Publications by authors named "M Winklhofer"

Article Synopsis
  • The coupling between electronic excitations and vibrational modes in organic semiconductors impacts their optical and charge transport properties.
  • Highly ordered crystalline films, like those made from perfluoropentacene (PFP), allow for detailed analysis through techniques like polarization-resolved time-domain vibrational spectroscopy.
  • The study reveals that while a high-frequency in-plane deformation mode is polarization-insensitive, a lower-frequency out-of-plane ring bending mode's coupling is significantly influenced by molecular orientation, highlighting the effects of solid-state interactions in these materials.
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Migratory songbirds may navigate by extracting positional information from the geomagnetic field, potentially with a magnetic-particle-based receptor. Previous studies assessed this hypothesis experimentally by exposing birds to a strong but brief magnetic pulse aimed at remagnetizing the particles and evoking an altered behaviour. Critically, such studies were not ideally designed because they lacked an adequate sham treatment controlling for the induced electric field that is fundamentally associated with a magnetic pulse.

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Marine photosynthetic (micro)organisms drive multiple biogeochemical cycles and display a large diversity. Among them, the bloom-forming, free-living dinoflagellate Prorocentrum cordatum CCMP 1329 (formerly P. minimum) stands out with its distinct cell biological features.

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The potassium chloride cotransporter KCC2 is crucial for Cl extrusion from mature neurons and thus key to hyperpolarizing inhibition. Auditory brainstem circuits contain well-understood inhibitory projections and provide a potent model to study the regulation of synaptic inhibition. Two peculiarities of the auditory brainstem are (i) posttranslational activation of KCC2 during development and (ii) extremely negative reversal potentials in specific circuits.

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