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2019

O, G. & A, V. Das Milieu des ZNS: Gliazellen. in Physiologie des Menschen vol. 32 83-92 (Springer Verlag GmbH Austria, 2019).
O, G. & A, V. Physiology of microglia. in Microglia: Methods and Protocols vol. 2034 27-40 (New York: Springer Science+Business Media, 2019). doi:10.1007/978-1-4939-9658-2_3.
O, G. Labeling microglia with genetically-encoded calcium indicators. in Microglia: Methods and Protocols vol. 2034 243-265 (New York: Springer Science+Business Media, 2019). doi:10.1007/978-1-4939-9658-2_18.
O, G. & A, V. Microglia: the neural cells of non-neural origin. in Microglia: Methods and Protocols vol. 2034 3-11 (New York: Springer Science+Business Media, 2019). doi:10.1007/978-1-4939-9658-2_1.
CN, M., S, F., H, B., M, D. & C, B. Protein Phase Separation and Determinants of in cell Crystallization. Traffic (2019) doi:10.1111/tra.12711.
Sorochynska, O. M. et al. Every-other-day feeding decreases glycolytic and mitochondrial energy-producing potentials in the brain and liver of young mice. Front. Physiol. 10, (2019) doi:10.3389/fphys.2019.01432.

2018

K, F. et al. Morphological changes, nitric oxide production, and phagocytosis are triggered in vitro in microglia by bloodstream form of Trypanosoma brucei. Scientific Reports 8, (2018).
NL, U. et al. Trypanosoma brucei aquaglyceroporins mediate the transport of metabolic end-products: Methylglyoxal, D-lactate, L-lactate and acetate. Biochim Biophys Acta Biomembr 11, 2252-2261 (2018).
B, B. et al. A bell-shaped dependence between amyloidosis and GABA accumulation in astrocytes in a mouse model of Alzheimer's disease. Neurobiol Aging 6, 187-197 (2018) doi:10.1016/j.neurobiolaging.2017.09.028.
C, L. et al. Intracellular calcium stores control in vivo neuronal hyperactivity in a mouse model of Alzheimer’s disease. PNAS USA (2018).
O, G., HM, S. & VI, L. Healthy brain aging: interplay between reactive species, inflammation and energy supply. Ageing Research Reviews 43, 26-45 (2018) doi:10.3390/ijms20030589.
C, L. & O, G. Role of presynaptic calcium stores for neural network dysfunction in Alzheimer's disease. Neural Regeneration Research (2018).
A, M., K, L., X, S., Y, K. & O, G. Spontaneous calcium transients in the immature adult-born neurons of the olfactory bulb. Cell Calcium 74, 43-52 (2018).

2017

K, A. et al. Coupled proliferation and apoptosis maintain the rapid turnover of microglia in the adult brain. Cell Reports 18, 391-405 (2017) doi:http://dx.doi.org/10.1016/j.celrep.2016.12.041.
B, G. O. B. Monitoring in vivo function of cortical microglia. Cell Calcium 64, 109-117 (2017).
B, B. et al. A new approach for ratiometric in vivo calcium imaging of microglia. Scientific Reports (2017).
O, G. Age-related changes in microglial physiology: the role for healthy brain ageing and neurodegenerative disorders. eNeuroforum online article (2017) doi:https://doi.org/10.1515/nf-2016-A057.
O, G. Altersbedingte Veränderungen der Mikrogliazellen: ihre Rolle bei gesundem Altern des Gehirns und bei neurodegenerativen Erkrankungen. Neuroforum 23(4), 239-248 (2017) doi:https://doi.org/10.1515/nf-2016-0057.

2016

Y, L. et al. Long-term in vivo single cell tracking reveals the switch of migration patterns in adult-born juxtaglomerular cells of the mouse olfactory bulb. Cell Research (2016).

2015

M.T, H. et al. Neuroinflammation in Alzheimer's Disease. Lancet Neurology 14, (2015) doi:10.1016/S1474-4422(15)70016-5.
Y, K. et al. In vivo odorant response properties of migrating adult-born neurons in the mouse olfactory bulb. Nature Communications (2015).
K, K. et al. GABA depolarizes immature neurons and inhibits network activity in the neonatal neocortex in vivo. Nature Communications 6, (2015) doi:10.1038/ncomms8750.
M, O. et al. Brain tumor cells interconnect to a functional and resistant network. Nature 528, 93-8 (2015) doi:10.1038/nature16071.

2014

F.C, M. et al. Longitudinal PET/MRI reveals -amyloid deposition and rCBF dynamics, and connects vascular amyloidosis to quantitative loss of perfusion. Nat Med doi:10.1038/nm.3734 (2014).
T, T. et al. Optimized ratiometric calcium sensors for functional in vivo imaging of neurons and T lymphocytes. Nat Methods 175-182 (2014).