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Patrizia Vannini

Publications and source records attributed to Patrizia Vannini.

5 recordsLinked to original sources

Increased sensitivity in mapping task demand in visuospatial processing using reaction-time-dependent hemodynamic response predictors in rapid event-related fMRI.

Searching for the neural correlates of visuospatial processing using functional magnetic resonance imaging (fMRI) is usually done in an event-related framework of cognitive subtraction, applying a paradigm comprising visuospatial cognitive components and a corresponding control task. Besides methodological caveats of the cognitive subtraction approach, the standard general linear model with fixed hemodynamic response predictors bears the risk of being underspecified. It does not take into account the variability of the blood oxygen level-dependent signal response due to variable task demand and performance on the level of each single trial. This underspecification may result in reduced sensitivity regarding the identification of task-related brain regions. In a rapid event-related fMRI study, we used an extended general linear model including single-trial reaction-time-dependent hemodynamic response predictors for the analysis of an angle discrimination task. In addition to the already known regions in superior and inferior parietal lobule, mapping the reaction-time-dependent hemodynamic response predictor revealed a more specific network including task demand-dependent regions not being detectable using the cognitive subtraction method, such as bilateral caudate nucleus and insula, right inferior frontal gyrus and left precentral gyrus.

Adult↗

Motion standstill leads to activation of inferior parietal lobe.

Previous studies on motion perception revealed motion-processing brain areas sensitive to changes in luminance and texture (low-level) and changes in salience (high-level). The present functional magnetic resonance imaging (fMRI) study focused on motion standstill. This phenomenon, occurring at fast presentation frequencies of visual moving objects that are perceived as static, has not been previously explored by neuroimaging techniques. Thirteen subjects were investigated while perceiving apparent motion at 4 Hz, at 30 Hz (motion standstill), isoluminant static and flickering stimuli, fixation cross, and blank screen, presented randomly and balanced for rapid event-related fMRI design. Blood oxygenation level-dependent (BOLD) signal in the occipito-temporal brain region MT/V5 increased during apparent motion perception. Here we could demonstrate that brain areas like the posterior part of the right inferior parietal lobule (IPL) demonstrated higher BOLD-signal during motion standstill. These findings suggest that the activation of higher-order motion areas is elicited by apparent motion at high presentation rates (motion standstill). We interpret this observation as a manifestation of an orienting reaction in IPL towards stimulus motion that might be detected but not resolved by other motion-processing areas (i.e., MT/V5).

Adult↗

Age-related changes on platelet membrane: a study on elderly and centenarian monozygotic twins.

Cellular senescence is a biological process associated with aging and longevity. Successful aging is believed to be related to the ability to cope with different environmental stresses. The objective of this study was to investigate if cellular senescence is associated with platelet membrane modifications on subjects of different age, in particular on monozygotic twins and if these changes might be affected by both genetic components and environmental factors. The work was performed on 81 monozygotic twin pairs of different age. Platelet membranes from centenarian twins showed: decreased both basal lipid peroxide levels and membrane fluidity compared with elderly subjects; Na(+)/K(+)-ATPase activity and SA content are similar to those evaluated in young group, suggesting one of their important roles in the successful aging. We concluded that platelet membranes from centenarians show deeper structural and functional modifications than in elderly subjects and that these changes might play a protective role against oxidative damage. No statistical difference in biochemical parameters was observed between two sibpairs in each twin pair highlighting that environmental factors (diet, life-style) affect age-related platelet membrane changes less than their common genetic component. Thus genetic factors might play an important role in the mechanisms at the basis of successful aging.

Adult↗

Task demand modulations of visuospatial processing measured with functional magnetic resonance imaging.

Brain imaging based on functional magnetic resonance imaging (fMRI) provides a useful tool to examine neural networks and cerebral structures subserving visuospatial function. It allows not only the qualitative determination of which areas are active during task processing, but also estimates the quantitative contribution of involved brain regions to different aspects of spatial processing. In this study, we investigated in 10 healthy subjects how the amount of task (computational) demand in an angle discrimination task was related to neural activity as measured with event-related fMRI. Task demand, indicated by behavioral performance, was modulated by presenting clocks with different angular disparity and length of hands. Significant activations were found in the cortical network subserving the visual and visuospatial processing, including the right and left superior parietal lobules (SPL), striate visual areas, and sensorimotor areas. Both blood oxygenation level-dependent (BOLD) signal strength and spatial extent of activation in right as well as left SPL increased with task demand. By contrast, no significant correlation or a very weak correlation was found between the task demand and the BOLD signal as well as between task demand and spatial extent of activations in the striate visual areas and in the sensorimotor areas. These results support the hypothesis that increased computational demand requires more brain resources. The brain regions that are most specialized for the execution of the visuospatial task can be assessed by relating the imposed task demand to the functional activation measured.

Adult↗

[Functional MRI of the elderly can complete the picture of cerebral functions].

Functional Magnetic Resonance Imaging, fMRI, is a method for the study of neuronal circuits underlying cognitive, sensory, emotional and motor activities in the living human brain. An important question is whether elderly persons and patients with cognitive deficits differ from others as regards neuronal activation. Not many studies have been published but some of them have shown surprising results. This new research has shown some very interesting new facts about the vascular response and the regulation of the microvasculature in the brain. Most fMRI studies have been performed on healthy young males, but in our opinion this method could reveal new findings to complete the picture of human cognition if studies were to be performed involving elderly people and patients with dementia.

Aged↗