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作 者:Daniel Maitethia Memeu Abdallah Merenga Sallorey Ciira Maina Dickson Mwenda Kinyua Daniel Maitethia Memeu;Abdallah Merenga Sallorey;Ciira Maina;Dickson Mwenda Kinyua(Department of Physical Sciences, Meru University of Science and Technology, Meru, Kenya;Department of Physics, Kenyatta University, Nairobi, Kenya;Dedan Kimathi University of Technology, Nyeri, Kenya;Department of Pure and Applied Sciences, Kirinyaga University, Kerugoya, Kenya)
机构地区:[1]Department of Physical Sciences, Meru University of Science and Technology, Meru, Kenya [2]Department of Physics, Kenyatta University, Nairobi, Kenya [3]Dedan Kimathi University of Technology, Nyeri, Kenya [4]Department of Pure and Applied Sciences, Kirinyaga University, Kerugoya, Kenya
出 处:《Open Journal of Clinical Diagnostics》2021年第2期59-75,共17页临床诊断学期刊(英文)
摘 要:Malaria is one of the leading causes of mortality and morbidity in developing countries. Accurate and complete diagnosis is key for effective treatment of the disease. However, mainstream malaria diagnostic techniques suffer from a number of shortcomings. There is therefore an urgent need for development of new and more efficient techniques for malaria diagnosis. In vivo Photoacoustic spectroscopy is an emerging technique, which has great potential of delivering a nearly ideal method for early diagnosis of the disease. The technique promises to be highly sensitive and specific. In this paper, a description of photoacoustic malaria sensing is given. This is followed by a review of photoacoustic-based malaria diagnostic techniques and suggestions for future improvements.Malaria is one of the leading causes of mortality and morbidity in developing countries. Accurate and complete diagnosis is key for effective treatment of the disease. However, mainstream malaria diagnostic techniques suffer from a number of shortcomings. There is therefore an urgent need for development of new and more efficient techniques for malaria diagnosis. In vivo Photoacoustic spectroscopy is an emerging technique, which has great potential of delivering a nearly ideal method for early diagnosis of the disease. The technique promises to be highly sensitive and specific. In this paper, a description of photoacoustic malaria sensing is given. This is followed by a review of photoacoustic-based malaria diagnostic techniques and suggestions for future improvements.
关 键 词:Plasmodium parasites In Vivo CHROMOPHORES HEMOGLOBIN HEMOZOIN Spectroscopic Inversion Time Domain and Frequency Domain Photoacoustics
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