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Structural aspects of survivors' thinking about the Holocaust.

Videotaped interviews of 30 Holocaust survivors were scored for integrative complexity, the recognition of alternate perspectives or dimensions of a topic ("differentiation") and the joint consideration of several perspectives or dimensions ("integration"). Memories showed decreased differentiation and integration as they moved from pre-war life to the shock and upheaval when organized persecution began. High complexity levels reflected survivors mustering their resources to enhance their chances of survival and successful postwar adaptation. These findings demonstrate the usefulness of quantitative, objective content analytic methods in Holocaust survivor research, add a cognitive dimension to the study of survival during and after extreme situations, and confirm theoretical propositions about decision making and information processing under stress.

Adaptation, Psychological↗

Phase-locking and amplitude modulations of EEG alpha: Two measures reflect different cognitive processes in a working memory task.

It has been demonstrated in numerous experiments that oscillatory EEG responses in the alpha frequency band (8-12 Hz) increase with memory load during the retention interval in working memory tasks. However, the findings diverge with respect to which measurement of alpha activity is influenced by memory processes. Here, we differentiate between evoked and total alpha activity in order to separate effects of phase-locking and amplitude modulation. We present data from a delayed-matching-to-sample task (S1-S2 paradigm) for which we compared EEG alpha responses between a perception and a memory condition. Increased total alpha activity was found in the retention interval for the memory as compared to the perception condition. Evoked alpha activity, however, did not differentiate between memory and perception conditions but, instead, was increased for the more complex condition of processing non-Kanizsa figures as compared to Kanizsa figures. Thus, our results demonstrate a functional differentiation between evoked and total alpha activity. While alpha phase locking seemed to be influenced mainly by task complexity, alpha amplitude clearly reflected memory demands in our paradigm.

Adult↗

Prenatal exposure to ethanol disrupts spatial memory: effect of the training-testing delay period.

The present study investigated how variations in the period of delay between training and testing in the Morris water maze task affect the use of spatial memory in adult rats that were prenatally exposed to ethanol. Previous results utilizing the Morris water maze task have shown that prenatal, or early postnatal, exposure to ethanol produces deficits in the use of spatial memory, a type of memory that is dependent on an intact hippocampus. However, in these prior studies the delay period between the training of animals and the testing of spatial memory is typically fixed at only 1 day. In the current study, which utilized a revised training procedure within the Morris water maze task, the period of delay between training and testing was altered such that it was either 1 day or 3 days. Following the 3-day delay, different levels of prenatal exposure to ethanol impaired the use of spatial memory. In contrast, following the 1-day delay, prenatal exposure to ethanol failed to impair the use of spatial memory. The present study thus shows that prenatal exposure to ethanol differentially affects spatial memory in the Morris water maze task depending on the period of delay between training and testing.

Analysis of Variance↗

Spatial knowledge of young and elderly adults: scene recognition from familiar and novel perspectives.

Thirty young adults (mean age = 25.3) and 30 elderly adults (mean age = 65.3) were tested on a memory task in which they were asked to recognize environmental scenes from familiar and novel perspectives. Participants initially viewed slides of 10 business and 10 residential street intersections. Pairs of intersections were then presented and subjects were asked to select the intersection viewed previously. During the recognition phase subjects saw the intersections from the original perspective (0 degrees), rotated 90 degrees from the original perspective, or rotated 180 degrees from the original perspective. Young adults were more accurate than elderly adults and accuracy was greater for business than residential scenes at both age levels. Subjects were more accurate in the 0 than 180 degree condition, while performance in the 90 degree condition was significantly less accurate than in the other two conditions. These results indicate that (1) young adults have better recognition memory than elderly adults for real world scenes, and (2) environmental differentiation aids recognition memory for spatial locations.

Adult↗

Prefrontal cortex activity associated with source monitoring in a working memory task.

Using functional magnetic resonance imaging (fMRI), we investigated prefrontal cortex (PFC) activity during remembering specific source information (format, location judgments) versus remembering that could be based on undifferentiated information, such as familiarity (old/new recognition [ON], recency judgments). A working memory (WM) paradigm with an immediate test yielded greater activation in the lateral PFC for format and location source memory (SM) tasks than ON recognition; this SM-related activity was left lateralized. The same regions of PFC were recruited in Experiment 2 when information was tested immediately and after a filled delay. Substituting recency for location judgments (Experiment 3) resulted in an overall shift in task context that produced greater right PFC activity associated with ON and recency tasks compared to the format task, in addition to left SM-related activity. These data extend to WM previous findings from long-term memory (LTM) indicating that the left and right PFC may be differentially involved in memory attributions depending on the specificity of information evaluated. The findings also provide evidence for the continuity of evaluative processes recruited in WM and LTM.

