Abbreviations: MCI amnestic mild cognitive impairment, MNI Montreal Neurological Institute, SDM Seed-based d Mapping, PCC posterior cingulate cortex, ACC anterior cingulate cortex, BA Brodmann area
Jackknife sensitivity analysis
| All studies but … | Left/Right PCC/precuneus (BAs 23, 7, and 30) | Left/Right ACC (BAs 11, 32, 24, and 10) | Left middle temporal gyrus (BAs 21, 20, and 38) | Left middle temporal gyrus (BAs 21 and 37) | Left middle frontal gyrus, orbital part (BA 11) |
|---|---|---|---|---|---|
| Chetelat et al., 2003 [ | Yes | Yes | Yes | Yes | Yes |
| Drzezga et al., 2003 [ | Yes | Yes | Yes | Yes | Yes |
| Mosconi et al., 2004 [ | Yes | Yes | Yes | Yes | Yes |
| Salmon et al., 2008 [ | Yes | No | Yes | No | No |
| Fouquet et al., 2009 [ | Yes | Yes | Yes | Yes | Yes |
| Kim et al., 2010a [ | Yes | Yes | Yes | Yes | No |
| Kim et al., 2010b [ | Yes | Yes | Yes | Yes | Yes |
| Morbelli et al., 2010 [ | Yes | Yes | No | Yes | No |
| Pagani et al., 2010 [ | Yes | Yes | Yes | No | Yes |
| Sohn et al., 2015 [ | Yes | Yes | Yes | Yes | Yes |
| Total | 10 out of 10 | 9 out of 10 | 9 out of 10 | 8 out of 10 | 8 out of 10 |
Abbreviations: PCC posterior cingulate cortex, ACC anterior cingulate cortex, BA Brodmann area, Yes the region(s) reported, No the region(s) not reported
aearly-onset amnestic mild cognitive impairment
blate-onset amnestic mild cognitive impairment
Regions with heterogeneity
| Anatomical label | Peak MNI coordinate (x, y, z) | Number of voxels | SDM-Z value | |
|---|---|---|---|---|
| Right PCC/precuneus (BA 23) | 12, −40, 34 | 374 | 1.49 | 0.00012 |
| Right superior temporal gyrus (BAs 22 and 21) | 60, −28, 6 | 440 | 1.20 | 0.00037 |
| Left middle frontal gyrus (BA 46) | −28, 40, 30 | 270 | 1.57 | 0.000084 |
| Left/Right ACC (BAs 11, 32, 24, and 25) | −4, 36, 4 | 216 | 1.25 | 0.00030 |
| Left middle frontal gyrus, orbital part (BA 11) | −18, 58, −14 | 184 | 1.26 | 0.00029 |
| Left middle temporal gyrus (BAs 21 and 20) | −50, 2, − 28 | 85 | 1.12 | 0.00056 |
Abbreviations: SDM Seed-based d Mapping, MNI Montreal Neurological Institute, PCC posterior cingulate cortex, ACC anterior cingulate cortex, BA Brodmann area
Meta-regression analyses
| Anatomical label | Peak MNI coordinate (x, y, z) | Number of voxels | SDM-Z value | ||
|---|---|---|---|---|---|
| Effect of age | Association of regional glucose metabolism effect size and older mean age of aMCI converters | ||||
| Left middle temporal gyrus (BAs 21 and 20) | −54, 4, − 28 | 152 | −1.64 | 0.00024 | |
| Left middle temporal gyrus (BA 37) | −56, −58, −2 | 64 | −1.69 | 0.00016 | |
| Left superior /middle frontal gyri, orbital part (BA 11) | −18, 58, − 14 | 53 | 1.73 | 0.000076 | |
| Effect of illness severity | Association of regional glucose metabolism effect size and lower mean MMSE scores of aMCI converters | ||||
| Left middle frontal gyrus (BA 9) | −24, 22, 42 | 21 | −2.74 | 0.00014 | |
| Left temporal pole (BAs 28 and 36) | −20, 8, −34 | 13 | −2.69 | 0.00017 | |
| Effect of follow-up duration | Association of regional glucose metabolism effect size and longer mean follow-up duration | ||||
| Left middle frontal gyrus (BAs 46 and 9) | −30, 40, 30 | 255 | −3.30 | 0.000037 | |
Abbreviations: SDM Seed-based d Mapping, MNI Montreal Neurological Institute, aMCI amnestic mild cognitive impairment, PCC posterior cingulate cortex, ACC anterior cingulate cortex, BA Brodmann area