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首页> 外文期刊>Anatomy and embryology >Analysis of neuroreceptor PET-data based on cytoarchitectonic maximum probability maps: a feasibility study.
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Analysis of neuroreceptor PET-data based on cytoarchitectonic maximum probability maps: a feasibility study.

机译:基于细胞结构最大概率图的神经受体PET数据分析:可行性研究。

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摘要

Three-dimensional maximum probability maps (MPMs) of cytoarchitectonically defined cortical regions based on postmortem histological studies have recently been made available in the stereotaxic reference space of the Montreal Neurological Institute (MNI) single subject template. This permits the use of cytoarchitectonic maps for the analysis of functional in vivo datasets, including neuroreceptor positron emission tomography (PET) studies. In this feasibility study, we used 5-hydroxytryptamine 2A (5-HT2A) receptor PET to test the applicability of maximum cytoarchitectonic probability maps for quantitative analysis. As the outcome parameter, we extracted local distribution volume ratios (DVRs) from 19 cytoarchitectonically defined volumes of interest (VOIs) per hemisphere from five healthy subjects. The experimental design included a forward ('PET to atlas' normalization) and a backward ('atlas to PET' normalization) procedure to double-check the stability of transformation and overlay. Resulting DVRs were compared with receptor densities (RDs) obtained from postmortem [3H]ketanserin autoradiography of multiple areas. Correlations between the bi-directional normalization procedures (r = 0.89; 38 VOIs) as well as between in vivo and vitro data (nine VOIs; r = 0.64 and r = 0.47 for forward and backward procedure, respectively) suggest that the implementation of cytoarchitectonic maximum probability maps is a promising method for an accurate and observer-independent analysis of neuroreceptor PET data.
机译:基于死后组织学研究的细胞结构定义的皮质区域的三维最大概率图(MPM)最近在蒙特利尔神经病学研究所(MNI)单一对象模板的立体定位参考空间中可用。这允许使用细胞结构图来分析体内功能性数据集,包括神经受体正电子发射断层扫描(PET)研究。在这项可行性研究中,我们使用5-羟色胺2A(5-HT2A)受体PET来测试最大细胞结构概率图用于定量分析的适用性。作为结果参数,我们从五个健康受试者的每半球19个细胞结构定义的目标体积(VOI)中提取了局部分布体积比(DVR)。实验设计包括正向(“从PET到图谱”的标准化)和后向(“从PET到图谱的标准化”)程序,以仔细检查变换和叠加的稳定性。将所得DVR与从多个区域的尸检[3H]酮色林放射自显影获得的受体密度(RD)进行比较。双向归一化程序(r = 0.89; 38 VOI)之间以及体内和体外数据之间的相关性(9个VOI;正向和反向程序分别为r = 0.64和r = 0.47)表明细胞结构设计的实施最大概率图是一种对神经受体PET数据进行准确且独立于观察者的分析的有前途的方法。

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