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Pilar Salgado-Pineda

Publications and source records attributed to Pilar Salgado-Pineda.

16 recordsLinked to original sources

Brain T1 intensity changes after levodopa administration in healthy subjects: a voxel-based morphometry study.

AIM: To test T1 intensity variations induced by levodopa administration in the regional fixation area in the human brain. METHOD: Using non-invasive magnetic resonance imaging (MRI) technique [T1-weighted sequence MPRAGE; TE/TR/TI = 5/25/800 ms; impulsion angle = 15 degrees; field of view = 256 x 230 x 180 mm3; acquisition matrix = 256 x 192 x 104; reconstruction matrix = 256 x 256 x 128), we tested changes in the T1 MRI signal intensity resulting in changes in the grey matter automatic classification after administration of a single dose of 100 mg of levodopa by a voxel-based morphometry method (VBM) in 12 healthy subjects. RESULTS: The VBM analysis demonstrated an increased number of voxels attributed to grey matter after levodopa administration in an anatomical cluster which included substantia nigra, tegmental ventral area and subthalamic nucleus bilaterally, the principal origin and first relay nuclei of projections in brain dopaminergic systems (t = 8.61; corrected for all grey matter volume P < 0.001). CONCLUSION: Our results suggest that levodopa administration could induce an MRI T1 signal intensity variation that is not evident to the naked eye, but is detectable by measuring local signal intensities. Possible clinical applications are discussed.

Aged↗

Longitudinal evaluation of cerebral morphological changes in Parkinson's disease with and without dementia.

OBJECTIVE: To investigate the pattern of brain atrophy across time in a sample of Parkinson's disease (PD) patients with and without dementia using voxelbased morphometry (VBM) analysis. METHODS: The initial sample comprised thirteen non-demented PD patients and sixteen demented patients. Longitudinal cognitive assessment and structural MRI were performed. The mean follow-up period was 25 months (SD=5.2). From this initial group, eight PD patients with dementia (5 men and 3 women) and eleven PD patients without dementia (7 men and 4 women) were reevaluated. MRI 3D structural images were acquired and analyzed by means of the optimized VBM procedure with Statistical Parametric Mapping (SPM2). RESULTS: VBM analysis showed a progressive grey matter volume decrease in patients with PD without dementia in limbic, paralimbic and neocortical associative temporooccipital regions. In patients with dementia the loss mainly involved neocortical regions. CONCLUSION: VBM revealed a significant loss of grey matter volume in PD patients with and without dementia with disease progression. The decrease in limbic and paralimbic regions is widespread in non-demented patients. Neocortical volume reduction is the most relevant finding in patients with dementia. This suggests that the neocortex is a substrate for dementia in Parkinson disease.

Aged↗

Structural brain changes in Parkinson disease with dementia: a voxel-based morphometry study.

BACKGROUND: Parkinson disease with dementia (PDD) results from neuropathological changes in cortical and subcortical brain regions. Voxel-based morphometric analysis of magnetic resonance images can contribute to in vivo identification of the cerebral regions predominantly involved in PDD. OBJECTIVE: To identify structural cerebral regions most closely related to the presence of PDD. DESIGN: Magnetic resonance images were obtained from 16 patients who had PDD, 13 patients with PD without dementia, and 13 age-matched healthy control subjects. Gray matter volumes were compared using optimized voxel-based morphometric analyses. RESULTS: Compared with healthy controls, patients with PDD showed gray matter volume decreases in several of the following regions: bilateral putamen, accumbens nuclei, left side of the thalamus, bilateral hippocampus, parahippocampal region, and anterior cingulate gyrus. Patients with PD also showed gray matter reductions compared with healthy controls in the right side of the hippocampus, left anterior cingulate gyrus, and left superior temporal gyrus. CONCLUSIONS: The hippocampus, thalamus, and anterior cingulate are the regions most affected in PDD. Our results agree with recent neuropathological findings suggesting the involvement of the limbic and cortical areas in PD.

Aged↗

Volume changes in gray matter in first-episode neuroleptic-naive schizophrenic patients treated with risperidone.

Structural neuroimaging techniques have consistently shown that treatment of schizophrenic patients with conventional antipsychotics causes an increase in basal ganglia volume. However, findings in schizophrenic patients treated with the newer atypical antipsychotic drugs are less consistently reported. To explore this issue, the authors used a whole-brain, unbiased, and automated technique for comparing brain structural features across scans in schizophrenic patients before and after a treatment with the atypical antipsychotic risperidone. T1-weighted images from 11 first-episode neuroleptic-naive schizophrenic patients were processed and analyzed for regions of interest (basal ganglia) by using optimized voxel-based morphometry. Scans were repeated after 3 months of continuous treatment with risperidone. Region of interest-based voxel-based morphometry analyses revealed increases in gray matter volume for the right and left caudate nuclei and for the left accumbens after the treatment with risperidone. Hence, in our sample of schizophrenic patients, treatment with risperidone was associated, in contrast to the findings for other atypical antipsychotics, with an increase in basal ganglia volume. Such discrepancy could be related to the pharmacodynamics of risperidone (the atypical antipsychotic showing the higher affinity for D2 receptors) and the rather high mean doses used in our study (ie, 6.05 mg/d).

