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Identification of pathogenic bacteria in complex samples using a smartphone based fluorescence microscope.使用基于智能手机的荧光显微镜鉴定复杂样本中的病原菌。
RSC Adv. 2018 Oct 29;8(64):36493-36502. doi: 10.1039/c8ra06473c. eCollection 2018 Oct 26.
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Smartphone-based optical spectroscopic platforms for biomedical applications: a review [Invited].用于生物医学应用的基于智能手机的光学光谱平台:综述[特邀]
Biomed Opt Express. 2021 Mar 10;12(4):1974-1998. doi: 10.1364/BOE.416753. eCollection 2021 Apr 1.
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The Role of Porphyrinoid Photosensitizers for Skin Wound Healing.卟啉类光敏剂在皮肤创伤愈合中的作用。
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Smartphone-based imaging systems for medical applications: a critical review.基于智能手机的医学应用成像系统:批判性评价。
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Pocket MUSE: an affordable, versatile and high-performance fluorescence microscope using a smartphone.口袋显微镜:使用智能手机的经济实惠、多功能且高性能的荧光显微镜。
Commun Biol. 2021 Mar 12;4(1):334. doi: 10.1038/s42003-021-01860-5.
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Evidence in the UK Biobank for the underdiagnosis of erythropoietic protoporphyria.英国生物银行中存在红细胞生成性原卟啉症漏诊的证据。
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Diagnostic Accuracy of Point-of-Care Fluorescence Imaging for the Detection of Bacterial Burden in Wounds: Results from the 350-Patient Fluorescence Imaging Assessment and Guidance Trial.即时荧光成像检测伤口细菌负荷的诊断准确性:来自 350 例患者的荧光成像评估和指导试验的结果。
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Point-of-care, multispectral, smartphone-based dermascopes for dermal lesion screening and erythema monitoring.基于智能手机的即时、多光谱皮肤镜,用于皮肤病变筛查和红斑监测。
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Clinical evaluation of smartphone-based fluorescence imaging for guidance and monitoring of ALA-PDT treatment of early oral cancer.基于智能手机的荧光成像在指导和监测早期口腔癌 ALA-PDT 治疗中的临床评价。
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Development of Low-Cost Point-of-Care Technologies for Cervical Cancer Prevention Based on a Single-Board Computer.基于单板计算机的低成本宫颈癌预防即时检测技术的开发
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使用内置光学器件的超紧凑型荧光智能手机附件用于皮肤中原卟啉-IX的定量分析。

Ultracompact fluorescence smartphone attachment using built-in optics for protoporphyrin-IX quantification in skin.

作者信息

Hunt Brady, Streeter Samuel S, Ruiz Alberto J, Chapman M Shane, Pogue Brian W

机构信息

Thayer School of Engineering, Dartmouth College, Hanover, New Hampshire 03755, USA.

Geisel School of Medicine, Department of Dermatology, Hanover, New Hampshire 03755, USA.

出版信息

Biomed Opt Express. 2021 Oct 19;12(11):6995-7008. doi: 10.1364/BOE.439342. eCollection 2021 Nov 1.

DOI:10.1364/BOE.439342
PMID:34858694
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8606126/
Abstract

Smartphone-based fluorescence imaging systems have the potential to provide convenient quantitative image guidance at the point of care. However, common approaches have required the addition of complex optical attachments, which reduce translation potential. In this study, a simple clip-on attachment appropriate for fluorescence imaging of protoporphyrin-IX (PpIX) in skin was designed using the built-in light source and ultrawide camera sensor of a smartphone. Software control for image acquisition and quantitative analysis was developed using the 10-bit video capability of the phone. Optical performance was characterized using PpIX in liquid tissue phantoms and endogenously produced PpIX in mice and human skin. The proposed system achieves a very compact form factor (<30 cm) and can be readily fabricated using widely available low-cost materials. The limit of detection of PpIX in optical phantoms was <10 nM, with good signal linearity from 10 to 1000 nM (R >0.99). Both murine and human skin imaging verified that in vivo PpIX fluorescence was detected within 1 hour of applying aminolevulinic acid (ALA) gel. This ultracompact handheld system for quantification of PpIX in skin is well-suited for dermatology clinical workflows. Due to its simplicity and form factor, the proposed system can be readily adapted for use with other smartphone devices and fluorescence imaging applications. Hardware design and software for the system is made freely available on GitHub (https://github.com/optmed/CompactFluorescenceCam).

摘要

基于智能手机的荧光成像系统有潜力在护理点提供便捷的定量图像引导。然而,常见方法需要添加复杂的光学附件,这降低了其转化应用的潜力。在本研究中,利用智能手机的内置光源和超广角相机传感器,设计了一种适用于皮肤中原卟啉-IX(PpIX)荧光成像的简单夹式附件。利用手机的10位视频功能开发了用于图像采集和定量分析的软件控制。使用液体组织模型中的PpIX以及小鼠和人类皮肤中内源性产生的PpIX对光学性能进行了表征。所提出的系统实现了非常紧凑的外形尺寸(<30厘米),并且可以使用广泛可得的低成本材料轻松制造。光学模型中PpIX的检测限<10 nM,在10至1000 nM范围内具有良好的信号线性(R>0.99)。小鼠和人类皮肤成像均证实,在涂抹氨基乙酰丙酸(ALA)凝胶后1小时内检测到了体内PpIX荧光。这种用于定量皮肤中PpIX的超紧凑型手持系统非常适合皮肤科临床工作流程。由于其简单性和外形尺寸,所提出的系统可以很容易地适用于其他智能手机设备和荧光成像应用。该系统的硬件设计和软件可在GitHub(https://github.com/optmed/CompactFluorescenceCam)上免费获取。