Publikationen
[V31] Beisler N. and Sandmann M. (2022)
Integration of Arthrospira platensis (spirulina) into the brewing process to develop new beers with unique sensory properties. Front. Sustain. Food Syst. 6:918772.
[V30] Wurm, H., Sandmann, M. (2022)
Use of image processing based on freeware tools to illustrate mixing processes for educational purposes,
Chemie Ingenieur Technik, 94: 1349
[V29] Sandmann, M., Rading, M. (2022)
Biological insights during single-cell analysis of algal cultures based on label-free flow cytometry,
Chemie Ingenieur Technik, 94: 1276
[V28] Pohle, K., Sandmann, M. (2022)
Applied fiber-optical sensing in photobioreactors as processanalytical technology (PAT),
Chemie Ingenieur Technik, 94: 1272-1273
[V27] Sandmann, M., Münzberg, M., Bressel, L. et al. Inline monitoring of high cell density cultivation of Scenedesmus rubescens in a mesh ultra-thin layer photobioreactor by photon density wave spectroscopy. BMC Res Notes15, 54 (2022). https://doi.org/10.1186/s13104-022-05943-2
[V26] Wurm, H., Sandmann, M. Establishment of a simple method to evaluate mixing times in a plastic bag photobioreactor using image processing based on freeware tools. BMC Res Notes 14, 470 (2021). doi.org/10.1186/s13104-021-05892-2
[V25] Sandmann M, Smetana S, Heinz V, Rohn S. Comparative life cycle assessment of a mesh ultra-thin layer photobioreactor and a tubular glass photobioreactor for the production of bioactive algae extracts (2021). 340, 125657.
[V24] Anwendungspotenziale für gepulste elektrische Felder (PEF) in der Getränkeherstellung (2021)
Sandmann M., Glaß, S. Der Lebensmittelbrief 32, 15-16
[V23] B. Hensel, U. Jakop, K. Scheinpflug, F. Schröter, M. Sandmann, K. Mühldorfer, M. Schulze (2021) Low temperature preservation: influence of putative bioactive microalgae and hop extracts on sperm quality and bacterial load in porcine semen, Sustainable Chemistry and Pharmacy, 19: 100359. doi.org/10.1016/j.scp.2020.100359
[V22] Sandmann, M., A. Lindner, D. Pleissner (2020) Möglichkeiten der Produktivitätssteigerung in der Algenkultivierung, Chemie Ingenieur Technik, 92: 1173-1173
[V21] H. Sevgili, S. Sezen, A. Yılayaz, Ö. Aktaş, F. Pak, I. M. Aasen, K. I. Reitan, M. Sandmann, S. Rohn, G. Turan, M. Kanyılmaz (2019) Apparent nutrient and fatty acid digestibilities of microbial raw materials for rainbow trout (Oncorhynchus mykiss) with comparison to conventional ingredients, Algal Research, 42: 101592. doi: 10.1016/j.algal.2019.101592
[V20] M. Sandmann, M. Lippold, M. Schafberg, and Sascha Rohn (2018) Analysis of population structures of the microalga Acutodesmus obliquus during lipid production using multi-dimensional single-cell analysis, Scientific Reports, 8(1):6242. doi: 10.1038/s41598-018-24638-y
[V19] M. Sandmann, S. Rohn (2018) Mikroalgen – Neue Kosmetiktrends, Nutrition-Press. 12, ISSN 2196 -1271 (eingeladen)
[V18] Sandmann, M., Lippold, M., Schafberg, M., Rohn, S. (2018) Aufdeckung von Produktheterogenitäten in der Bioprozesstechnik durch automatisierte Partikel‐Analysen‐Technologie, Chemie Ingenieur Technik, 90: 1234-1234
[V17] Sandmann, M., Dörrbecker, B., Hertel, C., Heinz, V., Rohn, S. (2018) Einfluss der Hochspannungsimpulstechnologie (HSI) auf die Zellphysiologie von Cyanobakterien und eukaryotischen Mikroorganismen, Chemie Ingenieur Technik, 90: 1284-1284
