Suppr超能文献

基于紧凑型多孔径相机的空间域成像仪:用于无创烧伤严重程度评估的测试和可行性。

Spatial frequency domain imager based on a compact multiaperture camera: testing and feasibility for noninvasive burn severity assessment.

机构信息

Beckman Laser Institute and Medical Clinic, Univ. of California, Irvine, United States.

Shizuoka Univ., Japan.

出版信息

J Biomed Opt. 2021 Aug;26(8). doi: 10.1117/1.JBO.26.8.086001.

Abstract

SIGNIFICANCE

Spatial frequency domain imaging (SFDI) is a wide-field imaging technique that provides quantitative maps of tissue optical properties. We describe a compact SFDI imager that employs a multispectral compound-eye camera. This design enables simultaneous image acquisition at multiple wavelengths. Such a device has potential for application for quantitative evaluation of superficial tissues by nonspecialists in low-resource settings.

AIM

The aim of this work was to develop a compact SFDI imager for widefield imaging of in-vivo tissue optical properties and verify its ability to measure optical properties of tissue-simulating phantoms and in a preclinical model of burn wounds.

APPROACH

This compound-eye imager was constructed using a CMOS sensor subdivided into multiple regions, each having a bandpass filter and objective lens. The ability of the instrument to image optical properties was compared with (1) a commercial SFDI imager and (2) a laboratory-based system. Initial validation of ability to accurately characterize optical properties was performed using a tissue-simulating optical phantom. It was then applied to an established murine model of thermal contact burn severity. In-vivo measurements of the optical properties of rat skin were performed before and after the application of burns. Histology was used to verify burn severity.

RESULTS

Measurements of the tissue-simulating phantom optical properties made using the compound-eye imager agree with measurements made using the two comparison SFDI devices. For the murine burn model, the burns showed a decrease in the reduced scattering coefficient at all measurement wavelengths compared with preburn measurements at the same locations. This is consistent with previously reported changes in scattering that occur in full-thickness burns.

CONCLUSION

We demonstrate the potential for SFDI to be translated into compact form factor using a compound-eye camera that is capable of obtaining multiple wavelengths channels simultaneously.

摘要

意义

空间域成像(SFDI)是一种宽场成像技术,可提供组织光学特性的定量图谱。我们描述了一种紧凑的 SFDI 成像仪,该成像仪采用多光谱复眼相机。这种设计能够在多个波长同时进行图像采集。这种设备有可能在资源匮乏的环境中由非专业人员对浅层组织进行定量评估。

目的

本工作旨在开发一种紧凑的 SFDI 成像仪,用于对体内组织光学特性进行宽场成像,并验证其测量组织模拟体模和临床前烧伤模型中组织光学特性的能力。

方法

这种复眼成像仪使用 CMOS 传感器构建,该传感器被细分为多个区域,每个区域都有带通滤波器和物镜。该仪器的成像光学性能与(1)商业 SFDI 成像仪和(2)基于实验室的系统进行了比较。使用组织模拟光学体模对准确表征光学特性的能力进行了初步验证。然后将其应用于已建立的热接触烧伤严重程度的小鼠模型。在应用烧伤之前和之后,对大鼠皮肤的光学特性进行了体内测量。组织学用于验证烧伤的严重程度。

结果

使用复眼成像仪对组织模拟体模光学特性的测量结果与两种比较 SFDI 设备的测量结果一致。对于小鼠烧伤模型,与相同位置的烧伤前测量相比,所有测量波长下的烧伤处的散射系数降低。这与全厚度烧伤中发生的散射变化一致。

结论

我们展示了使用复眼相机将 SFDI 转化为紧凑形式的潜力,该相机能够同时获得多个波长通道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8c5/8358666/94b88b91fdd1/JBO-026-086001-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验