TY - JOUR A1 - Manish, Asthana A1 - Nueckel, Katharina A1 - Mühlberger, Andreas A1 - Neueder, Dorothea A1 - Polak, Thomas A1 - Domschke, Katharina A1 - Deckert, Jürgen A1 - Herrmann, Martin J. T1 - Effects of transcranial direct current stimulation on consolidation of fear memory JF - Frontiers in Neuropsychiatric Imaging and Stimulation N2 - It has been shown that applying transcranial direct current stimulation (tDCS) over the dorsolateral prefrontal cortex (DLPFC) influences declarative memory processes. This study investigates the efficacy of tDCS on emotional memory consolidation, especially experimental fear conditioning. We applied an auditory fear-conditioning paradigm, in which two differently colored squares (blue and yellow) were presented as conditioned stimuli (CS) and an auditory stimulus as unconditioned stimulus (UCS). Sixty-nine participants were randomly assigned into three groups: anodal, cathodal, and sham stimulation. The participants of the two active groups (i.e., anodal and cathodal) received tDCS over the left DLPFC for 12 min after fear conditioning. The effect of fear conditioning and consolidation (24 h later) was measured by assessing the skin conductance response (SCR) to the CS. The results provide evidence that cathodal stimulation of the left DLPFC leads to an inhibitory effect on fear memory consolidation compared to anodal and sham stimulation, as indicated by decreased SCRs to CS+ presentation during extinction training at day 2. In conclusion, current work suggests that cathodal stimulation interferes with processes of fear memory consolidation. KW - transcranial direct current stimulation KW - dorsolateral prefrontal cortex KW - fear conditioning KW - fear memory consolidation Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-97294 ER - TY - THES A1 - Asthana, Manish T1 - Associative learning – Genetic modulation of extinction and reconsolidation and the effects of transcranial Direct Current Stimulation (tDCS) T1 - Assoziatives Lernen - Genetische Modulation der Auslöschung und Rück-verfestigung und die Auswirkungen der transkraniellen Gleichstromstimulation (tDCS) N2 - Scientific surveys provide sufficient evidence that anxiety disorders are one of the most common psy-chiatric disorders in the world. The lifetime prevalence rate of anxiety disorder is 28.8% (Kessler, et al., 2005). The most widely studied anxiety disorders are as follows panic disorder (PD), post-traumatic stress disorder (PTSD), obsessive-compulsive disorder (OCD), social phobia (or social anxiety disorder), specific phobias, and generalized anxiety disorder (GAD). (NIMH Article, 2009). Classical conditioning is the stable paradigm used from the last one century to understand the neurobi-ology of fear learning. Neurobiological mechanism of fear learning is well documented with the condi-tioning studies. In the therapy of anxiety disorders, exposure based therapies are known to be the most effective approaches. Flooding is a form of exposure therapy in which a participant is exposed to the fear situation and kept in that situation until their fear dissipates. The exposure therapy is based on the phenomena of extinction; this means that a conditioned response diminishes if the conditioned stimulus (CS) is repeatedly presented without an unconditioned stimulus (UCS). One problem with extinction as well as with exposure-based therapy is the problem of fear return (for e.g. renewal, spontaneous recov-ery and reinstatement) after successful extinction. Therefore, extinction does not delete the fear memory trace. It has been well documented that memory processes can be modulated or disrupted using several sci-entific paradigms such as behavioral (for e.g. exposure therapy), pharmacological (for e.g. drug manipu-lation), non-invasive stimulation (for e.g. non-invasive stimulation such as electroconvulsive shock (ECS), transcranial magnetic stimulation (TMS), transcranial direct current stimulation (tDCS), etc. However, modulation of memory processes after reactivation or via non-invasive stimulation is still not clear, which is the focus of the current study. In addition, study of genetic variant suggests that genetic differences play a vital role in the psychiatric disorder especially in fear learning. Hence, it is also one of the concerns of the current dissertation to investigate the interaction between gene and reconsolidation of memory. With respect to fear-conditioning, there are three findings in the current dissertation, which are as fol-lows: (i) In the first study we investigated that non-invasive weak electrical stimulation interferes with the consolidation process and disrupts the fear consolidation to attain stable form. This might offer an effective treatment in the pathological memories, for e.g. PTSD, PD, etc. (ii) In the second study we demonstrated whether a brief single presentation of the CS will inhibit the fear recovery. Like earlier studies we also found that reactivation followed by reconsolidation douses fear return. Attenuation of fear recovery was observed in the reminder group compared to the no-reminder group. (iii) Finally, in our third study we found a statistically significant role of brain derived neurotrophic factor (BDNF) polymorphism in reconsolidation. Results of the third study affirm the involvement of BDNF variants (Met vs. Val) in the modulation of conditioned fear memory after its reactivation. In summary, we were able to show in the current thesis modulation of associative learning and recon-solidation via transcranial direct current stimulation and genetic polymorphism. N2 - Mit einer lebenslangen Prävalenz von etwa 28% (Kessler Rc, 2005) stellen Angststörungen eine der häufigsten psychischen Störungen