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虚拟神经病理学:中毒性损伤所致病变的三维可视化

Virtual neuropathology: three-dimensional visualization of lesions due to toxic insult.

作者信息

Lester D S, Pine P S, Delnomdedieu M, Johannessen J N, Johnson G A

机构信息

Division of Applied Pharmacology Research, Center for Drug Evaluation and Research, Food and Drug Administration, Laurel, Maryland 20708, USA.

出版信息

Toxicol Pathol. 2000 Jan-Feb;28(1):100-4. doi: 10.1177/019262330002800112.

Abstract

A first-pass approach incorporating high-field magnetic resonance imaging (MRI) was used for rapid detection of neuropathologic lesions in fixed rat brains. This inherently 3-dimensional and nondestructive technique provides high-resolution, high-contrast images of fixed neuronal tissue in the absence of sectioning or staining. This technique, magnetic resonance microscopy (MRM), was used to identify diverse lesions in 2 well-established rat neurotoxicity models. The intrinsic contrast in the images delineated lesions that were identified using a battery of histologic stains, some of which would not be used in routine screening. Furthermore, the MRM images provided the locations of lesions, which were verified upon subsequent sectioning and staining of the same samples. The inherent contrast generated by water properties is exploited in MRM by choosing suitable pulse sequences, or proton stains. This approach provides the potential for a comprehensive initial MRM screen for neurotoxicity in preclinical models with the capability for extrapolation to clinical analyses using classical MRI.

摘要

采用一种结合高场磁共振成像(MRI)的首过方法,用于快速检测固定大鼠脑内的神经病理损伤。这种本质上三维且无损的技术,在不进行切片或染色的情况下,能提供固定神经元组织的高分辨率、高对比度图像。这种技术,即磁共振显微镜(MRM),被用于在两种成熟的大鼠神经毒性模型中识别各种损伤。图像中的固有对比度勾勒出了使用一系列组织学染色剂鉴定出的损伤,其中一些染色剂不会用于常规筛查。此外,MRM图像提供了损伤的位置,在对相同样本进行后续切片和染色时得到了验证。通过选择合适的脉冲序列或质子染色剂,MRM利用了水特性产生的固有对比度。这种方法为临床前模型中的神经毒性提供了全面的初始MRM筛查的潜力,并有能力外推至使用经典MRI的临床分析。

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