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Current Opinion in Neurology|August 11, 2018
Proprioception 2.0: novel functions for muscle spindlesStephan KrögerMolecular and Cellular Neurosciences|July 26, 2002
Isoform pattern and AChR aggregation activity of agrin expressed by embryonic chick retinal ganglion neuronsMaik Annies, Stephan KrögerNeuroscience|November 2, 2019
Alternative Splicing and the Intracellular Domain Mediate TM-agrin's Ability to Differentially Regulate the Density of Excitatory and Inhibitory Synapse-like Specializations in Developing CNS NeuronsGerry Handara, Stephan KrögerSkeletal Muscle|January 7, 2021
Muscle spindle function in healthy and diseased muscleStephan Kröger, Bridgette WatkinsNews in Physiological Sciences : an International Journal of Physiology Produced Jointly by the International Union of Physiological Sciences and the American Physiological Society|September 25, 2002
Agrin in the developing CNS: new roles for a synapse organizerStephan Kröger, Jörn E SchröderActa Neuropathologica|January 22, 2004
Redistribution of aquaporin-4 in human glioblastoma correlates with loss of agrin immunoreactivity from brain capillary basal laminaeArne Warth, Stephan Kröger, Hartwig WolburgMuscle & Nerve|June 10, 2026
Frataxin Expression in Sensory Neurons Is Required for Muscle Spindle Function and ProprioceptionJürgen Schultheiß, Bridgette Watkins, Stephan KrögerThe Journal of Biological Chemistry|January 14, 2009
Transmembrane form agrin-induced process formation requires lipid rafts and the activation of Fyn and MAPKRene Ramseger, Robin White, Stephan KrögerThe Journal of Physiology|January 24, 2019
Acetylcholine receptors in the equatorial region of intrafusal muscle fibres modulate mouse muscle spindle sensitivityLaura Gerwin, Corinna Haupt, Katherine A Wilkinson, et al.Methods in Molecular Biology (Clifton, N.J.)|December 13, 2016
A Cell Culture System to Investigate the Presynaptic Control of Subsynaptic Membrane Differentiation at the Neuromuscular JunctionNadine Schmidt, Sreya Basu, Stephan Kröger, et al.Pageof 4