Suchand Sandeep C S, Khairyanto Ahmad, Aung Tin, Vadakke Matham Murukeshan
Centre for Optical and Laser Engineering, School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore 639798, Singapore.
Singapore Eye Research Institute, Singapore National Eye Centre, Singapore 169856, Singapore.
Micromachines (Basel). 2023 Aug 27;14(9):1672. doi: 10.3390/mi14091672.
The achievable resolution of a conventional imaging system is inevitably limited due to diffraction. Dealing with precise imaging in scattering media, such as in the case of biomedical imaging, is even more difficult owing to the weak signal-to-noise ratios. Recent developments in non-diffractive beams such as Bessel beams, Airy beams, vortex beams, and Mathieu beams have paved the way to tackle some of these challenges. This review specifically focuses on non-diffractive Bessel beams for ophthalmological applications. The theoretical foundation of the non-diffractive Bessel beam is discussed first followed by a review of various ophthalmological applications utilizing Bessel beams. The advantages and disadvantages of these techniques in comparison to those of existing state-of-the-art ophthalmological systems are discussed. The review concludes with an overview of the current developments and the future perspectives of non-diffractive beams in ophthalmology.
由于衍射,传统成像系统所能达到的分辨率不可避免地受到限制。在散射介质中进行精确成像,比如生物医学成像的情况,由于信噪比低而更加困难。诸如贝塞尔光束、艾里光束、涡旋光束和马蒂厄光束等非衍射光束的最新进展为应对其中一些挑战铺平了道路。本综述特别关注用于眼科应用的非衍射贝塞尔光束。首先讨论非衍射贝塞尔光束的理论基础,随后回顾利用贝塞尔光束的各种眼科应用。讨论了这些技术与现有最先进眼科系统相比的优缺点。综述最后概述了非衍射光束在眼科领域的当前发展情况和未来前景。