Adolescent↗

Decreased cerebral activation during CPT performance: structural and functional deficits in schizophrenic patients.

Voxel-based morphometry (VBM) allows the output of structural data in a Statistical Parametric Map of the brain in the same way that the SPM can do with functional data. Using functional magnetic resonance (fMR), we studied brain activation in 14 patients with schizophrenia and 14 matched normal controls. We found significant hypoactivation in patients in several regions, especially in the right hemisphere, in the dorsolateral frontal and temporal regions and in the inferior parietal. Subcortically, we found strong hypoactivity in the thalamus. The optimized VBM method revealed gray matter (GM) abnormalities in the bilateral supramarginal gyrus and cingulate cortex, and in the right inferior temporal regions. Three regions involved in attentional processes showed both structural and functional deficits: the thalamus, the anterior cingulate and the inferior parietal. The results suggest that these regions may be involved in the attentional deficit in schizophrenia.

Adolescent↗

Hippocampal gray matter reduction associates with memory deficits in adolescents with history of prematurity.

Using optimized voxel-based morphometry (VBM), we compared the relationship between hippocampal and thalamic gray matter loss and memory impairment in 22 adolescents with history of prematurity (HP) and 22 normal controls. We observed significant differences between groups in verbal learning and verbal recognition, but not in visual memory. VBM analysis showed significant left hippocampal and bilateral thalamic reductions in HP subjects. Using stereological methods, we also observed a reduction in hippocampal volume, with left posterior predominance. We found correlations between left hippocampal gray matter reductions (assessed by VBM) and verbal memory (learning and percentage of memory loss) in the premature group. The stereological analysis showed a correlation between verbal learning and the left posterior hippocampus. Our results suggest that left hippocampal tissue loss may be responsible for memory impairment and is probably related to the learning disabilities that HP subjects present during schooling.

Adolescent↗

Amygdalar atrophy in panic disorder patients detected by volumetric magnetic resonance imaging.

It has been suggested that the pathophysiology of panic disorder (PD) may involve abnormalities in several brain structures, including the amygdala. To date, however, no study has used quantitative structural neuroimaging techniques to examine amygdalar anatomy in this disorder. Volumetric magnetic resonance imaging (MRI) studies of the amygdalas, hippocampi, and temporal lobes were conducted in 12 drug-free, symptomatic PD patients (six females and six males), and 12 case-matched healthy comparison subjects. Volumetric MRI data were normalized for brain size. PD patients were found to have smaller left-sided and right-sided amygdalar volumes than controls. No differences were found in either hippocampi or temporal lobes. These findings provide new evidence of changes in amygdalar structure in PD and warrant further anatomical and MRI brain studies of patients with this disorder.

Adult↗

Sustained attention impairment correlates to gray matter decreases in first episode neuroleptic-naive schizophrenic patients.

Impaired sustained attention seems to be a specific neuropsychological deficit that is closely linked to schizophrenia. Voxel based morphometry has emerged as a useful tool for the detection of subtle gray matter (GM) abnormalities. The aim of our study was to identify the cerebral regions related to the Identical-Pair version of the Continuous Performance Test (CPT-IP) performance in schizophrenic patients. The study included 13 right-handed, male, first-episode, paranoic, neuroleptic-naive schizophrenic patients and 13 matched controls. High-resolution whole-brain MR images were segmented and analyzed for the whole brain and for regions of interest (ROI) using SPM99. Furthermore, the correlation between CPT-IP performance and GM density was examined. Volumetric analysis of the thalami was also carried out. GM density analysis shown decreases in patients in anterior cingulate gyrus, left inferior frontal, right claustrum, left pulvinar, and dorsomedial bilateral thalamic nuclei, and caudate nuclei as well as left hippocampus and parahippocampal gyrus. Thalamic ROIs revealed a strong correlation between groups differences. The thalamic GM density allowed a good individual classification. GM increases were detected in left insula, superior temporal gyrus, and putamen nucleus, and right supramarginal gyrus. Schizophrenic patients showed smaller left and right thalamic volumes. We found that GM density of the left thalamic nucleus, left angular, and supramarginal gyrus, and left inferior frontal and postcentral gyri correlated significantly with CPT-IP performance in patients but not in controls. Moreover, the restricted ROIs regression was strongly significant for both left and right thalamus. In summary, we provide evidence for the involvement of thalamic, inferior-parietal, and frontal regions in the attentional deficits observed in schizophrenic patients.

