FTMS Laboratory for Human Health Research, Department of Chemistry, North Carolina State University, Raleigh, North Carolina, USA.
J Mass Spectrom. 2023 May;58(5):e4914. doi: 10.1002/jms.4914. Epub 2023 Mar 14.
Biospecimens with nearly flat surfaces on a flat stage are typically required for laser-based mass spectrometry imaging (MSI) techniques. However, sampling stages are rarely perfectly level, and accounting for this and the need to accommodate non-flat samples requires a deeper understanding of the laser beam depth of focus. In ablation-based MSI methods, a laser is focused on top of the sample surface, ensuring that the sample is at the focal point or remains within depth of focus. In general, the depth of focus of a given laser is related to the beam quality (M ) and the wavelength (λ). However, because laser is applied on a biological sample, other variables can also impact the depth of focus, which could affect the robustness of the MSI techniques for diverse sample types. When the height of a sample ranges outside of the depth of focus, ablated area and the corresponding ion abundances may vary as well, increasing the variability of results. In this tutorial, we examine the parameters and equations that describe the depth of focus of a Gaussian laser beam. Additionally, we describe several approaches that account for surface roughness exceeding the depth of focus of the laser.
对于基于激光的质谱成像 (MSI) 技术,通常需要具有近乎平坦表面的生物标本在平坦的载物台上进行操作。然而,采样载物台很少是完全水平的,为了考虑到这一点以及适应非平坦样本的需要,我们需要更深入地了解激光束的景深。在基于消融的 MSI 方法中,激光聚焦在样品表面上方,以确保样品处于焦点或在景深范围内。通常,给定激光的景深与光束质量 (M) 和波长 (λ) 有关。然而,由于激光应用于生物样品,其他变量也会影响景深,这可能会影响不同类型样品的 MSI 技术的稳健性。当样品的高度超出景深范围时,消融区域和相应的离子丰度也可能会发生变化,从而增加结果的可变性。在本教程中,我们将研究描述高斯激光束景深的参数和方程。此外,我们还描述了几种方法,这些方法可以考虑超过激光景深的表面粗糙度。