JoVE Bioengineering
Carlos A. Lopez1, George G. Daaboul2, Sunmin Ahn2, Alexander P. Reddington1, Margo R. Monroe2, Xirui Zhang2, Rostem J. Irani3, Chunxiao Yu4,5, Caroline A. Genco4,5, Marina Cretich6, Marcella Chiari6, Bennett B. Goldberg1, John H. Connor5, M. Selim Ünlü1,2
1Department of Electrical and Computer Engineering, Boston University, 2Department of Biomedical Engineering, Boston University, 3Center for Advanced Genomics Technology, Boston University, 4Department of Medicine, Section of Infectious Diseases, Boston University School of Medicine, 5Department of Microbiology, Boston University School of Medicine, 6CNR (National Research Council), Istituto di Chimica del Riconoscimento Molecolare
Quantitative, High-Throughput-, Echtzeit-und Label-free biomolekularen Erkennung (DNA, Proteine, etc.) auf SiO
Conference Proceedings : ... Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Conference. Aug, 2011 | Pubmed ID: 22255405
Wir nutzen die spektrale Self-interference Fluoreszenz-Mikroskopie (SSFM) zur Messung Fluorophor Höhe mit Sub-nm-Präzision, DNA-Ausrichtung genau zu quantifizieren. Eine neuartige Polymere 3D Gerüst wird verwendet, um die Sensoroberfläche Straßenschlachten und Ausrichtung der Oberfläche steuern verankert DNA.