眼内透镜的台架评估:商用干涉仪的性能。

IF 2.9 2区 医学 Q2 BIOCHEMICAL RESEARCH METHODS Biomedical optics express Pub Date : 2024-10-29 eCollection Date: 2024-11-01 DOI:10.1364/BOE.540514
Noé Villemagne, Luc Joannes, Benjamin Stern, Damien Gatinel
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引用次数: 0

摘要

NIMO-TEMPO 是一种计量设备,可测量眼科市场上所有类型的眼内透镜。其技术以干涉测量为基础,捕捉镜片的波面,计算出对评估镜片质量和了解其特性至关重要的光学结果。本研究旨在证明该设备及其相关软件 TEMPO-MENTOR 在测量眼内透镜方面的可靠性。分析的基础是比较光学设计的理论结果和设备算法计算的数据。NIMO-TEMPO 提供的结果还通过另一种计量设备进行了验证。
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On bench evaluation of intraocular lenses: performance of a commercial interferometer.

NIMO-TEMPO is a metrology device that measures all types of intraocular lenses available in the ophthalmic market. Its technology, based on interferometry, captures the wavefront of the lens to compute optical results essential to evaluate its quality and understand its characteristics. This study aims to demonstrate the reliability of this device and its associated software, TEMPO-MENTOR, in measuring intraocular lenses. The analysis is based on comparing the theoretical results of the optical design and data computed by the device algorithm. Results provided with NIMO-TEMPO are also validated using another metrology device.

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来源期刊
Biomedical optics express
Biomedical optics express BIOCHEMICAL RESEARCH METHODS-OPTICS
CiteScore
6.80
自引率
11.80%
发文量
633
审稿时长
1 months
期刊介绍: The journal''s scope encompasses fundamental research, technology development, biomedical studies and clinical applications. BOEx focuses on the leading edge topics in the field, including: Tissue optics and spectroscopy Novel microscopies Optical coherence tomography Diffuse and fluorescence tomography Photoacoustic and multimodal imaging Molecular imaging and therapies Nanophotonic biosensing Optical biophysics/photobiology Microfluidic optical devices Vision research.
期刊最新文献
Super resolution reconstruction of fluorescence microscopy images by a convolutional network with physical priors. Physics-guided deep learning-based real-time image reconstruction of Fourier-domain optical coherence tomography. On bench evaluation of intraocular lenses: performance of a commercial interferometer. Predictive coding compressive sensing optical coherence tomography hardware implementation. Development of silicone-based phantoms for biomedical optics from 400 to 1550 nm.
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