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用于组织成像以克服镜面反射的微型相机可视化系统。

Microcamera Visualisation System to Overcome Specular Reflections for Tissue Imaging.

作者信息

Niemitz Lorenzo, van der Stel Stefan D, Sorensen Simon, Messina Walter, Venkata Sekar Sanathana Konugolu, Sterenborg Henricus J C M, Andersson-Engels Stefan, Ruers Theo J M, Burke Ray

机构信息

Biophotonics @ Tyndall, IPIC, Tyndall National Institute, University College Cork, T12 R5CP Cork, Ireland.

Netherlands Cancer Institute-Antoni van Leeuwenhoek, 1066 CX Amsterdam, The Netherlands.

出版信息

Micromachines (Basel). 2023 May 17;14(5):1062. doi: 10.3390/mi14051062.

Abstract

In vivo tissue imaging is an essential tool for medical diagnosis, surgical guidance, and treatment. However, specular reflections caused by glossy tissue surfaces can significantly degrade image quality and hinder the accuracy of imaging systems. In this work, we further the miniaturisation of specular reflection reduction techniques using micro cameras, which have the potential to act as intra-operative supportive tools for clinicians. In order to remove these specular reflections, two small form factor camera probes, handheld at 10 mm footprint and miniaturisable to 2.3 mm, are developed using different modalities, with line-of-sight to further miniaturisation. (1) The sample is illuminated via multi-flash technique from four different positions, causing a shift in reflections which are then filtered out in a post-processing image reconstruction step. (2) The cross-polarisation technique integrates orthogonal polarisers onto the tip of the illumination fibres and camera, respectively, to filter out the polarisation maintaining reflections. These form part of a portable imaging system that is capable of rapid image acquisition using different illumination wavelengths, and employs techniques that lend themselves well to further footprint reduction. We demonstrate the efficacy of the proposed system with validating experiments on tissue-mimicking phantoms with high surface reflection, as well as on excised human breast tissue. We show that both methods can provide clear and detailed images of tissue structures along with the effective removal of distortion or artefacts caused by specular reflections. Our results suggest that the proposed system can improve the image quality of miniature in vivo tissue imaging systems and reveal underlying feature information at depth, for both human and machine observers, leading to better diagnosis and treatment outcomes.

摘要

体内组织成像对于医学诊断、手术指导和治疗而言是一项至关重要的工具。然而,光滑组织表面引起的镜面反射会显著降低图像质量,并妨碍成像系统的准确性。在这项工作中,我们利用微型相机进一步推进镜面反射减少技术的小型化,微型相机有潜力成为临床医生术中的辅助工具。为了消除这些镜面反射,我们开发了两种小型相机探头,手持时占地面积为10毫米,可小型化为2.3毫米,采用不同模式,并着眼于进一步小型化。(1)通过多闪光技术从四个不同位置照亮样本,使反射发生偏移,然后在图像重建的后处理步骤中将其滤除。(2)交叉偏振技术分别将正交偏振器集成到照明光纤和相机的尖端,以滤除保持偏振的反射。这些构成了一个便携式成像系统的一部分,该系统能够使用不同的照明波长快速采集图像,并采用了有助于进一步减小占地面积的技术。我们通过对具有高表面反射的组织模拟体模以及切除的人体乳腺组织进行验证实验,证明了所提出系统的有效性。我们表明,这两种方法都可以提供组织结构的清晰详细图像,并有效消除由镜面反射引起的失真或伪影。我们的结果表明,所提出的系统可以提高微型体内组织成像系统的图像质量,并为人类和机器观察者揭示深度的潜在特征信息,从而带来更好的诊断和治疗结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00f8/10221823/502d6f8e7771/micromachines-14-01062-g001.jpg

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