Al-Amoudi A, Dubochet J, Gnaegi H, Lüthi W, Studer D
Laboratoire d'Analyse Ultrastructurale, Bâtiment de Biologie, Université de Lausanne, CH-1015 Lausanne, Switzerland.
J Microsc. 2003 Oct;212(Pt 1):26-33. doi: 10.1046/j.1365-2818.2003.01244.x.
A new oscillating cryo-knife for producing uncompressed vitreous sections is introduced. The knife is a modified cryo diamond knife that is driven by a piezo translator. Optimal setting for the oscillation was found to be in the inaudible frequency range of 20-25 kHz. Yeast cells and polystyrene spheres were used as model systems to describe compression in the vitreous sections. We found that compression could be reduced by a factor of about 2 when the knife was oscillating. When the oscillator was turned off, sections were compressed by 40-45%. However, only 15-25% compression was obtained when the knife was oscillating. In some cases completely uncompressed sections of yeast cells were produced. It was also found that the amount of compression depends on the specimen itself and on its embedding medium. With the results shown here, we demonstrate that the oscillating knife can produce high-quality vitreous sections with minimum cutting artefacts.
介绍了一种用于制作未压缩玻璃体切片的新型振荡式冷冻刀。该刀是一种由压电转换器驱动的改良型冷冻金刚石刀。发现振荡的最佳设置处于20 - 25 kHz的不可听频率范围内。使用酵母细胞和聚苯乙烯球体作为模型系统来描述玻璃体切片中的压缩情况。我们发现当刀振荡时,压缩可降低约2倍。当振荡器关闭时,切片被压缩40 - 45%。然而,当刀振荡时,仅获得15 - 25%的压缩。在某些情况下,可制作出酵母细胞的完全未压缩切片。还发现压缩量取决于标本本身及其包埋介质。根据此处所示结果,我们证明振荡刀能够以最小的切割假象制作出高质量的玻璃体切片。