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Deana B Davalos

Publications and source records attributed to Deana B Davalos.

13 recordsLinked to original sources

Effect of task difficulty on the functional anatomy of temporal processing.

Temporal processing underlies many aspects of human perception, performance and cognition. The present study used fMRI to examine the functional neuroanatomy of a temporal discrimination task and to address two questions highlighted by previous studies: (1) the effect of task difficulty on neuronal activation and (2) the involvement of the dorsolateral prefrontal cortex (DLPFC) in timing. Twenty healthy subjects were scanned while either judging whether the second in a pair of tones was shorter or longer in duration than the standard tone or simply responding to the presentation of two identical tones as a control condition. Two levels of difficulty were studied. Activation during the less difficult condition was observed only in the cerebellum and superior temporal gyrus. As difficulty increased, additional activation of the supplementary motor area, insula/operculum, DLPFC, thalamus and striatum was observed. These results suggest the cerebellum plays a critical role in timing, particularly in gross temporal discrimination. These results also suggest that recruitment of frontal and striatal regions during timing tasks is load-dependent. Additionally, robust activation of the dorsolateral prefrontal cortex under conditions of minimal working memory involvement supports the specific involvement of this region in temporal processing rather than a more general involvement in working memory.

Acoustic Stimulation↗

Age differences in fluid intelligence: contributions of general slowing and frontal decline.

The current study examined the contributions of general slowing and frontal decline to age differences in fluid intelligence. Participants aged 20-89 years completed Block Design, Matrix Reasoning, simple reaction time, choice reaction time, Wisconsin Card Sorting, and Tower of London tasks. Age-related declines in fluid intelligence, speed of processing, and frontal function were observed. Hierarchical regression analyses showed that the processing speed and frontal function measures accounted for significant variance in fluid intelligence performance, but there was also a residual effect of age after controlling for each variable individually as well as both variables. An additional analysis showed that the variance in fluid intelligence that was attributable to processing speed was not fully shared with the variance attributable to frontal function. These findings suggest that the age-related decline in fluid intelligence is due to general slowing and frontal decline, as well as other unidentified factors.

Adult↗

Age-related change in neural processing of time-dependent stimulus features.

Aging is associated with changes in automatic processing of task-irrelevant stimuli, and this may lead to functional disturbances including repeated orienting to nonnovel events and distraction from task. The effect of age on automatic processing of time-dependent stimulus features was investigated by measurement of the auditory mismatch negativity (MMN) in younger (18-23) and older (55-85) adults. Amplitude of MMN recorded during a paradigm involving low-probability deviation in interstimulus interval (from 500 ms to 250 ms) was found to be reduced in the older group at fronto-central sites. This effect was paralleled by, and correlated to, decreased sensory gating efficiency for component N1 recorded during a separate paradigm involving alternate presentation of auditory stimuli at long (9 s) and short (0.5 s) interstimulus intervals. Further, MMN amplitude was correlated to behavioral performance on a small subset of neuropsychological tests, including the Rey Auditory Verbal Learning Test, within a group of healthy older adults. The results support the hypothesis that aging is associated with declines in automatic processing of time-dependent stimulus features, and this is related to cognitive function. These conclusions are considered in the context of age-related declines in prefrontal cortex function and associated increases in susceptibility to task-irrelevant stimuli.

Acoustic Stimulation↗

Effects of perceived parental school support and family communication on delinquent behaviors in latinos and white non-latinos.

The authors examined the roles of perceived parental school support and family communication in the context of delinquent behaviors in Mexican American and White non-Latino adolescents. Family communication was defined as the degree to which adolescents endorsed that they communicated with their parents about a variety of topics. The Parental School Support scale was administered to assess adolescents' perceptions of parental support for academic pursuits. Data analysis included the relationship between these variables and their predictive relationship to delinquency, and the relationship to gender and ethnicity. Results demonstrated that adolescents' perceptions of family communication and parental school support were related to the likelihood of committing delinquent acts. There were no significant differences in gender or ethnicity in perceived levels of family communication and parental school support.

