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用于白质纤维解剖的选定脑组织制备方案的组织学结果评估。

Histological outcome evaluation of selected brain preparation protocols for white fiber dissection.

机构信息

Department of Neurosurgery, Fukushima Medical University.

Department of Neurosurgery, Aichi Medical University.

出版信息

Fukushima J Med Sci. 2024 Oct 18;70(4):203-209. doi: 10.5387/fms.23-00016. Epub 2024 Oct 4.

Abstract

BACKGROUND

White fiber dissection is essential for studying brain connections. However, preparation protocols have not been validated.

METHODS

We microstructurally analyzed Klingler's brain preparation method and freezing process and assessed changes under two protocols:freeze-only and freeze-thaw. The microstructure changes of these protocols were evaluated by measuring the ratio of the total gap area to the white matter area and determining the mean eccentricity value to assess the degree of anisotropy.

RESULTS

Sixty hemispheres were allocated to ten different freezing protocols. In the freeze-only protocols, the total gap area ratio was significantly higher compared to that of specimens fixed with only formaldehyde, particularly after continuous freezing for 3-4 weeks;however, the difference in eccentricity was not significant. In the freeze-thaw protocols, both the area ratio and eccentricity were significantly higher compared to the freeze-only. The optimum degree of fiber separation in the freeze-thaw protocols reached its peak with four cycles of 1-week freezing periods interrupted by six hours of thawing.

CONCLUSION

The Klingler method assists in the separation of the white fibers through the gaps formed by ice crystals, but an appropriate degree of anisotropy is reached when the freezing protocol is interrupted by at least four thawing cycles.

摘要

背景

白色纤维解剖对于研究大脑连接至关重要。然而,其制备方案尚未得到验证。

方法

我们对 Klingler 的脑制备方法和冷冻过程进行了微观分析,并评估了两种方案(仅冷冻和冷冻-解冻)下的变化。通过测量总间隙面积与白质面积的比值以及确定平均偏心率值来评估各方案下的微观结构变化,以此评估各方案的各向异性程度。

结果

将 60 个半脑分配到 10 种不同的冷冻方案中。在仅冷冻的方案中,总间隙面积比与仅用甲醛固定的标本相比显著更高,尤其是在连续冷冻 3-4 周后;然而,偏心率的差异并不显著。在冷冻-解冻的方案中,无论是面积比还是偏心率,均明显高于仅冷冻的方案。在冷冻-解冻的方案中,当冷冻方案至少中断四个解冻周期时,纤维分离的最佳程度达到峰值。

结论

Klingler 方法通过冰晶形成的间隙来辅助分离白色纤维,但在至少四个解冻周期的中断下,可达到适当的各向异性程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86a5/11625853/234334aae3e3/2185-4610-70-203-g001.jpg

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