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When not engaged in the moment, we often spontaneously represent people, places and events that are not present in the environment. Although this capacity has been linked to the default mode network (DMN), it remains unclear how interactions between the nodes of this network give rise to particular mental experiences during spontaneous thought. One hypothesis is that the core of the DMN integrates information from medial and lateral temporal lobe memory systems, which represent different aspects of knowledge. Individual differences in the connectivity between temporal lobe regions and the default mode network core would then predict differences in the content and form of people’s spontaneous thoughts. This study tested this hypothesis by examining the relationship between seed-based functional connectivity and the contents of spontaneous thought recorded in a laboratory study several days later. Variations in connectivity from both medial and lateral temporal lobe regions was associated with different patterns of spontaneous thought and these effects converged on an overlapping region in the posterior cingulate cortex. We propose that the posterior core of the DMN acts as a representational hub that integrates information represented in medial and lateral temporal lobe and this process is important in determining the content and form of spontaneous thought.  相似文献   
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Hydrobiologia - Proliferations of benthic mats dominated by anatoxin-producing Microcoleus autumnalis (basionym Phormidium autumnale) pose an increasing health risk to human and animals worldwide....  相似文献   
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In a sample of homosexual men attending a San Francisco Bay Area health fair, there were strikingly higher prevalence rates of intestinal parasitic infections compared with rates in a control group of health plan members who had a routine multiphasic health examination. Physicians treating homosexual men must be aware of the likelihood of such infections, whether or not the patients are symptomatic.  相似文献   
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For a plasma containing the competitive (PIVKA-) inhibitors induced by anticoagulant treatment the coagulation time t is related to the concentrations of functional coagulation factors S (substrates) and competitive inhibitors I by t = tmin + el/S + gamma I/S with tmin being the minimum possible coagulation time and e and gamma the sensitivities of the test procedure towards a change in the concentration of functional coagulation factors and competitive inhibitors, respectively. The calibration of the test procedure can be achieved by performing a series of dilutions on an inhibitor-free plasma (determination of tmin and e) and, after that, on a plasma of known inhibitor content (determination of gamma) in both cases recording the parametrizing straight line which results from multiplying the respective equation by S. The content of functional coagulation factors and competitive inhibitors in the plasmas of anticoagulated patients then can be determined simultaneously by treating the patient's plasma like in the calibration for gamma. The proposed method should allow the complete metrological characterization of thromboplastin time reagents without any need for reference thromboplastins.  相似文献   
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