Adult↗

Corpus callosum atrophy in adolescents with antecedents of moderate perinatal asphyxia.

BACKGROUND: The corpus callosum (CC) is a cerebral structure that reflects cognitive status in several neurological pathologies. Visual inspection of MRI has shown that hypoxic-ischemic encephalopathy(HIE) causes callosal damage. PRIMARY OBJECTIVE: To quantify the CC surface in a sample of patients with antecedents of HIE and a group of matched controls. RESEARCH DESIGN: Comparisons of CC measures among control subjects, mild HIE patients and moderateHIE patients as well as correlates of CC surface and neuropsychological performance. METHODS: Twenty-one adolescent patients with childhood antecedents of HIE were compared to 21 controls. ANALYZE software was used to semi-automatically measure the CC area. MAIN OUTCOMES AND RESULTS: Patients with moderate HIE showed corpus callosum reduction. The isthmus and genus were the most affected regions. Corpus callosum size correlated with cognitive function. CONCLUSIONS: Corpus callosum quantification provides new evidence of subtle residual deficits in subjects with HIE antecedents without apparent neurological sequelae.

Adolescent↗

Neuropsychological deficits in a child with a left penetrating brain injury.

This case study reports neuropsychological and structural magnetic resonance (MRI) studies of a 10-year-old girl with a left hemisphere lesion, caused by an underwater fishing harpoon penetrating her head when she was 6 years old. The patient showed a marked deficit in the acquisition of reading, writing and arithmetic, as well as an attentional deficit. Magnetic resonance images revealed left cortical lesions in the orbital region and the gyrus angularis, as well as in the caudate and putamen nuclei and longitudinal inferior fascicle. Neuropsychological assessment showed frontal and parietal lobe dysfunctions consistent with the lesional data. The structural data explain the neuropsychological impairment and suggest that, although the left lesion was early and relatively small, plasticity was incomplete.

Child↗

Parahippocampal gray matter density in panic disorder: a voxel-based morphometric study.

OBJECTIVE: The authors examined possible cerebral gray matter abnormalities in patients with panic disorder. METHOD: Gray matter concentration in 18 panic disorder outpatients and 18 healthy subjects was compared by using a voxel-based morphometry approach. RESULTS: Gray matter density of the left parahippocampal gyrus was significantly lower in patients with panic disorder compared with healthy subjects. CONCLUSIONS: This result provides further support for the involvement of the parahippocampal area in the pathophysiology of panic disorder.

Adult↗

Residual hippocampal atrophy in asphyxiated term neonates.

BACKGROUND AND PURPOSE: Previous studies have shown the hippocampus and basal ganglia to be highly sensitive to hypoxic-ischemic insult. The authors' aim was to evaluate the long-term effects of perinatal asphyxia (PA) on the hippocampus and caudate nucleus in a group of participants born at term and who met the criteria for hypoxic-ischemic encephalopathy (HIE). Additionally, the authors looked for damage in other brain regions using voxel-based morphometry (VBM). METHODS: The sample consisted of 13 participants (8 boys and 5 girls) with a mean age at study of 16.23 years (+/- 2.89) with antecedents of perinatal asphyxia, diagnosed as moderate hypoxic-ischemic encephalopathy. A group of 13 healthy adolescents matched for age, sex, educational level, and social background were recruited as a comparison group. MR scans were acquired on a 1.5T Signa (General Electric, Milwaukee, WI) to evaluate hippocampal and caudate volumes and to perform VBM analysis. Finally, Rey's Auditory Verbal Learning Test was administered to evaluate verbal long-term memory. RESULTS: HIE participants were found to have bilateral hippocampal atrophy (P = .015) and gray matter damage in temporal and frontal lobes. The caudate nucleus showed no atrophic changes in PA participants, and VBM analysis did not reveal other consistent brain abnormalities. Verbal long-term memory was slightly worse in HIE participants. CONCLUSIONS: These findings indicate that PA produces hippocampal and other nonspecific long-term damage, which cannot be compensated for by plasticity mechanisms. However, this damage does not preclude normal development and scholarship.

Adolescent↗

Postsurgical cerebral perfusion changes in idiopathic normal pressure hydrocephalus: a statistical parametric mapping study of SPECT images.