Adolescent↗

Behavioral and electrophysiological indices of temporal processing dysfunction in schizophrenia.

Timing deficits in schizophrenia have been noted in several behavioral studies. However, the involvement of mediating factors, such as inattention, has not been ruled out as contributing to these effects. Mismatch negativity (MMN), an electrophysiological measure, may provide a more direct index of stimulus processing ability in individuals with schizophrenia. The current study explored the relationship between behavioral time judgments and a time-based MMN paradigm. Participants were administered two MMN paradigms consisting of an "easy" or "difficult" deviant and an analogous behavioral measure of time processing. Matched against a healthy comparison group, patients exhibited decreased MMN amplitude on the "difficult" deviant interval only. However, on the behavioral paradigm, the patients made significantly more errors across all conditions. These results suggest that behavioral measures of time processing may reflect different processes than those captured by preattentive physiological measures in this population.

Acoustic Stimulation↗

Small changes in temporal deviance modulate mismatch negativity amplitude in humans.

The relative sensitivity of mismatch negativity (MMN) amplitude to small changes in temporal (i.e. timing) deviance of an ongoing stimulus train was investigated. MMN was measured at Fz in response to 3.75-15% decrements of inter-stimulus interval from a 400 ms standard with a deviant probability of 1/15. This parameter space represents the smallest degree of deviance and the narrowest range of variation that has been tested in the context of MMN sensitivity to temporal variables. Waveform amplitude was found to significantly increase with degree of temporal deviance even within this relatively narrow parameter space. This finding is consistent with the view that the MMN corresponds to pre-attentive neural activity that subsequently allows the conscious perception of time during temporal discrimination tasks.

Acoustic Stimulation↗

Neuropsychological deficits in children associated with increased familial risk for schizophrenia.

By studying neuropsychological performance in children genetically at-risk for schizophrenia, greater understanding may be obtained regarding the developmental processes of schizophrenia and associated cognitive weaknesses. A variety of cognitive deficits in genetically at-risk children have been reported. The present study was designed to examine cognitive tasks that have traditionally differentiated children genetically at-risk for schizophrenia (e.g. working memory) from normal children, while also assessing abilities that have received scant attention in this population. Aspects of emotional perception, verbal abilities, inhibition, visuo-spatial skills, and working memory were assessed in children of schizophrenic parents and normal children. Significant differences in performances were identified in at-risk children on measures of verbal skills, working memory and inhibition. Findings suggest that children genetically at-risk for developing schizophrenia exhibit neurocognitive weaknesses generally consistent with those noted in the literature. However, inhibition also appeared to be a cognitive process that significantly differentiated the groups. The possibility of a developmental expression of neurocognitive deficits is discussed.

Adolescent↗

Working memory, inhibition, and fluid intelligence as predictors of performance on Tower of Hanoi and London tasks.

The contributions of working memory, inhibition, and fluid intelligence to performance on the Tower of Hanoi (TOH) and Tower of London (TOL) were examined in 85 undergraduate participants. All three factors accounted for significant variance on the TOH, but only fluid intelligence accounted for significant variance on the TOL. When the contribution of fluid intelligence was accounted for, working memory and inhibition continued to account for significant variance on the TOH. These findings support argument that fluid intelligence contributes to executive functioning, but also show that the executive processes elicited by tasks vary according to task structure.

Adolescent↗

Mismatch negativity in detection of interval duration deviation in schizophrenia.

Temporal processing deficits have been noted in behavioral studies assessing patients with schizophrenia. The current study sought to explore the physiology of temporal perception while controlling the effects of motivation, attention and other cognitive processes that may contribute to behavioral measures of temporal processing. Mismatch negativity (MMN) waveforms were measured in response to variations in the temporal parameters of an ongoing train of pure tones. A standard inter-stimulus interval of 400 ms was interrupted, on average, every 20th tone by an inter-stimulus interval of 340 ms. Amplitude of MMN waveform elicited by the temporal deviance was significantly reduced in the schizophrenia group compared with controls (p = 0.016). Results suggest that behavioral difficulties on time processing tasks in schizophrenia may reflect a physiological deficit in temporal perception in this population rather than simply more general difficulties in attention or motivation.

