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大脑海马沟立体定位数据集的构建及投影回归分析
引用本文:丁琳,王震寰,孙美群,张顺花,曹承亮,方美芳,荀丽雪.大脑海马沟立体定位数据集的构建及投影回归分析[J].蚌埠医学院学报,2023,48(1):51-54.
作者姓名:丁琳  王震寰  孙美群  张顺花  曹承亮  方美芳  荀丽雪
作者单位:1.蚌埠医学院 临床应用解剖研究所, 数字医学与智慧健康安徽省重点实验室, 安徽 蚌埠 2330302.蚌埠医学院 人体解剖与组织胚胎学教研室, 安徽 蚌埠 2330303.蚌埠医学院 医学影像学院, 安徽 蚌埠 2330304.蚌埠医学院第一附属医院 放射科, 安徽 蚌埠 233004
基金项目:安徽省高校重点实验室项目皖教秘科[2019]9号
摘    要:目的构建大脑海马沟基于连合间径(AC-PC)定位体系中的立体定位数据集及其平面投影回归方程。方法将30名健康成年人颅脑横断层MRI数据经格式转化导入Photoshop CS软件包,经过严格的图像配准,建立以AC-PC中点为原点的三维立体坐标系,获取海马沟在脑MRI冠状面图像上的三维立体坐标值,以海马沟的最外侧点为起始点,记录该点坐标的X、Z值,其在软件的信息面板中直接显示,Y值为该图像所在层面与AC-PC层面间隔的层数乘以层间距,所有取样点坐标值构成大脑海马沟在三维坐标系中的立体定位数据集。利用SPSS25.0对所获取的取样点数据进行统计处理,求解其投影回归方程。结果成功构建大脑海马沟在在三维坐标系中的立体定位数据集及其在横断、矢状、冠状面上的投影回归方程。冠状面上Z值对X值回归方程,右侧: Z=-46.379-0.302X(P < 0.05), 左侧: Z=-49.512+0.425X(P < 0.05);横断面上Y值对X值回归方程,右侧: Y=-0.380-0.198X(P>0.05), 左侧: Y=2.982+0.106X(P>0.05);矢状面上Z值对Y值回归方程,右侧Z=-38.501+0.416Y(P < 0.01), 左侧: Z=-36.793+0.326Y(P < 0.01)。结论大脑海马沟横断、冠状及矢状面的三维坐标值间的相关关系较不密切。构建的海马沟立体定位数据集可为海马区域病灶定位及该区域脑立体定向手术的靶点确定、手术路径规划提供精确的影像解剖学数据。

关 键 词:海马沟    立体定位    回归分析
收稿时间:2022-07-06

Construction of stereotactic localization data set and projection regression analysis of hippocampal sulcus
Affiliation:1.Institute of Clinical Anatomy, Key Laboratory of Digital Medicine and Smart Health, Bengbu Medical College, Bengbu Anhui 2300302.Department of Histology and Embryology, Bengbu Medical College, Bengbu Anhui 2300303.School of Medical Imaging, Bengbu Medical College, Bengbu Anhui 2330304.Department of Radiology, The First Affiliated Hospital of Bengbu Medical College, Bengbu Anhui 233004, China
Abstract:ObjectiveTo construct the stereotatic localization data set and its plane projection regression equation of the hippocampal sulcus based on the AC-PC localization system.MethodsThe transverse tomography data of 30 healthy adults were imported into Photoshop CS software package by format transformation.After strict image registration, a three-dimensional sitting system with AC-PC midpoint as the origin was established to obtain the three-dimensional coordinate values of hippocampal sulcus in the coronal plane images of brain.Taking the outermost point of the hippocampal sulcus as the starting point, record the X-value and Z-value, which were directly displayed in the information panel of the software, and the Y-value was the product of the number of layers between the image layer and AC-PC plane and interlayer spacing.The stereotactic data set of the hippocampal sulcus in a three-dimensional coordinate system were constituted by all the coordinate values of sample points.The SPSS25.0 software was used to calculate the obtained sampling point data, and solve the projection regression equation.ResultsThe stereotaxic dataset of the hippocampal sulcus in the three-dimensional coordinate system and its projection regression equation on the transverse, sagittal and coronal planes were successfully constructed.On the right side of the regression equation of Z-value to X-value on the coronal plane: Z=-46.379-0.302X(P < 0.05), on the left side: Z=-49.512+0.425X(P < 0.05).On the right side of the regression equation of Y-value to X-value on the transverse plane: Y=-0.380-0.198X(P>0.05), on the left side: Y=2.982+0.106X(P>0.05).On the right side of the regression equation of Z-value to Y-value on the sagittal plane: Z=-38.501+0.416Y(P < 0.01), on the left side: Z=-36.793+0.326Y(P < 0.01).ConclusionsThe correlation among the three-dimensional coordinate values of the transverse, coronal and sagittal plane of the hippocampal sulcus of the brain is not close.The stereotactic localization data set of the hippocampal sulcus provides accurate image anatomical data for the localization of lesions, the target determination and surgical path planning of stereotactic surgery in the hippocampal region.
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