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Christian Ringemann
Christian Ringemann
Roche Diabetes Care GmbH
在 roche.com 的电子邮件经过验证
标题
引用次数
引用次数
年份
Direct observation of the nanoscale dynamics of membrane lipids in a living cell
C Eggeling, C Ringemann, R Medda, G Schwarzmann, K Sandhoff, ...
Nature 457 (7233), 1159-1162, 2009
17712009
STED nanoscopy reveals molecular details of cholesterol-and cytoskeleton-modulated lipid interactions in living cells
V Mueller, C Ringemann, A Honigmann, G Schwarzmann, R Medda, ...
Biophysical journal 101 (7), 1651-1660, 2011
2942011
Red‐emitting rhodamine dyes for fluorescence microscopy and nanoscopy
K Kolmakov, VN Belov, J Bierwagen, C Ringemann, V Müller, C Eggeling, ...
Chemistry–A European Journal 16 (1), 158-166, 2010
2912010
Exploring single-molecule dynamics with fluorescence nanoscopy
C Ringemann, B Harke, C Von Middendorff, R Medda, A Honigmann, ...
New Journal of Physics 11 (10), 103054, 2009
932009
Fluorescence correlation spectroscopy with a total internal reflection fluorescence STED microscope (TIRF-STED-FCS)
M Leutenegger, C Ringemann, T Lasser, SW Hell, C Eggeling
Optics express 20 (5), 5243-5263, 2012
862012
Enhancing fluorescence brightness: effect of reverse intersystem crossing studied by fluorescence fluctuation spectroscopy
C Ringemann, A Schönle, A Giske, C Von Middendorff, SW Hell, ...
ChemPhysChem 9 (4), 612-624, 2008
832008
FCS in STED microscopy: studying the nanoscale of lipid membrane dynamics
V Mueller, A Honigmann, C Ringemann, R Medda, G Schwarzmann, ...
Methods in enzymology 519, 1-38, 2013
802013
New GM1 ganglioside derivatives for selective single and double labelling of the natural glycosphingolipid skeleton
SM Polyakova, VN Belov, SF Yan, C Eggeling, C Ringemann, ...
European Journal of Organic Chemistry 2009 (30), 5162-5177, 2009
382009
Reversible photoswitching enables single‐molecule fluorescence fluctuation spectroscopy at high molecular concentration
C Eggeling, M Hilbert, H Bock, C Ringemann, M Hofmann, AC Stiel, ...
Microscopy research and technique 70 (12), 1003-1009, 2007
362007
Control-to-range failsafes
DL Duke, C Ringemann, CU Manohar
US Patent 10,332,632, 2019
342019
Hydrophilic and lipophilic rhodamines for labelling and imaging
S Hell, VN Belov, K Kolmakov, V Westphal, M Lauterbach, S Jakobs, ...
US Patent 8,580,579, 2013
302013
Methods of measuring analytes that include a test element quality measurement based upon intrinsic luminescence of a test chemical of the test element
W Petrich, C Horn, N Steinke, C Ringemann, AF Von Ketteler
US Patent 9,611,504, 2017
232017
Method and device for generating a corrected value of an analyte concentration in a sample of a body fluid
J Hoenes, C Ringemann, A Weller
US Patent 10,900,957, 2021
192021
Monitoring triplet state dynamics with fluorescence correlation spectroscopy: bias and correction
A Schönle, C Von Middendorff, C Ringemann, SW Hell, C Eggeling
Microscopy research and technique 77 (7), 528-536, 2014
192014
Control-to-range aggressiveness
DL Duke, A Greenburg, C Ringemann, CU Manohar
US Patent 10,332,633, 2019
142019
Risk-based control-to-range
DL Duke, C Ringemann, CU Manohar, A Greenburg
US Patent 10,297,350, 2019
132019
High-resolution far-field fluorescence STED microscopy reveals nanoscale details of molecular membrane dynamics
C Eggeling, C Ringemann, R Medda, B Hein, SW Hell
Biophysical Journal 96 (3), 197a, 2009
102009
Method for providing a signal quality degree associated with an analyte value measured in a continuous monitoring system
C Ringemann
US Patent 10,667,734, 2020
72020
Enhancing the Capabilities of Continuous Glucose Monitoring With a Predictive App
P Herrero, M Andorrà, N Babion, H Bos, M Koehler, Y Klopfenstein, ...
Journal of Diabetes Science and Technology, 19322968241267818, 2024
52024
System and a method for automatically managing continuous glucose monitoring measurements indicative of glucose level in a bodily fluid
C Ringemann
US Patent 11,998,321, 2024
52024
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