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Mie scatter spectra-based device for instant, contact-free, and specific diagnosis of bacterial skin infection

机译:基于Mie散射光谱的设备可即时,非接触式和特异性诊断细菌性皮肤感染

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摘要

Rapid and specific diagnostic techniques are needed to expedite specific treatment of bacterial skin infections with narrow-spectrum antibiotics, rather than broad-spectrum. Through this work a device was developed to determine the presence of and species responsible for a bacterial skin infection using differences in Mie scatter spectra created by different bacterial species. A 650 nm LED at five different incident angles is used to illuminate the tissue, with Mie scatter being detected by PIN photodiodes at eight different detection angles. Mie scatter patterns are collected at all photodiode angles for each of the incident light angles, resulting in a Mie scatter spectra. Detectable differences in Mie scatter spectra were found using the device developed between commensal bacteria (no infection) and bacteria inoculated (infection) on the surface of both porcine and human cadaveric epidermis. Detectable differences were found between species of infection, specifically Escherichia coli and Staphylococcus aureus, with differences summarized through principle component analysis. Mie scatter spectra can be detected within a few seconds without skin contact. This device is the first to rapidly and specifically diagnose bacterial skin infections in a contact-less manner, allowing for initial treatment with narrow spectrum antibiotics, and helping to reduce the likelihood of resistance.
机译:需要快速而具体的诊断技术来加快使用窄谱抗生素而不是广谱抗生素对细菌性皮肤感染的特异性治疗。通过这项工作,开发了一种设备,可以使用由不同细菌物种产生的Mie散射光谱中的差异来确定细菌皮肤感染的存在和引起细菌皮肤感染的物种。五个不同入射角的650 nm LED用于照射组织,通过PIN光电二极管以八个不同的检测角检测Mie散射。对于每个入射光角度,在所有光电二极管角度收集Mie散射图案,从而产生Mie散射光谱。使用共生细菌(无感染)和猪和人尸体表皮表面接种的细菌(感染)之间开发的装置,发现了Mie散射谱中可检测到的差异。发现感染物种之间存在可检测到的差异,特别是大肠杆菌和金黄色葡萄球菌,并通过主成分分析总结了差异。无需接触皮肤即可在几秒钟内检测出三重散射光谱。该设备是第一种以非接触方式快速,准确地诊断细菌性皮肤感染的设备,可用于窄谱抗生素的初步治疗,并有助于降低耐药性。

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