Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Kedar Vyavahare"'
Autor:
Joseph Wang, David A. Haake, Emil Paleček, Filiz Kuralay, Kedar Vyavahare, Martin Bartošík, M. Jesus Lobo‐Castañon, Susana Campuzano
Publikováno v:
RUO. Repositorio Institucional de la Universidad de Oviedo
instname
instname
Detection of specific DNA sequences in clinical samples is a key goal of studies on DNA biosensors and gene chips. Herein we present a highly sensitive electrochemical genosensor for direct measurements of specific DNA sequences in undiluted and untr
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::fa4f3a25d1b6eb629ec3caf6795f7de3
https://europepmc.org/articles/PMC3065524/
https://europepmc.org/articles/PMC3065524/
Autor:
Jeffrey R. Krogmeier, Bryan Crane, Griffis Joshua, Lisa W. Kwok, Rudolf Gilmanshin, Nanor Kojanian, Michelle K. Nahas, Qun Zhong, Vyacheslav Papkov, Saad Shaikh, Richard Allen, Gene Malkin, Kedar Vyavahare, Robert H. Meltzer, Jonathan W. Larson, Yi Zhou, Linda Knaian
Publikováno v:
Lab on a chip. 11(5)
Rapid, specific, and sensitive detection of airborne bacteria, viruses, and toxins is critical for biodefense, yet the diverse nature of the threats poses a challenge for integrated surveillance, as each class of pathogens typically requires differen
Autor:
Bryan Crane, Rudolf Gilmanshin, Nanor Kojanian, Nicaulas Sabourin, Richard Allen, Yi Zhou, Jeffrey R. Krogmeier, Qun Zhong, Kedar Vyavahare, Saad Shaikh, Kate Carson, Jonathan W. Larson, Linda Knaian
Publikováno v:
Biophysical Journal. 96(3)
Direct Linear Analysis (DLA) technology obtains high content sequence information by optically mapping sequence specific fluorescent tags bound to elongated genomic DNA molecules in shear flows.[1] To facilitate sensitivity and throughput, we have im
Autor:
Jeffrey R. Krogmeier, Richard Allen, Qun Zhong, Yi Zhou, Griffis Joshua, Wolf Mesadieu, Kedar Vyavahare, Lisa W. Kwok, Jonathan W. Larson, Rudolf Gilmanshin, Amanda Edmonson, Linda Knaian, Bryan Crane, Robert H. Meltzer
Publikováno v:
Biophysical Journal. 96(3)
Direct Linear Analysis (DLA) technology employs continuous microfluidic elongational flow to stretch and optically map individual DNA molecules. Sequence specific tagging of DNA molecules with bisPNAs enables genomic differentiation between species.
Autor:
Robert H. Meltzer, Jeffrey R. Krogmeier, Lisa W. Kwok, Richard Allen, Bryan Crane, Joshua W. Griffis, Linda Knaian, Nanor Kojanian, Gene Malkin, Michelle K. Nahas, Vyacheslav Papkov, Saad Shaikh, Kedar Vyavahare, Qun Zhong, Yi Zhou, Jonathan W. Larson, Rudolf Gilmanshin
Publikováno v:
Lab on a Chip; Mar2011, Vol. 11 Issue 5, p863-873, 11p