Adult↗

Tracing and characterization of the low-avidity self-specific T cell repertoire.

It is well established that expression of self antigens results in the deletion of the functional high-avidity self-specific T cell repertoire. Due to the low frequency of naturally occurring low-avidity self-specific T cells, a detailed evaluation of their ability to survive and differentiate into effector and memory populations in vivo has yet to be obtained. We here employ tetramer technology to characterize and determine the in vivo fate of a self-specific CD8(+) T cell population specific for a ubiquitously expressed T cell epitope. We find that in influenza nucleoprotein (NP)-transgenic mice (B10NP mice) an oligoclonal population of NP(366 - 374)-specific T cells can be triggered by live influenza virus exposure. The main hallmark of this self-specific T cell population is its diminished avidity for the tetrameric MHC / NP peptide complex. These low-avidity T cells are not deleted and do not down-regulate their antigen or CD8 receptors, and exhibit cytolytic activity towards tumor cells expressing NP endogenously. Strikingly, a secondary influenza infection generates a typical memory response in the low-avidity repertoire. The observation that low-avidity T cells persist in vivo and can differentiate into memory T cells underscores their potential role in anti-tumor immunity.

Animals↗

Comparative studies on the actions of antigen and polyclonal B-cell activator in differentiation and proliferation of B-cells and B memory cells.

Using the capsular polysaccharide of Klebsiella pneumoniae (CPS-K) as a polyclonal B-cell activator (PBA) and sheep red blood cells (SRBC) as a T cell-dependent antigen, we compared the ability of PBA and antigen to differentiate (generate antibody-forming cells, AFC) and proliferate (generate immunological memory) virgin B cells and B memory cells. In vitro CPS-K induced the differentiation of IgM virgin B cells, IgM B memory cells and IgG B memory cells to AFC, as well as or better than SRBC. The differentiation of B memory cells to AFC by CPS-K did not require the participation of macrophages or T cells, whereas the action of SRBC depended strictly upon the helper actions of these cells. The responsiveness to CPS-K and SRBC of normal and antigen-primed spleen cells as judged by anti-SRBC PFC responses in vitro was markedly decreased after stimulation of virgin B cells and B memory cells in vivo by CPS-K injection into normal or primed mice but greatly increased after the injection of SRBC. The decrease in the responsiveness to CPS-K of spleen cells from mice treated with CPS-K appeared principally due to exhaustion of the functions of B cells and B memory cells. From the present data it has been concluded that the signals required for the differentiation and proliferation of B cells of B memory cells are different from each other, the signal for differentiation being provided by either antigen (SRBC) or PBA (CPS-K), while the signal for proliferation only by antigen.

Animals↗

Electrodermal differentiation of deception: perceived accuracy and perceived memorial content manipulations.

The demonstration of deception as a psychophysiological phenomenon requires a comparison of physiological responses to two conditions (experimental and control) which differ only with respect to deception. Such electrodermal (skin conductance response) differentiation was recently reported in the Differentiation of Deception paradigm, which controls for two potentially important sources of confounding in polygraph (often referred to as the Detection of Deception): differential question significance and differential frequency of question occurrence. The present study manipulated (between 32 subjects in a 2 x 2 design) two two-level, subjective factors in the paradigm: Perceived Accuracy of polygraphy (written and oral instructions characterising accuracy as high vs low) and Perceived Memorial Content (20 more complex, less personal, and less meaningful questions vs 6 less complex, more personal, and more meaningful questions). Significant differentiation of deception was again obtained, as was evidence for the effectiveness of the manipulations. However, the deception phenomenon was not clearly affected by either of the two subjective factors. In addition, one post-hoc test showed significantly increased differentiation under the low Perceived Accuracy condition, which is contrary to the widespread belief of polygraphers that high perceived accuracy is not only important but even essential for the detection of deception. However, the applied, polygraphic aim of detecting guilt in individuals is quite different from the scientific, psychophysiological aim of differentiating deception as a psychological process, and the phenomena involved probably have different causes.

Deception↗

'Normal counterparts' of nodal peripheral T-cell lymphoma.

