Search results
Results: 9
Number of items: 9
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Achetib, N., Wilk, L. S., Schwarz, J. C. V., Lambrechts, S. A. G., van Leeuwen, T. G., Aalders, M. C. G., & van Dam, A. (2019). Estimating the Time of Deposition of Semen Traces using Fluorescence Protein-Lipid Oxidation Signatures. Analytical Chemistry, 91(5), 3204-3208. https://doi.org/10.1021/acs.analchem.8b05625
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Falkena, K., Hoveling, R. J. M., van Weert, A., Lambrechts, S. A. G., van Leeuwen, T. G., Aalders, M. C. G., & van Dam, A. (2019). Prediction of DNA concentration in fingermarks using autofluorescence properties. Forensic Science International, 295, 128-136. https://doi.org/10.1016/j.forsciint.2018.12.005
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van Dam, A., van Weert, A., Falkena, K., Weymans, C., Kloosterman, A. D., Lambrechts, S. A. G., van Leeuwen, T. G., & Aalders, M. C. G. (2018). Sex determination from fingermarks using fluorescent in situ hybridization. Analytical Methods, 10(12), 1413-1419. https://doi.org/10.1039/c7ay02805a
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van Dam, A., van Beek, F. T., Aalders, M. C. G., van Leeuwen, T. G., & Lambrechts, S. A. G. (2016). Techniques that acquire donor profiling information from fingermarks - A review. Science & justice, 56(2), 143-154. https://doi.org/10.1016/j.scijus.2015.12.002
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van Dam, A., Aalders, M. C. G., Todorovski, T., van Leeuwen, T. G., & Lambrechts, S. A. G. (2016). On the autofluorescence of aged fingermarks. Forensic Science International, 258, 19-25. https://doi.org/10.1016/j.forsciint.2015.11.002
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Liu, K., Holz, J. A., Ding, Y., Liu, X., Zhang, Y., Tu, L., Kong, X., Priem, B., Nadort, A., Lambrechts, S. A. G., Aalders, M. C. G., Buma, W. J., Liu, Y., & Zhang, H. (2015). Targeted labeling of early-​stage tumor spheroid in chorioallantoic membrane model with upconversion nanoparticles. Nanoscale, 7(5), 1596-1600. https://doi.org/10.1039/c4nr05638h -
Liu, K., Liu, X., Zeng, Q., Zhang, Y., Tu, L., Liu, T., Kong, X., Wang, Y., Cao, F., Lambrechts, S. A. G., Aalders, M. C. G., & Zhang, H. (2012). Covalently assembled NIR nanoplatform for simultaneous fluorescence imaging and photodynamic therapy of cancer cells. ACS Nano, 6(5), 4054-4062. https://doi.org/10.1021/nn300436b
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