Eberle Anna Lena, Selchow Olaf, Thaler Marlene, Zeidler Dirk, Kirmse Robert
Carl Zeiss Microscopy GmbH, Carl-Zeiss-Promenade 10, Jena 07745, Germany.
Carl Zeiss Microscopy GmbH, Carl-Zeiss-Promenade 10, Jena 07745, Germany
Microscopy (Oxf). 2015 Feb;64(1):45-55. doi: 10.1093/jmicro/dfu104. Epub 2014 Dec 26.
Charting and understanding the full wiring diagram of complex neuronal structures such as the central nervous system or the brain (Connectomics) is one of the big remaining challenges in life sciences. Although at first it appears nearly impossible to map out a full diagram of, e.g., a mouse brain with sufficient resolution to identify each and every connection between neurons, recent technological advances move such an ambitious undertaking into the realms of possibility without spending decades at a microscope. However there are still many challenges to address in order to pave the way for fast and systematic neurobiological understanding of whole networks. These challenges range from a more robust and reproducible sample preparation to automated image data acquisition, more efficient data storage strategies and powerful data analysis tools. Here we will review novel imaging techniques developed for the challenge of mapping out the full connectome of a nervous system, brain or eye to name just a few examples. The imaging techniques reviewed cover light sheet illumination methods, single and multi-beam scanning electron microscopy, and we will briefly mention the possible combination of both light and electron microscopy. In particular we will review 'clearing' and in vivo methods that can be performed with light sheet fluroescence microscopes such as the ZEISS Lightsheet Z.1. We will then focus on scanning electron microscopy with single and multi-beam instruments including methods such as serial blockface imaging and array tomography methods.
绘制并理解诸如中枢神经系统或大脑等复杂神经元结构的完整线路图(连接组学)是生命科学中尚存的重大挑战之一。尽管乍一看,要绘制出例如具有足够分辨率以识别神经元之间每一个连接的小鼠大脑完整图谱几乎是不可能的,但最近的技术进步使这样一项雄心勃勃的任务进入了可能的领域,而无需在显微镜前花费数十年时间。然而,为了为对整个网络进行快速且系统的神经生物学理解铺平道路,仍有许多挑战需要应对。这些挑战包括从更稳健且可重复的样本制备到自动图像数据采集、更高效的数据存储策略以及强大的数据分析工具等。在这里,我们将回顾为应对绘制神经系统、大脑或眼睛等完整连接组这一挑战而开发的新型成像技术,仅举几个例子。所回顾的成像技术涵盖光片照明方法、单束和多束扫描电子显微镜,并且我们将简要提及光镜和电镜的可能组合。特别是,我们将回顾可使用诸如蔡司光片显微镜Z.1等光片荧光显微镜进行的“清除”和体内方法。然后,我们将重点关注使用单束和多束仪器的扫描电子显微镜,包括连续块面成像和阵列断层扫描方法等。