Peripheral T-cell lymphomas (PTCL) have been difficult to classify. A homogeneous principle of classification is still lacking, partly because lymph node compartments containing functionally distinct T-cell subsets have not been identified. A correlation to differentiated T-cell subsets, as CD4(+) or CD8(+) cells as well as cytotoxic populations has not revealed clinically meaningful entities. Upon antigen encounter, mature T-cells pass through distinct stages characterized by their surface molecule expression. Naïve T-cells are CD45RA(+)/CD45R0(-)/CD27(+)/CCR7(+), however, after antigen contact CD45RA expression is replaced by CD45R0. They differentiate to central memory cells, which retain CD27 and CCR7, or to effector-memory cells, which loose expression of both molecules depending on the strength of the antigen interaction. Immunohistological analysis of PTCL showed an effector or effector-memory cell phenotype (CD45RA(-)/CD45R0(+)/CD27(-)) for both angioimmunoblastic T-cell lymphoma (AILT) and anaplastic large cell lymphoma (ALCL), but different cytotoxic and activation markers expressed by these tumours. A subset of CD4(+) PTCL-not otherwise specified (PTCL-NOS) may correspond to a central memory cell phenotype (CD45RA(-)/CD45R0(+)/CD27(+)). Thus, a correlation of PTCL to stages of differentiation, rather than to the direction of differentiation, may reveal homogeneous categories. A comparison between the lymphomas and their normal counterparts may contribute to the understanding of the underlying transformation mechanisms.

Antigens, Differentiation, T-Lymphocyte↗

CXCR3 is required for migration to dermal inflammation by normal and in vivo activated T cells: differential requirements by CD4 and CD8 memory subsets.

Lymphocytes in inflamed tissues express numerous chemokine receptors. The relative importance of these receptors for migration in inflammation is unclear. The role of CXCR3 in T cell subset migration was examined using monoclonal antibodies developed to rat CXCR3. CXCR3 was expressed on sixfold more CD8(+) ( approximately 30%) than CD4(+) ( approximately 5%) T cells in spleen, lymph nodes and blood, and on approximately 10% of CD4(+)CD45RC(-) (memory) and approximately 50% of CD8(+)CD45RC(+) spleen T cells. After immunization, CXCR3 increased tenfold on CD4(+) lymph node lymphoblasts ( approximately 55%), and >90% of inflammatory exudate T cells were CXCR3(+). CXCR3(+) T cells migrated significantly better than CXCR3(-) T cells to all dermal inflammatory stimuli tested in vivo, even though these T cells are a minority of the memory T cells. Blocking CXCR3 inhibited recruitment of 60-85% of unstimulated T cells and up to 90% of CD8(+)CD45RC(+) effector T cells, but caused <50% inhibition of CD4(+) and CD8(+) memory (CD45RC(-)) T cells. About 90% of T lymphoblast migration to IFN-gamma, IFN-gamma plus TNF-alpha, polyinosinic polycytidylic acid, lipopolysaccharide, and delayed-type hypersensitivity (DTH)-induced inflammation was inhibited. Blockade also reduced DTH-induced induration. Thus, CXCR3 has a non-redundant role in T cell migration to dermal inflammation and is critical for activated T lymphoblast recruitment, but memory T cells are less dependent on CXCR3 for their infiltration.

Animals↗

Early childhood memories: accuracy and affect.

Subjects were asked to report the earliest memories of their lives. Where possible, the memory protocols were submitted to adults present at the time of the original episode for possible confirmation. The majority of memories were characterized by distinct emotion, with a higher count of negative than of positive emotion. The majority of memories proved accurate, with confirmation operating at as high a level in the case of positive or emotionally neutral memories as of negative memories. General memory content showed no differential patterns across negative and positive memories. Thus claims that infantile memories are powered uniquely by trauma, and/or routinely include distortions, were not supported. Evidence was found that some memories recalled as emotionally bland by the subject had involved an originally emotional episode.

Adult↗

Differential effects of distraction during working memory on delay-period activity in the prefrontal cortex and the visual association cortex.

Maintaining relevant information for later use is a critical aspect of working memory (WM). The lateral prefrontal cortex (PFC) and posterior sensory cortical areas appear to be important in supporting maintenance. However, the relative and unique contributions of these areas remain unclear. We have designed a WM paradigm with distraction to probe the contents of maintenance representations in these regions. During delayed recognition trials of faces, selective interference was evident behaviorally with face distraction leading to significantly worse performance than with scene distraction. Event-related fMRI of the human brain showed that maintenance activity in the lateral PFC, but not in visual association cortex (VAC), was selectively disrupted by face distraction. Additionally, the functional connectivity between the lateral PFC and the VAC was perturbed during these trials. We propose a hierarchical and distributed model of active maintenance in which the lateral PFC codes for abstracted mnemonic information, while sensory areas represent specific features of the memoranda. Furthermore, persistent coactivation between the PFC and sensory areas may be a mechanism by which information is actively maintained.

