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用于编译多模态全器官图像数据库的大图像显微镜阵列

Large image microscope array for the compilation of multimodality whole organ image databases.

作者信息

Namati Eman, De Ryk Jessica, Thiesse Jacqueline, Towfic Zaid, Hoffman Eric, Mclennan Geoffrey

机构信息

Department of Internal Medicine, University of Iowa Hospitals and Clinics, Iowa City, Iowa 52242, USA.

出版信息

Anat Rec (Hoboken). 2007 Nov;290(11):1377-87. doi: 10.1002/ar.20600.

Abstract

Three-dimensional, structural and functional digital image databases have many applications in education, research, and clinical medicine. However, to date, apart from cryosectioning, there have been no reliable means to obtain whole-organ, spatially conserving histology. Our aim was to generate a system capable of acquiring high-resolution images, featuring microscopic detail that could still be spatially correlated to the whole organ. To fulfill these objectives required the construction of a system physically capable of creating very fine whole-organ sections and collecting high-magnification and resolution digital images. We therefore designed a large image microscope array (LIMA) to serially section and image entire unembedded organs while maintaining the structural integrity of the tissue. The LIMA consists of several integrated components: a novel large-blade vibrating microtome, a 1.3 megapixel peltier cooled charge-coupled device camera, a high-magnification microscope, and a three axis gantry above the microtome. A custom control program was developed to automate the entire sectioning and automated raster-scan imaging sequence. The system is capable of sectioning unembedded soft tissue down to a thickness of 40 microm at specimen dimensions of 200 x 300 mm to a total depth of 350 mm. The LIMA system has been tested on fixed lung from sheep and mice, resulting in large high-quality image data sets, with minimal distinguishable disturbance in the delicate alveolar structures.

摘要

三维结构和功能数字图像数据库在教育、研究和临床医学中有许多应用。然而,迄今为止,除了冷冻切片外,尚无可靠的方法来获取全器官、空间保留的组织学图像。我们的目标是生成一个能够获取高分辨率图像的系统,其微观细节仍能与整个器官在空间上相关联。为实现这些目标,需要构建一个能够实际制作非常精细的全器官切片并收集高放大倍数和分辨率数字图像的系统。因此,我们设计了一种大型图像显微镜阵列(LIMA),用于对整个未包埋的器官进行连续切片和成像,同时保持组织的结构完整性。LIMA由几个集成组件组成:一种新型大刀片振动切片机、一台130万像素的珀耳帖冷却电荷耦合器件相机、一台高倍显微镜以及切片机上方的一个三轴龙门架。开发了一个定制控制程序,以自动化整个切片和自动光栅扫描成像序列。该系统能够对尺寸为200×300毫米、总深度为350毫米的未包埋软组织进行切片,切片厚度可达40微米。LIMA系统已在绵羊和小鼠的固定肺上进行了测试,生成了大量高质量图像数据集,在精细的肺泡结构中几乎没有明显的干扰。

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