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Es konnte erstmals gezeigt werden, dass Tumor Nekrose Faktor-α (TNF- α) (TNF-α) in pathophysiologisch relevanten Konzentrationen neben seiner bekannten negativ inotropen Wirkung einen deutlichen Effekt auf die myokardiale Energetik im Myokard der Ratte besitzt. Dieser wurde anhand des Sauerstoffverbrauchs an rechtsventrikulären Muskelstreifenpräparaten quantifiziert. Der erhöhte Energieumsatz bei gleichzeitig reduzierter myokardialer Arbeit, d.h. der gesteigerte spezifische Sauerstoffverbrauch, basiert auf einer verschlechterten Ökonomie des Kontraktionsprozesses. Diese schnelle Wirkung auf die myokardiale Energetik ist durch einen Sphingolipid Signaltransduktionsweg vermittelt. Dagegen spielt wohl für den mechanischen Effekt von TNF-α sowohl NO, als auch Sphingosin eine Rolle.
The present study investigated changes in cortical oxygenation during mental arithmetic using near-infrared spectroscopy (NIRS). Twenty-nine male volunteers were examined using a 52-channel continuous wave system for analyzing activity in prefrontal areas. With the help of a probabilistic mapping method, three regions of interest (ROIs) on each hemisphere were defined: The inferior frontal gyri (IFG), the middle frontal gyri (MFG), and the superior frontal gyri (SFG). Oxygenation as an indicator of functional brain activation was compared over the three ROI and two levels of arithmetic task difficulty (simple and complex additions). In contrast to most previous studies using fMRI or NIRS, in the present study arithmetic tasks were presented verbally in analogue to many daily life situations. With respect to task difficulty, more complex addition tasks led to higher oxygenation in all defined ROI except in the left IFG compared to simple addition tasks. When compared to the channel positions covering different gyri of the temporal lobe, the observed sensitivity to task complexity was found to be restricted to the specified ROIs. As to the comparison of ROIs, the highest oxygenation was found in the IFG, while MFG and SFG showed significantly less activation compared to IFG. The present cognitive-neuroscience approach demonstrated that NIRS is a suitable and highly feasible research tool for investigating and quantifying neural effects of increasing arithmetic task difficulty.