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Laser sources in multiphoton microscopy: overview and optimization

机译:多光子显微镜中的激光源:概述和优化

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Multiphoton microscopy (MPM) is a recent method of imaging especially adapted to the imaging of samples of life sciences thanks to its ability to generate 3D images, with an interesting contrast and a low level of photodamage thanks to the range of wavelengths involved in the near infrared. This last point is crucial in the field of laser source development. Indeed, it has been recently identified that many new laser sources are adapted in their parameters to generate images by a multiphoton process. This results in the recent and fast increase of the quantity of laser sources especially dedicated to MPM with sometimes a focus on a specific multiphoton process. This article is an updated review of the laser sources involved in MPM in order to complete the previous one already published in 2017. Now, a focus on the new laser sources that can be listed during the two last years is proposed. We can see that a ten of drastically different and new laser sources are listed during the two last years. Is MPM dedicated to biomedical application a sufficiently broad topic with a sufficiently high level of market allowing to warrant such high level of investment in research-time and in laser development with the highest performances? Would not there be other scientific fields requiring such level of investments? Are these laser performances really identified and considered at their true level by the scientists who need MPM?
机译:多光子显微镜(MPM)是一种最新的成像方法,由于它具有生成3D图像的能力,特别适合生命科学样品的成像,并且由于附近涉及的波长范围而具有有趣的对比度和低水平的光损伤红外线的。最后一点在激光源开发领域至关重要。实际上,最近已经确定,许多新的激光源的参数都经过修改,可以通过多光子过程生成图像。这导致最近特别是MPM专用的激光源数量迅速增加,有时重点放在特定的多光子工艺上。本文是对参与MPM的激光源的最新回顾,以完成上一份已于2017年发布的激光源。现在,我们将重点介绍可以在最近两年内列出的新激光源。我们可以看到,在过去的两年中,列出了十种完全不同的新激光源。 MPM致力于生物医学应用,是否具有足够高的市场水平,足够广泛的主题,从而可以保证在研究时间和具有最高性能的激光开发方面进行如此高水平的投资?不会有其他科学领域需要这种投资水平吗?需要MPM的科学家是否真正识别并考虑了这些激光性能的真实水平?

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