UNLABELLED: Our goal was to study cerebral blood flow (CBF) changes after surgery in a group of 15 patients with idiopathic normal pressure hydrocephalus (NPH). METHODS: We used hexamethylpropyleneamine oxime SPECT and statistical parametric mapping (SPM), an image analysis method that does not require prior selection of regions of interest. RESULTS: Our study showed areas of significant increase in perfusion in specific regions of both frontal lobes and the right parietal lobe. Regions of increased perfusion were found in the left prefrontal dorsolateral areas (Brodmann's areas 9 and 45 or 47), right frontal premotor area (Brodmann's area 44), right medial prefrontal region (Brodmann's area 10 or 32), right frontal white matter area (superior longitudinalis fasciculus), and right basal ganglia (lenticular nucleus, putamen, and globus pallidus). In the right hemisphere, another region of increased perfusion was found in the inferior parietal lobule (Brodmann's area 40). The 2 areas most related to clinical improvement were Brodmann's area 32 and the frontal part of the left lobule of Reil insula. CONCLUSION: The results obtained with the SPM method of image analysis confirm and expand on previous CBF literature in NPH, with specific CBF regions located in frontal and parietal areas that improve after surgery in idiopathic NPH.

Aged↗

Dopaminergic contribution to the regulation of emotional perception.

Dopamine (DA) acts as a key neurotransmitter in the brain. Numerous studies have shown its regulatory role in motor and cognitive function. However, the impairment of emotional processes in neurologic and psychiatric pathologies involving the dopaminergic system (Parkinson disease, schizophrenia, autism, Attention Deficit Hyperactivity Disorder, Huntington disease, frontal lobe lesions), as well as the influence that administration of dopaminergic agonists/antagonists exert on the processing of emotion, suggest a role for DA in emotional processes. Moreover, emotional processes are dependent upon a variety of structures, the majority of which form part of the limbic system and are subject to DA innervation. In reviewing the literature, the amygdala emerges as a brain structure critical for emotional processing. It may also be implicated in deficits in emotional recognition found in two major disorders where DA's implication is clear: Parkinson disease and schizophrenia. In addition, the amygdala's response to emotional tasks is likely to be altered by the administration of both agonist and antagonist dopaminergic drugs. Experimental studies reinforce the idea of a dopaminergic contribution to emotional response, as suggested by biochemical, pharmacologic, and lesion experiments. Although the implication of the dopaminergic system in emotional processing appears to be clearly documented, the contribution of specific DA receptor subtypes, or of the DA cotransmitters cholecystokinin and neurotensin, or even glutamate, is, however, still unclear. Altogether, these observations suggest that DA has, undoubtedly, a direct and/or indirect role in the full emotional process.

Animals↗

Effect of levodopa on healthy volunteers' facial emotion perception: an FMRI study.

OBJECTIVE: A link between the brain dopaminergic (DA) system and emotional processing seems to be supported by the DA nature of neural systems surrounding emotional recognition, the occurrence of emotional deficits in medical disorders involving a DA dysfunction, and the effect of DA agonists or antagonists on emotional processing. The authors tested the influence of levodopa administration on emotional processing in a functional MRI (fMRI) study of 10 elderly volunteers. METHODS: A placebo-controlled, cross-over experimental design was used. Subjects received either levodopa (100 mg) or placebo in 2 fMRI sessions. Performance was evaluated with a passive facial emotion perception test. RESULTS: During the placebo situation, the region-of-interest (ROI) analysis showed that emotional processing activated the bilateral amygdala. In levodopa volunteers, this activation was missing. The statistical comparison between the 2 situations (emotional vs control condition) revealed a highly significant reduction in activation of the bilateral amygdala for the levodopa fMRI session (P corrected <0.0001 in the left and P = 0.002 in the right amygdala). CONCLUSION: These results suggest that administration of levodopa to healthy volunteers directly or indirectly impairs the amygdalar activation during the emotional perception task. The authors hypothesized that amygdala activation may conform to an inverted U-shaped function in relation to changing dopamine levels.

Aged↗

Effects of antidepressant drugs on emotion.

Until recently, scant attention has been paid to the effect of antidepressant drugs on emotion, and we have little knowledge about the way antidepressant drugs modulate neural processing of emotional and affective information, or their relationship to mood changes. Numerous behavioral studies have examined the impact of depression on the recognition of facial expressions. Although conflicting results have been obtained, depressive patients seem to attribute a different emotional valence to these stimuli than do control subjects. Recent studies have shown that a single dose of an antidepressant can increase the processing of positively versus negatively valenced material in nondepressed volunteers. Such psychopharmacological effects may ameliorate the negative biases that characterize mood disorders. Antidepressants may therefore work in a manner comparable with that of psychologic treatments that aim to redress negative biases in information processing. Studies with functional neuroimaging also show that emotional processes are dependent upon a variety of structures; most which form part of the limbic system and are altered in depression. Other studies have demonstrated changes in these structures during antidepressant treatment, mainly in the amygdala. Future research should attempt to explain, for example, the implications of changes in early emotional processing on mood and remission of depression, and the differences between acute and chronic treatment.

Animals↗