C. Klein
Goethe University Frankfurt
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Publication
Featured researches published by C. Klein.
Neuron | 2016
C. Klein; Hc Evrard; Katharine A. Shapcott; Silke Haverkamp; Nk Logothetis; Michael Schmid
Electrical microstimulation and more recently optogenetics are widely used to map large-scale brain circuits. However, the neuronal specificity achieved with both methods is not well understood. Here we compare cell-targeted optogenetics and electrical microstimulation in the macaque monkey brain to functionally map the koniocellular lateral geniculate nucleus (LGN) projection to primary visual cortex (V1). Selective activation of the LGN konio neurons with CamK-specific optogenetics caused selective electrical current inflow in the supra-granular layers of V1. Electrical microstimulation targeted at LGN konio layers revealed the same supra-granular V1 activation pattern as the one elicited by optogenetics. Taken together, these findings establish a selective koniocellular LGN influence on V1 supra-granular layers, and they indicate comparable capacities of both stimulation methods to isolate thalamo-cortical circuits in the primate brain.
Brain Topography | 2014
C. Klein; Wolfger von der Behrens; Bernhard H. Gaese
In order to structure the sensory environment our brain needs to detect changes in the surrounding that might indicate events of presumed behavioral relevance. A characteristic brain response presumably related to the detection of such novel stimuli is termed mismatch negativity (MMN) observable in human scalp recordings. A candidate mechanism underlying MMN at the neuronal level is stimulus-specific adaptation (SSA) which has several characteristics in common. SSA is the specific decrease in the response to a frequent stimulus, which does not generalize to an interleaved rare stimulus in a sequence of events. SSA was so far mainly described for changes in the response to simple pure tone stimuli differing in tone frequency. In this study we provide data from the awake rat auditory cortex on adaptation in the responses to frequency-modulated tones (FM) with the deviating feature being the direction of FM modulation. Adaptation of cortical neurons to the direction of FM modulation was stronger for slow modulation than for faster modulation. In contrast to pure tone SSA which showed no stimulus preference, FM adaptation in neuronal data differed sometimes between upward and downward FM. This, however, was not the case in the local field potential data recorded simultaneously. Our findings support the role of the auditory cortex as the source for change-related activity induced by FM stimuli by showing that dynamic stimulus features such as FM modulation can evoke SSA in the rat in a way very similar to FM-induced MMN in the human auditory cortex.
Hearing Research | 2011
Christian F. Altmann; C. Klein; Linda V. Heinemann; Michael Wibral; Bernhard H. Gaese; Jochen Kaiser
11th FENS Forum of Neuroscience | 2018
J Smuda; C. Klein; Yusuke Murayama; A Oeltermann; J Werner; T Steudel; E Krampe; Nk Logothetis; Hc Evrard
47th Annual Meeting of the Society for Neuroscience (Neuroscience 2017) | 2017
C. Klein; J Smuda; Yusuke Murayama; T Steudel; E Krampe; A Oeltermann; J Werner; Nk Logothetis; Hc Evrard
47th Annual Meeting of the Society for Neuroscience (Neuroscience 2017) | 2017
J Smuda; C. Klein; Yusuke Murayama; T Steudel; E Krampe; A Oeltermann; J Werner; Nk Logothetis; Hc Evrard
12th National Congress of the Belgian Society for Neuroscience (BSN 2017) | 2017
J Smuda; C. Klein; Yusuke Murayama; T Steudel; E Krampe; A Oeltermann; J Werner; Nk Logothetis; Hc Evrard
Archive | 2016
C. Klein
45th Annual Meeting of the Society for Neuroscience (Neuroscience 2015) | 2015
C. Klein; Hc Evrard; Katharine A. Shapcott; Silke Haverkamp; Nk Logothetis; Michael Schmid
44th Annual Meeting of the Society for Neuroscience (Neuroscience 2014) | 2014
C. Klein; Hc Evrard; Katharine A. Shapcott; Nk Logothetis; Michael Schmid