Department of Anatomy and Neurosciences, Eulji University School of Medicine, Daejeon, Republic of Korea.
J Anat. 2022 Dec;241(6):1477-1488. doi: 10.1111/joa.13757. Epub 2022 Sep 8.
Although the level of neuroscience research is rapidly developing with the introduction of new technologies, the method of neuroanatomy education remains at the traditional level and requires improvement to meet the needs of educators and trainees. We developed a new three-dimensional (3D) printed device (human brain-cutting mold, HBCM) for creating human brain slices; moreover, we demonstrated a simple method for creating semi-permanent ultraviolet (UV) resin-mounted brain slice specimens for neuroanatomy education. We obtained brain slices of uniform thickness (3 mm) through the HBCM; the resultant brain slices were optimal for assessing morphological details of the human brain. Furthermore, we used an agar-embedding method for brain-slicing with the HBCM, which minimized geometrical distortions of the brain slices. Also, we prepared semi-permanent brain serial specimens using an acrylic brain slice frame and UV-curable resin, which was highly compatible with moist bio-specimens. During UV resin curing, neither air bubble formation nor color change occurred. The resultant UV resin-mounted brain slices produced definite coronal sections with high transparency and morphological accuracy. We also performed 3D modeling by stacking brain slice images that differentiated the cortical area and nine subcortical regions via manual segmentation. This method could be a reliable alternative for displaying high-quality human brain slices and would be helpful for students and trainee to understand anatomical orientation from 2D images to 3D structures. Also, this may present an innovative approach for preparing and preserving coronal sections of the normal or pathological human brain.
尽管神经科学研究的水平随着新技术的引入而迅速发展,但神经解剖学教育的方法仍然停留在传统水平,需要改进以满足教育者和学员的需求。我们开发了一种新的三维(3D)打印设备(人脑切片模具,HBCM),用于创建人脑切片;此外,我们展示了一种用于创建半永久性紫外(UV)树脂固定脑切片标本的简单方法,用于神经解剖学教育。我们通过 HBCM 获得了均匀厚度(3mm)的脑切片;所得脑切片非常适合评估人脑的形态学细节。此外,我们使用琼脂包埋法进行 HBCM 脑切片,最大限度地减少了脑切片的几何变形。此外,我们使用丙烯酸脑切片框架和 UV 可固化树脂制备了半永久性脑序列标本,这与湿润的生物标本高度兼容。在 UV 树脂固化过程中,既没有气泡形成,也没有颜色变化。所得的 UV 树脂固定脑切片产生了具有高透明度和形态准确性的明确冠状切片。我们还通过手动分割对脑切片图像进行了 3D 建模,从而区分了皮质区和九个皮质下区域。这种方法可以作为一种可靠的替代方法,用于显示高质量的人脑切片,有助于学生和学员从 2D 图像到 3D 结构理解解剖方向。此外,这可能为准备和保存正常或病理性人脑的冠状切片提供一种创新方法。