机译:食蟹猴胎儿前脑的沟纹和皮层下结构的发展:7特斯拉磁共振成像可提供高再现性的总体结构变化
Laboratory of Anatomy Department of Physical Therapy Faculty of Medical and Health Sciences Tsukuba International University Tsuchiura Ibaraki 300-0051 Japan;
Regulation Science Research Group National Institute of Radiological Sciences Chiba 263-8555 Japan;
Shin Nippon Biomedical Laboratories Kagoshima 891-1394 Japan;
Shin Nippon Biomedical Laboratories Kagoshima 891-1394 Japan;
Department of Anatomy and Developmental Neurobiology University of Tokushima Graduate School Institute of Health Biosciences Tokushima 770-8503 Japan;
Shin Nippon Biomedical Laboratories Kagoshima 891-1394 Japan;
MR Molecular Imaging Team Molecular Imaging Center National Institute of Radiological Sciences Chiba 263-8555 Japan;
Department of Anatomy and Developmental Neurobiology University of Tokushima Graduate School Institute of Health Biosciences Tokushima 770-8503 Japan;
Primate; Macaque; Phylogeny; Fetus; Brain; MRI;
机译:食蟹猴胎儿前脑的沟纹和皮层下结构的发展:7特斯拉磁共振成像可提供高再现性的总体结构变化。
机译:食蟹猴(Macaca fascicularis)胎儿的脑沟和回旋神经发育。二。大体观察内侧表面。
机译:食蟹猴(Macaca fascicularis)胎儿的脑沟和回旋神经发育。二。大体观察内侧表面
机译:基于多层技术的紧凑型电磁带隙结构,用于7-Tesla磁共振成像应用
机译:皮层下白质途径的定位和评估与扩散张量磁共振成像。
机译:衍生自7-Tesla磁共振图像的次区域小梁骨微架构措施的再现性
机译:神经杀菌和磁共振成像对实验室灵长类动物大脑舒尔密度的正常发育参考,Cynomolgus猴(Macaca Fascicularis)