Adult↗

Effects of interval duration on temporal processing in schizophrenia.

INTRODUCTION: Temporal processing has received scant attention in the literature pertaining to cognitive deficits in patients with schizophrenia. Previous research suggests that patients with schizophrenia exhibit temporal perception deficits on both auditory and visual stimuli. The current study investigated the effects of interval manipulation to (1) replicate the original findings with a larger sample and an increased number of trials (2) assess the degree to which both patients and controls can differentiate temporal changes in a range of experimental interstimulus intervals, and (3) explore whether different interstimulus interval durations pose different levels of difficulty for the patients with schizophrenia. METHODS: Participants were asked to decide whether temporal intervals were shorter or longer than standard intervals on a computer-based auditory temporal perception task. The standard interval remained the same duration throughout the various tasks. The interstimulus interval separating the standard and experimental intervals varied in the range of 500, 1000, or 3000 ms. Data are presented for a sample of 16 patients with schizophrenia and 15 controls. RESULTS: Data suggest that patients with schizophrenia exhibit deficits in differentiating interval durations across all paradigms compared to their control-group peers on a range of auditory tasks (p<.001). CONCLUSIONS: These results are consistent with a general temporal deficit in schizophrenia. However, the roles of medication and localization are also addressed.

Adult↗

Enhancement of executive functioning skills: an additional tier in the treatment of schizophrenia.

Schizophrenia is viewed by most as having a neuropsychological component, with deficits primarily occurring in the areas of attention/concentration, memory, and executive functioning. These deficits often contribute to difficulties in everyday living and social functioning. The purpose of this study is to examine the efficacy of cognitive rehabilitation methods, typically utilized by brain-injured patients, to improve the executive functioning skills of patients with schizophrenia spectrum disorders. While this pilot study is limited in terms of sample size, results suggest that the addition of cognitive rehabilitation to the comprehensive treatment of schizophrenia could be beneficial in enhancing daily living skills.

Activities of Daily Living↗

Deficits in auditory and visual temporal perception in schizophrenia.

INTRODUCTION: Characteristics of time perception have not been well documented in patients with schizophrenia. The current study investigated time estimation to (1) test whether visual and auditory time perception varied between patients and controls, (2) assess the degree to which patients and controls can differentiate changes in experimental intervals, and (3) explore whether the temporal deficits suggest a general time perception deficit versus modality-specific differences. METHODS: Participants were asked to decide whether temporal intervals were shorter or longer than standard intervals on computer-based auditory and visual temporal perception tasks. Data are presented for a sample of 10 patients with schizophrenia and 10 normal controls. RESULTS: Data suggest that patients with schizophrenia exhibit deficits in differentiating subtle differences in intervals in the tens of milliseconds range, compared to their normal control peers on both auditory (p < .01) and visual perception tasks (p < .01). CONCLUSIONS: Preliminary data suggest that there is a general temporal processing deficit in schizophrenia. However, future research using complementary techniques may provide useful information regarding the specific types of temporal deficits that affect patients with schizophrenia and the physiology of the dysfunction.

Journal Article↗

A review of the use of single-photon emission computerized tomography as a diagnostic tool in mild traumatic brain injury.

The aim of this literature review was to follow up on recommendations set forth in 1996 reviews by the Society for Nuclear Medicine Brain Imaging Council (SNMBIC) and the Therapeutics and Technology Assessment Subcommittee of the American Academy of Neurology (TTASAAN) regarding the use of single-photon emission computerized tomography (SPECT) with mild traumatic brain injury (MTBI). An extensive review of databases was conducted to determine studies analyzing MTBI that used SPECT as a diagnostic tool between the years of 1966 and 2000. Although only 9 studies met the established criteria, the review suggests that SPECT may be a useful tool in the detection of MTBI and in treatment planning. However, because of the lack of consensus regarding SPECT's sensitivity, it is recommended that future researchers consider the possibility of multiple subtypes of MTBI, hemodynamically different types of contusions, and the need for complementary diagnostic tools.

Brain Injuries↗