Ole Hill, Merve Wollweber, Tobias Biermann, Tammo Ripken, Roland Lachmayer
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We aim at implementing a post processing strategy for correcting SLOT measurements that have errors caused by RI mismatch.</p><p><strong>Approach: </strong>To better understand the problems with poorly matched Ris, simulated SLOT measurements with imperfect RI matching of the sample and medium are performed and presented here. A method to correct distorted measurements was developed and is presented and evaluated. This method is then applied to a sample containing fluorescent polystyrene beads and a sample made of olydimethylsiloxane with embedded fluorescent nanoparticles.</p><p><strong>Results: </strong>From the simulations, it is evident that measurements with an RI mismatch larger than 0.02 and no correction yield considerably worse results compared to perfectly matched measurements. RI mismatches larger than 0.05 make it almost impossible to resolve finer details and structures. By contrast, the simulations imply that a measurement with an RI mismatch of up to 0.1 can still yield reasonable results if the presented correction method is applied. The experiments validate the simulated results for an RI mismatch of about 0.09.</p><p><strong>Conclusions: </strong>The method significantly improves the SLOT image quality for samples with imperfectly matched Ris. 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引用次数: 0
摘要
意义重大:扫描激光光学断层成像(SLOT)是一种体积多模态成像技术,可与光学投影断层成像和计算机断层成像相媲美。图像质量在很大程度上取决于样品和周围介质的折射率(RI)是否匹配,但 RI 匹配通常需要一些努力,而且永远不可能完美。我们的目标是实施一种后处理策略,以纠正因 RI 不匹配而产生误差的 SLOT 测量:为了更好地理解 RI 匹配不佳的问题,我们在此对样品和介质的 RI 匹配不佳的情况下进行了模拟 SLOT 测量。我们开发了一种方法来纠正失真的测量结果,并对其进行了介绍和评估。然后将此方法应用于含有荧光聚苯乙烯珠的样品和由嵌入荧光纳米颗粒的二甲基硅氧烷制成的样品:模拟结果表明,与完全匹配的测量结果相比,RI 失配大于 0.02 且未进行校正的测量结果要差得多。RI 失配大于 0.05 时,几乎无法分辨更精细的细节和结构。相比之下,模拟结果表明,如果采用所介绍的校正方法,RI 误差不超过 0.1 的测量仍能得到合理的结果。实验验证了 RI 误差约为 0.09 时的模拟结果:该方法大大提高了不完全匹配 Ris 的样品的 SLOT 图像质量。虽然完美的 RI 匹配可实现绝对最佳的成像质量,但这些结果为 RI 不匹配的 SLOT 成像铺平了道路,同时保持了较高的图像质量。
Imperfect refractive index matching in scanning laser optical tomography and a method for digital correction.
Significance: Scanning laser optical tomography (SLOT) is a volumetric multi-modal imaging technique that is comparable to optical projection tomography and computer tomography. Image quality is crucially dependent on matching the refractive indexes (RIs) of the sample and surrounding medium, but RI matching often requires some effort and is never perfect.
Aim: Reducing the burden of RI matching between the immersion medium and sample in biomedical imaging is a challenging and interesting task. We aim at implementing a post processing strategy for correcting SLOT measurements that have errors caused by RI mismatch.
Approach: To better understand the problems with poorly matched Ris, simulated SLOT measurements with imperfect RI matching of the sample and medium are performed and presented here. A method to correct distorted measurements was developed and is presented and evaluated. This method is then applied to a sample containing fluorescent polystyrene beads and a sample made of olydimethylsiloxane with embedded fluorescent nanoparticles.
Results: From the simulations, it is evident that measurements with an RI mismatch larger than 0.02 and no correction yield considerably worse results compared to perfectly matched measurements. RI mismatches larger than 0.05 make it almost impossible to resolve finer details and structures. By contrast, the simulations imply that a measurement with an RI mismatch of up to 0.1 can still yield reasonable results if the presented correction method is applied. The experiments validate the simulated results for an RI mismatch of about 0.09.
Conclusions: The method significantly improves the SLOT image quality for samples with imperfectly matched Ris. Although the absolutely best imaging quality will be achieved with perfect RI matching, these results pave the way for imaging in SLOT with RI mismatches while maintaining high image quality.
期刊介绍:
The Journal of Biomedical Optics publishes peer-reviewed papers on the use of modern optical technology for improved health care and biomedical research.