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- W2271800455 abstract "The primary goal of this study was to assess the suitability of <sup>11</sup>C-Pittsburgh compound B (<sup>11</sup>C-PiB) blood–brain barrier delivery (<i>K</i><sub>1</sub>) and relative delivery (<i>R</i><sub><i>1</i></sub>) parameters as surrogate indices of cerebral blood flow (CBF), with a secondary goal of directly examining the extent to which simplified uptake measures of <sup>11</sup>C-PiB retention (amyloid-β load) may be influenced by CBF, in a cohort of controls and patients with mild cognitive impairment (MCI) and Alzheimer disease (AD). <b>Methods:</b> Nineteen participants (6 controls, 5 AD, 8 MCI) underwent MR imaging, <sup>15</sup>O-water PET, and <sup>11</sup>C-PiB PET in a single session. Fourteen regions of interest (including cerebellar reference region) were defined on MR imaging and applied to dynamic coregistered PET to generate time–activity curves. Multiple analysis approaches provided regional <sup>15</sup>O-water and <sup>11</sup>C-PiB measures of delivery and <sup>11</sup>C-PiB retention that included compartmental modeling distribution volume ratio (DVR), arterial- and reference-based Logan DVR, simplified reference tissue modeling 2 (SRTM2) DVR, and standardized uptake value ratios. Spearman correlation was performed among delivery measures (i.e., <sup>15</sup>O-water <i>K</i><sub>1</sub> and <sup>11</sup>C-PiB <i>K</i><sub>1</sub>, relative <i>K</i><sub>1</sub> normalized to cerebellum [Rel-<i>K</i><sub>1-Water</sub> and Rel-<i>K</i><sub>1-PiB</sub>], and <sup>11</sup>C-PiB SRTM2-<i>R</i><sub><i>1</i></sub>) and between delivery measures and <sup>11</sup>C-PiB retention, using the Bonferroni method for multiple-comparison correction. <b>Results:</b> Primary analysis showed positive correlations (ρ ≈0.2–0.5) between <sup>15</sup>O-water <i>K</i><sub>1</sub> and <sup>11</sup>C-PiB <i>K</i><sub>1</sub> that did not survive Bonferroni adjustment. Significant positive correlations were found between Rel-<i>K</i><sub>1-Water</sub> and Rel-<i>K</i><sub>1-PiB</sub> and between Rel-<i>K</i><sub>1-Water</sub> and <sup>11</sup>C-PiB SRTM2-<i>R</i><sub><i>1</i></sub> (ρ ≈0.5–0.8, <i>P</i> < 0.0036) across primary cortical regions. Secondary analysis showed few significant correlations between <sup>11</sup>C-PiB retention and relative <sup>11</sup>C-PiB delivery measures (but not <sup>15</sup>O-water delivery measures) in primary cortical areas that arose only after accounting for cerebrospinal fluid dilution. <b>Conclusion:</b><sup>11</sup>C-PiB SRTM2-<i>R</i><sub><i>1</i></sub> is highly correlated with regional relative CBF, as measured by <sup>15</sup>O-water <i>K</i><sub>1</sub> normalized to cerebellum, and cross-sectional <sup>11</sup>C-PiB retention did not strongly depend on CBF across primary cortical regions. These results provide further support for potential dual-imaging assessments of regional brain status (i.e., amyloid-β load and relative CBF) through dynamic <sup>11</sup>C-PiB imaging." @default.
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- W2271800455 date "2015-06-04" @default.
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- W2271800455 title "Relative <sup>11</sup>C-PiB Delivery as a Proxy of Relative CBF: Quantitative Evaluation Using Single-Session <sup>15</sup>O-Water and <sup>11</sup>C-PiB PET" @default.
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- W2271800455 doi "https://doi.org/10.2967/jnumed.114.152405" @default.
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