TY - JOUR A1 - Schecklmann, Martin A1 - Giani, Anette A1 - Tupak, Sara A1 - Langguth, Berthold A1 - Raab, Vincent A1 - Polak, Thomas A1 - Varallyay, Csanad A1 - Harnisch, Wilma A1 - Herrmann, Martin J. A1 - Fallgatter, Andreas J. T1 - Functional Near-Infrared Spectroscopy to Probe State- and Trait-Like Conditions in Chronic Tinnitus: A Proof-of-Principle Study JF - Neural Plasticity N2 - Objective. Several neuroscience tools showed the involvement of auditory cortex in chronic tinnitus. In this proof-of-principle study we probed the capability of functional near-infrared spectroscopy (fNIRS) for the measurement of brain oxygenation in auditory cortex in dependence from chronic tinnitus and from intervention with transcranial magnetic stimulation. Methods. Twenty-three patients received continuous theta burst stimulation over the left primary auditory cortex in a randomized sham-controlled neuronavigated trial (verum = 12; placebo = 11). Before and after treatment, sound-evoked brain oxygenation in temporal areas was measured with fNIRS. Brain oxygenation was measured once in healthy controls (n = 12). Results. Sound-evoked activity in right temporal areas was increased in the patients in contrast to healthy controls. Left-sided temporal activity under the stimulated area changed over the course of the trial; high baseline oxygenation was reduced and vice versa. Conclusions. By demonstrating that rTMS interacts with auditory evoked brain activity, our results confirm earlier electrophysiological findings and indicate the sensitivity of fNIRS for detecting rTMS induced changes in brain activity. Moreover, our findings of trait-and state-related oxygenation changes indicate the potential of fNIRS for the investigation of tinnitus pathophysiology and treatment response. KW - transcranial magnetic stimulation KW - positron-emission-tomography KW - auditory cortex KW - FNIRS KW - RTMS KW - neural activity KW - FMRI KW - brain KW - activation KW - humans Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-117801 SN - 1687-5443 IS - 894203 ER - TY - THES A1 - Raab, Thomas T1 - Untersuchungen zur Erdbeerfruchtreifung : Biosynthese von 4-Hydroxy-2,5-dimethyl-3(2H)-furanon und Enzymaktivitäten während des Reifungsprozesses T1 - Investigations on strawberry fruit ripening - Biosynthesis of 4-hydroxy-2,5-dimethyl-3(2H)-furanone and enzymatic activities within the ripening process N2 - Die Fruchtreifung stellt einen hochkomplexen Prozess dar, der durch eine Reihe von biochemischen und physiologischen Veränderungen gekennzeichnet ist. Dies umfasst bedeutende Veränderungen von Textur, Farbe sowie die Bildung von geschmacks- und geruchsaktiven Verbindungen. Die vorliegende Arbeit präsentiert neue Erkenntnisse zur Biosynthese von 4-Hydroxy-2,5-dimethyl-3(2H)-furanon (Furaneol®, HDMF), einer Schlüssel-Aromakomponente der Erdbeere (Fragaria x ananassa). Daneben lieferten die durchgeführten Versuche den Nachweis einer Reihe enzymatischer Aktivitäten in der Erdbeerfrucht und beleuchteten deren Entwicklung im Verlauf der Erdbeer-Fruchtreifung. Zum ersten Mal wurde ein Protein aus Erdbeerfrüchten isoliert, partiell sequenziert und seine Beteiligung an der enzymatischen Bildung von HDMF während der Fruchtreifung nachgewiesen. N2 - Fruit ripening represents a highly complex process, characterized by a series of biochemi-cal and physiological changes. This comprises significant changes in texture and colour as well as production of odor- and flavour-active compounds. The present work reveals new insight into the biosynthesis of 4-hydroxy-2,5-dimethyl-3(2H)-furanone (Furaneol®, HDMF), a key flavour compound of strawberry (Fragaria x ananassa). For the first time, a protein active in the enzymatic formation of this compound during strawberry fruit ripening was isolated from the fruit, partially sequenced and characterised. KW - Erdbeere KW - Fruchtreife KW - Furaneol KW - Biosynthese KW - Furaneol KW - Chinon-oxidoreduktase KW - Erdbeere KW - Aroma KW - HDMF KW - Furaneol KW - quinone oxidoreductase KW - strawberry KW - flavor KW - HDMF Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-8640 ER -