von Keyserling, H.; Bergmann, T.; Schuetz, M.; Schiller, U.; Stanke, J.; Hoffmann, C.; Schneider, A.; Lehrach, H.; Dahl, A.; Kaufmann, A. M.: Analysis of 4 single-nucleotide polymorphisms in relation to cervical dysplasia and cancer development using a high-throughput ligation-detection reaction procedure. International Journal of Gynecological Cancer: Official Journal of the International Gynecological Cancer Society 21 (9), S. 1664 - 71 (2011)
Scholz, A.-K.; Klebl, B. M.; Morkel, M.; Lehrach, H.; Dahl, A.; Lange, B. M.H.: A Flexible Multiwell Format for Immunofluorescence Screening Microscopy of Small-Molecule Inhibitors. Assay and Drug Development Technologies. 8 (5), S. 571 - 580 (2010)
McMeekin, T. A.; Hill, C.; Wagner, M.; Dahl, A.; Ross, T.: Ecophysiology of food-borne pathogens: Essential knowledge to improve food safety. International Journal of Food Microbiology 139 (Suppl 1), S. S64 - 78 (2010)
Kepper, P.; Reinhardt, R.; Dahl, A.; Lehrach, H.; Sauer, S.: Matrix-Assisted Laser Desorption/Ionization Mass Spectrometric Analysis of DNA on Microarrays. Clinical Chemistry: International Journal of Molecular Diagnostics and Laboratory Medicine 52 (7), S. 1303 - 1310 (2007)
Dahl, A.; Sultan, M.; Jung, A.; Schwartz, R.; Lange, M.; Steinwand, M.; Livak, K. J.; Lehrach, H.; Nyarsik, L.: Quantitative PCR based expression analysis on a nanoliter scale using polymer nano-well chips. Biomedical Microdevices 9 (3), S. 307 - 314 (2007)
Sauer, S.; Kepper, P.; Smyra, A.; Dahl, A.; Ferse, F.-T.; Lehrach, H.; Reinhardt, R.: Automated solid-phase extraction for purification of single nucleotide polymorphism genotyping products prior to matrix-assisted laser desorption/ionisation time-of-flight mass spectrometric analysis. Journal of Chromatography A 1049 (1-2), S. 9 - 16 (2004)
Dahl, A.: Development of a miniaturised platform for PCR based assays with application in gene expression analysis and SNP genotyping. Dissertation, Freie Universität, Berlin (2007)
Forschende des Max-Planck-Instituts für molekulare Genetik beschreiben gewebespezifische Ausbildung von architektonischen Streifen durch aktivierte Enhancer und CTCF-Elemente