Pinsard Maxime, Schmeltz Margaux, van der Kolk Jarno, Patten Shunmoogum A, Ibrahim Heide, Ramunno Lora, Schanne-Klein Marie-Claire, Légaré François
Institut National de la Recherche Scientifique, Centre Énergie Matériaux Télécommunications (INRS-EMT); 1650 Boul. Lionel-Boulet, Varennes (QC), J3X 1S2, Canada.
Laboratoire d'Optique et Biosciences (LOB), École Polytechnique, CNRS, Inserm, Institut Polytechnique de Paris, F-91128 Palaiseau, France.
Biomed Opt Express. 2019 Jul 12;10(8):3938-3952. doi: 10.1364/BOE.10.003938. eCollection 2019 Aug 1.
Conventional second harmonic generation (SHG) microscopy might not clearly reveal the structure of complex samples if the interference between all scatterers in the focal volume results in artefactual patterns. We report here the use of interferometric second harmonic generation (I-SHG) microscopy to efficiently remove these artifacts from SHG images. Interfaces between two regions of opposite polarity are considered because they are known to produce imaging artifacts in muscle for instance. As a model system, such interfaces are first studied in periodically-poled lithium niobate (PPLN), where an artefactual incoherent SH signal is obtained because of irregularities at the interfaces, that overshadow the sought-after coherent contribution. Using I-SHG allows to remove the incoherent part completely without any spatial filtering. Second, I-SHG is also proven to resolve the double-band pattern expected in muscle where standard SHG exhibits in some regions artefactual single-band patterns. In addition to removing the artifacts at the interfaces between antiparallel domains in both structures (PPLN and muscle), I-SHG also increases their visibility by up to a factor of 5. This demonstrates that I-SHG is a powerful technique to image biological samples at enhanced contrast while suppressing artifacts.
如果焦体积内所有散射体之间的干涉导致伪影图案,传统的二次谐波产生(SHG)显微镜可能无法清晰地揭示复杂样品的结构。我们在此报告使用干涉二次谐波产生(I-SHG)显微镜从SHG图像中有效去除这些伪影。考虑到极性相反的两个区域之间的界面,例如在肌肉中已知它们会产生成像伪影。作为一个模型系统,首先在周期性极化铌酸锂(PPLN)中研究此类界面,由于界面处的不规则性,会获得非相干的SH伪信号,这掩盖了所寻求的相干贡献。使用I-SHG可以完全去除非相干部分,而无需任何空间滤波。其次,I-SHG也被证明能够分辨肌肉中预期的双波段图案,而标准SHG在某些区域呈现伪单波段图案。除了去除两种结构(PPLN和肌肉)中反平行畴之间界面处的伪影外,I-SHG还将它们的可见性提高了多达5倍。这表明I-SHG是一种强大的技术,可在抑制伪影的同时以增强的对比度对生物样品进行成像。