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επιστημονικό άρθρο 2017 nî lūn-bûn บทความทางวิทยาศาสตร์ 2017年学术文章 2017年学术文章 מאמר מדעי artículu científicu article scientific artikulong pang-agham научни чланак наукова стаття, опублікована в листопаді 2017 scientific article published on 27 November 2017 2017年学术文章 научна статия 2017年学术文章 vitenskapelig artikkel articolo scientifico artigo científico ২৭ নভেম্বর ২০১৭-এ প্রকাশিত বৈজ্ঞানিক নিবন্ধ teaduslik artikkel 2017年の論文 научни чланак 2017年學術文章 videnskabelig artikel 2017年學術文章 2017年學術文章 wetenschappelijk artikel article scientifique 2017年学术文章 vetenskaplig artikel vedecký článok научная статья artikel ilmiah мақолаи илмӣ bilimsel makale tieteellinen artikkeli artigo científico wissenschaftlicher Artikel artículo científico publicado en 2017 სამეცნიერო სტატია naučni članak 2017年學術文章 articol științific artikull shkencor مقالة علمية نشرت في 27 نوفمبر 2017 artykuł naukowy scientific article published on 27 November 2017 vědecký článek bài báo khoa học 2017年學術文章 2017년 논문 scienca artikolo scientific article published on 27 November 2017 article científic vitskapeleg artikkel artigo científico tudományos cikk 2017年学术文章
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Acoustophoretic separation of infected erythrocytes from blood plasma in a microfluidic platform using biofunctionalized, matched-impedance layers. Acoustophoretic separation of infected erythrocytes from blood plasma in a microfluidic platform using biofunctionalized, matched-impedance layers.
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Acoustophoretic separation of infected erythrocytes from blood plasma in a microfluidic platform using biofunctionalized, matched-impedance layers. Acoustophoretic separation of infected erythrocytes from blood plasma in a microfluidic platform using biofunctionalized, matched-impedance layers.
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Acoustophoretic separation of infected erythrocytes from blood plasma in a microfluidic platform using biofunctionalized, matched-impedance layers. Acoustophoretic separation of infected erythrocytes from blood plasma in a microfluidic platform using biofunctionalized, matched-impedance layers.
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Acoustophoretic separation of infected erythrocytes from blood plasma in a microfluidic platform using biofunctionalized, matched-impedance layers
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