weltweit dar. Zu den am besten untersuchten Angststörungen gehö-ren Panikstörungen (PD), posttraumatische Belastungsstörungen (PTSD), Zwangsstörungen (OCD), soziale Phobien (oder soziale Angststörungen), spezifische Phobien und generalisierte Angststörungen (GAD) (NIMH Artikel, 2009). Die klassische Konditionierung ist das seit dem letzten Jahrhundert gültige Paradigma zur Erforschung der neurobiologischen Mechanismen des Angstlernens. Bei der Behandlung von Angststörungen haben sich Konfrontationstherapien als äußerst wirksam herausgestellt. Reizüberflutung (Flooding) ist bei-spielsweise eine Form der Konfrontationstherapie, bei der der Teilnehmer einer furchteinflößenden Situation ausgesetzt und in ihr gehalten wird, bis seine Furcht vergeht. Die Konfrontationstherapie ba-siert auf dem Phänomen der Extinktion, also dem Rückgang eines konditionierten Verhaltens nach wie-derholter Präsentation eines konditionierten Stimulus (CS) ohne einen unkonditionierten Stimulus (UCS). Ein Problem der Extinktion und der Konfrontationstherapien ist, dass das Furchtgefühl nach einer erfolgreichen Extinktion zurückkehren kann, was darauf hinweist, dass eine Extinktion nicht die Spuren des Angstgedächtnisses löscht. Vieles deutet darauf, dass der Erinnerungsprozess mittels verschiedenener wissenschaftlicher Para-digmen moduliert oder unterbrochen werden kann. Hierzu gehören etwa behavioristische (z.B. Kon-frontationstherapie), pharmakologische oder nicht-invasive Interventionen (z.B. Elektrokonvulsions-therapie (ECS), transkranielle Magnetstimulation (TMS) oder transkranielle Gleichstromstimulation (tDCS)). Da die Modulation von Erinnerungsprozessen nach einer Reaktivierung oder durch eine nicht-invasive Stimulation derzeit noch unzureichend erforscht ist, wurde der Schwerpunkt der vorliegenden Studie auf diese Thematik gelegt. Ein weiteres Ziel ist es, die Wechselwirkung bestimmter Gene mit der Rekonsolidierung des Gedächtnisses zu untersuchen, also Prozesse, denen eine entscheidende Rolle für Angststörungen im Allgemeinen und Furcht-Lernen im Speziellen zugeschrieben wird. Die vorliegende Dissertation umfasst drei zentrale Ergebnisse zur konditionierten Angst: (i.) In der ers-ten Studie wurde herausgefunden, dass eine nicht-invasive, schwache Stimulation den Konsolidie-rungsprozess beeinflusst und verhindert, dass die Angstkonsolidierung eine stabile Form erreicht. Dies könnte eine neue Möglichkeit darstellen, pathologische Gedächtnisinhalte, die z.B. bei Störungen wie PTSD oder PD vorkommen, effektiv zu behandeln. (ii.) Die zweite Studie untersuchte, ob eine kurze, einfache Präsentation des CS das Wiederaufkommen von Angst hemmen kann. Ähnlich wie in früheren Studien beschrieben, fanden auch wir, dass eine Reaktivierung gefolgt von einer Rekonsolidierung die Rückkehr der Angst unterbindet. Insbesondere wurde in der Gruppe, deren Teilnehmer erneut kon-frontiert wurden (reminder), im Vergleich zur Kontroll-Gruppe (no-reminder) ein verringertes Wieder-aufkommen von Angst beobachtet. (iii.) Die dritte Studie zeigte, dass ein Polymorphismus im BDNF-Gen (Met vs Val) eine signifikante Rolle für die Rekonsolidierung und die Modulation des konditionierten Angstgedächtnisses nach seiner Reaktivierung spielt. KW - Konditionierung KW - Angststörung KW - Associative learning KW - transcranial Direct Current Stimulation (tDCS) KW - Elektrotherapie KW - Brain-derived neurotrophic factor KW - Assoziatives Lernen KW - transkranielle Gleichstromstimulation Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-84158 ER - TY - JOUR A1 - Asthana, Manish Kumar A1 - Brunhuber, Bettina A1 - Mühlberger, Andreas A1 - Reif, Andreas A1 - Schneider, Simone A1 - Herrmann, Martin J. T1 - Preventing the Return of Fear Using Reconsolidation Update Mechanisms Depends on the Met-Allele of the Brain Derived Neurotrophic Factor Val66Met Polymorphism JF - International Journal of Neuropsychopharmacology N2 - Background: Memory reconsolidation is the direct effect of memory reactivation followed by stabilization of newly synthesized proteins. It has been well proven that neural encoding of both newly and reactivated memories requires synaptic plasticity. Brain derived neurotrophic factor (BDNF) has been extensively investigated regarding its role in the formation of synaptic plasticity and in the alteration of fear memories. However, its role in fear reconsolidation is still unclear; hence, the current study has been designed to investigate the role of the BDNF val66met polymorphism (rs6265) in fear memory reconsolidation in humans. Methods: An auditory fear-conditioning paradigm was conducted, which comprised of three stages (acquisition, reactivation, and spontaneous recovery). One day after fear acquisition, the experimental group underwent reactivation of fear memory followed by the extinction training (reminder group), whereas the control group (non-reminder group) underwent only extinction training. On day 3, both groups were subjected to spontaneous recovery of earlier learned fearful memories. The treat-elicited defensive response due to conditioned threat was measured by assessing the skin conductance response to the conditioned stimulus. All participants were genotyped for rs6265. Results: The results indicate a diminishing effect of reminder on the persistence of fear memory only in the Met-allele carriers, suggesting a moderating effect of the BDNF polymorphism in fear memory reconsolidation. Conclusions: Our findings suggest a new role for BDNF gene variation in fear memory reconsolidation in humans. KW - BDNF KW - brain derived neurotrophic factor KW - fear conditioning KW - genetics memory KW - reconsolidation Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-166217 VL - 19 IS - 6 ER -