[V16] S. Smetana, M. Sandmann, S. Rohn, D. Pleissner, V. Heinz (2017) Autotrophic and heterotrophic microalgae and cyanobacteria cultivation for food and feed: Life Cycle Assessment, Bioresource Technology, 245: 162-170
[V15] M. Sandmann, B. Dörrbecker, C. Hertel, V. Heinz, S. Rohn (2017) Mikroalgen in Mürbeteiggebäck, brot+backwaren (5): 74-77 ISSN 0172-8180
[V14] M. Sandmann, B. Dörrbecker, C. Hertel, V. Heinz, S. Rohn (2017) Microalgae in short crust baked products, baking+biscuit international (5): ISSN 0172-8180
[V13] M. Sandmann, M. Lippold, F. Saalfrank, C. P. Odika, and Sascha Rohn (2017) Multi-dimensional single-cell analysis based on fluorescence microscopy and automated image analysis, Anal Bioanal Chem 409(16): 4009–4019
[V12] R. Hass, M. Sandmann, O. Reich (2017) Photonic sensing in highly concentrated biotechnical processes by photon density wave spectroscopy, Proc. SPIE 10323, 25th International Conference on Optical Fiber Sensors, 103232V doi:10.1117/12.2263617
[V11] M. Sandmann, S. Rohn (2016) Mikroalgen: unerschöpfliches Potenzial für Gesundheit und Ernährung, Nutrition-Press. 9, ISSN 2196 -1271 (Eingeladen)
[V10] M. Sandmann, M. Lippold, H. Seffelaar, S. Rohn (2016) Anwendung der neuen “Zentrifugen-Bürsten-Technologie” für die Separation von Zellen der Grünalge Scenedesmus obliquus, Chemie Ingenieur Technik 88(9):1383-1383
[9] M. Sandmann, M. Lippold, S. Rohn (2016) Mehrdimensionale Partikel-Analytik in biotechnologischen Prozessen, Chemie Ingenieur Technik 88(9):1354-1354
[8] M. Sandmann, A. Garz, R. Menzel (2015) Physiological response of two different Chlamydomonas reinhardtii strains to light-dark rhythms, Botany, DOI: 10.1139/cjb-2015-0144
[7] M. Rading, M. Sandmann, M. Steup, D. Chiarugi, A. Valleriani (2015) Weak correlation of starch and volume in synchronized photosynthetic cells, Physical Review E 91, 012711-1-11
[6] D. Hemme, D. Veyel, T. Muelhaus, F. Sommer, J. Jueppner, A-K. Unger, M. Sandmann, I. Fehrle, S. Schoenfelder, M. Steup, S. Geimer, J. Kopka, P. Giavalisco, M. Schroda (2014) Systems-wide analysis of acclimation responses to long-term heat stress and recovery in the photosynthetic model organism Chlamydomonas reinhardtii, The Plant Cell 26 (11), 4270-4297
[5] L. Bressel, R. Hass, M. Münzberg, M. Sandmann, O. Reich, (2013) Investigations of Strongly Light Scattering Liquids by Photon Density Wave Spectroscopy, Imaging and Applied Optics AM2B.2, ISBN: 978-1-55752-975-6.
[4] O. Reich, M. Sandmann, L. Bressel, C. Hille (2012) Optische Charakterisierung von Algenkulturen und der Lichtverteilung in Photobioreaktoren, Chemie Ingenieur Technik 84 (8), 1178-1179
[3] A. Garz, M. Sandmann, M. Rading, S. Ramm, R. Menzel, and M. Steup (2012) Cell-to-cell diversity in a synchronized Chlamydomonas culture as revealed by single cell analyses, Biophys. J. 103: 1078-86
[2] P. Gajdanowicz, E. Michard, M. Sandmann, M. Rocha, L.G.G. Correa, S.J. Ramirez-Aguilar, J.L. Gomez-Porras, W. Gonzalez, J.-B. Thibaud, J. van Dongen, and I. Dreyer (2011) K+ gradients serve as a mobile energy source in plant vascular tissues, Proc. Natl. Acad. Sci. USA 108, 864-869
[1] M. Sandmann, K. Sklodowski, P. Gajdanowicz, E. Michard, M. Rochia, J.L. Gomez-Porras, W. González, L.G. Guedes Correa, S.J. Ramirez-Aguilar, T.A. Ciun, J. van Dongen, J.-B. Thibaud, and I. Dreyer (2011) The K+ battery-regulating Arabidopsis K+ channel AKT2 is under the control of multiple post-translational step,
Plant Signall. Behav. 6:4 558-562