Adult↗

Reproductive experience differentially affects spatial reference and working memory performance in the mother.

The transition to motherhood results in a number of hormonal, neurological, and behavioral changes necessary to ensure offspring survival. Once motherhood is established, further neurological and behavioral changes may result with additional parity and mothering. Recent research has shown that motherhood enhances both hippocampal-dependent learning and memory and oxytocin-induced long-term potentiation, suggesting that the hippocampus is affected by mothering. In turn, degree of maternal behavior, either high or low, has been shown to affect spatial learning and memory performance in adult offspring. The present experiment aimed to investigate the effect of reproductive experience (nulli-, primi-, and multiparity and mothering) and degree of maternal behavior on hippocampus-dependent learning and memory in the mother. Results show that regardless of error type, primiparous rats make fewer errors compared to nulliparous rats, while multiparous rats show a trend towards making fewer errors compared to nulliparous rats. In addition, mothers who spend less time licking and nursing offspring had fewer reference memory errors. Perhaps the enhanced learning and memory in the inexperienced, new mother allows her to effectively acquire the suite of maternal behaviors necessary to ensure offspring survival and achieve reproductive success with subsequent reproductive experience.

Animals↗

Differential localization of brain systems subserving memory for names and faces in normal subjects with event-related potentials.

Evidence from brain-damaged patients suggests different memory systems for verbal and nonverbal stimuli which also have different neuroanatomical substrates. We explored whether the scalp topographies of event-related potentials (ERPs) might confirm the dissociability of these systems. Unfamiliar faces and names were presented in separate conditions, study blocks alternating with recognition blocks. During recognition the familiarity of each stimulus was rated on a 4-point scale. The amplitudes of the ERPs to the study items were monotonically related in size to the mean subsequent familiarity ratings. Memory-related ERP differences (Dm) were calculated by subtracting ERPs recorded during the study phase to items with low subsequent familiarity ratings from items with high familiarity ratings. The Dm for faces and names showed stimulus-specific scalp topographies between 400 and 800 ms. These findings confirm that memory for names and faces is mediated by at least partially different brain systems.

Adult↗

Development of antibody-forming cells in follicles of lymph nodes of mice after continuous antigenic stimulation.

It was the purpose of the present study to test a hypothesis on the direct differentiation of newly formed memory B cells into antibody-forming cells (AFC) in the follicles of lymph nodes. AFC may develop in follicles when mobile antigen is present at the moment that such memory B cells have completed their differentiation under influence of immune complexes trapped on follicular dendritic cells (FDC). In order to study whether the simultaneous presence of mobile antigen and immobilized immune complexes on FDC alters the normal distribution of AFC in lymph nodes, different immunization protocols with the thymus-dependent antigens trinitrophenylated keyhole limpet haemocyanin (TNP-KLH) and horseradish peroxidase (HRP) were used. Results confirm that, provided that mobile antigen and immobilized immune complexes are present simultaneously, AFC that are normally found in the medulla of the lymph node may also develop in the follicles.

Animals↗

Vulnerability of skeletal and autonomic manifestations of memory in the rat to electroconvulsive shock.

A series of experiments was performed to probe the phenomenon of sparing of memory by electroconvulsive shock (ECS) when amnesia is assessed by autonomic indices. Differential vulnerability of memory as indexed by skeletal and autonomic responses was determined to be a function of a higher threshold to disruption for autonomically indexed memories. Autonomic responses spared by ECS were found to reflect underlying memory rather than artifact produced by nonassociative factors arising from the interaction of conditioned stimulus (CS), unconditioned stimulus (US), and ECS. Furthermore, retrograde amnesia gradients of different slopes were observed with skeletal and autonomic measures. Two interpretations of these phenomena are discussed. One hypothesis suggests that individual components of a memory are consolidated at different rates, whereas the other concerns the differentail sensitivity of various measures in assessing memory.

Animals↗

Differential contributions of central and effector memory T cells to recall responses.

Although the absolute number of memory CD8+ T cells established in the spleen following antigen encounter remains stable for many years, the relative capacity of these cells to mediate recall responses is not known. Here we used a dual adoptive transfer approach to demonstrate a progressive increase in the quality of memory T cell pools in terms of their ability to proliferate and accumulate at effector sites in response to secondary pathogen challenge. This temporal increase in efficacy occurred in CD62L lo (effector memory) and CD62L hi (central memory) subpopulations, but was most prominent in the CD62L hi subpopulation. These data indicate that the contribution of effector memory and central memory T cells to the recall response changes substantially over time.

Adoptive Transfer↗