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661.
Prof Manfred E. Beutel Rudolf Stark Hong Pan David A. Silbersweig Sylvia Dietrich 《Psychotherapeut》2012,57(3):227-233
In a controlled functional magnetic resonance imaging (fMRI) study the effect of psychodynamic short-term psychotherapy on cerebral activation of panic disorder patients was determined. In a linguistic go-no go paradigm behavioral measures and cerebral activation to affective word stimuli with threatening, neutral and positive content were assessed pretreatment and post-treatment in 9 patients with panic disorder. 18 healthy controls were scanned twice at the same intervals. In an additional long-term follow-up after approximately 3 years post-treatment the effect of brain activation changes during treatment on the long-term outcome of core symptoms (panic-related cognition and fear of body sensations) were determined. In accordance with the hypotheses increased limbic (hippocampus and amygdala) activation accompanied by low prefrontal activation to negative words were found. At treatment termination, panic-related symptoms had improved significantly and fronto-limbic activation patterns were normalized. Reduction of activation of the limbic system during treatment was predictive of a favorable long-term outcome. The results indicate that short-term psychodynamic treatment leads to changes in fronto-limbic networks, similar to previous findings on cognitive-behavioural treatment. 相似文献
662.
Divorce is a highly stressful event, and much remains to be learned about the factors that promote psychological resilience when marriages come to an end. In this study, divorcing adults (N = 109) completed a 4-min stream-of-consciousness recording about their marital separation at an initial laboratory visit. Four judges rated the degree to which participants exhibited self-compassion (defined by self-kindness, an awareness of one's place in shared humanity, and emotional equanimity) in their recordings. Judges evidenced considerable agreement in their ratings of participants' self-compassion, and these ratings demonstrated strong predictive utility: Higher levels of self-compassion at the initial visit were associated with less divorce-related emotional intrusion into daily life at the start of the study, and this effect persisted up to 9 months later. These effects held when we accounted for a number of competing predictors. Self-compassion is a modifiable variable, and if our findings can be replicated, they may have implications for improving the lives of divorcing adults. 相似文献
663.
Abstract concepts like numbers or time are thought to be represented in the more concrete domain of space and the sensorimotor system. For example, thinking of past or future events has a physical manifestation in backward or forward body sway, respectively. In the present study, we investigated the reverse effect: can passive whole-body motion influence the processing of temporal information? Participants were asked to categorize verbal stimuli to the concepts future or past while they were displaced forward and backward (Experiment 1), or upward and downward (Experiment 2). The results showed that future related verbal stimuli were categorized faster during forward as compared to backward motion. This finding supports the view that temporal events are represented along a mental time line and that the sensorimotor system is linked to that representation. We showed that body motion is not just an epiphenomenon of temporal thoughts. Passive whole-body motion can influence higher-order temporal cognition. 相似文献
664.
Binder S Baier PC Mölle M Inostroza M Born J Marshall L 《Neurobiology of learning and memory》2012,97(2):213-219
The positive impact of sleep on memory consolidation has been shown for human subjects in numerous studies, but there is still sparse knowledge on this topic in rats, one of the most prominent model species in neuroscience research. Here, we examined the role of sleep in the object-place recognition task, a task closely comparable to tasks typically applied for testing human declarative memory: It is a one-trial task, hippocampus-dependent, not stressful and can be repeated within the same animal. A test session consisted of the Sample trial, followed by a 2-h retention interval and a Test trial, the latter examining the memory the rat had for the places of two objects presented at the Sample trial. In Experiment 1, each rat was tested twice, with the retention interval taking place either in the morning or evening, i.e., in the inactive or active phase, respectively. Rats showed significantly (p<0.01) better memory for object place after the Morning session. To control for confounding circadian factors, in Experiment 2 rats were tested four times, i.e., in the morning or in the evening while sleep was or was not deprived. Sleep during the retention interval was recorded polysomnographically. Rats only showed significant memory for the target object place in the Test trial after the Morning retention interval in the absence of sleep deprivation, and recognition performance in this condition was significantly superior to that in the three other conditions (p<0.05). EEG recordings during spontaneous morning sleep revealed increased slow oscillation (0.85-2.0 Hz) and upper delta (2.0-4.0 Hz), but reduced spindle band (10.5-13.5 Hz) activity, as compared to evening sleep. However, spindle band power was increased in the Morning retention interval in comparison to a Morning Baseline period (p<0.05). We conclude that consolidation of object-place memory depends on sleep, and presumably requires NonREM sleep rich in both slow wave and spindle activity. 相似文献
665.
Investigations made into the cognitive decision making of honeybees (Apis mellifera) traveling from one flower patch to another flower patch (interpatch foraging) are few. To facilitate such research, we present
methods to artificially emulate interpatch foraging and quantify the immediate decision making of honeybees (within 50 cm)
choosing to fly an interpatch path. These “Interpatch Methods” are validated, applied, and shown to produce novel information
for the field of honeybee spatial cognition. Generally, we demonstrate that a single foraging cohort of honeybees is shown
to be capable of making decisions based upon different sets of learned cues, in the exact same context. Specifically, both
terminal beacon orientation cues and compass navigation cues can guide the cognitive decision making of interpatch foraging
honeybees; our bees chose both cues equally. Finally, the theoretical importance of decision making for interpatch paths is
compared with the other foraging paths (outward and homing) with respect to the information available to recruited foragers
and scout foragers. We conclude that the ability to analyze interpatch foraging is critical for a more complete understanding
of honeybee foraging cognition and that our methods are capable of providing that understanding. 相似文献
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