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Nguchu, B. A.

Publications and source records attributed to Nguchu, B. A..

2 recordsLinked to original sources

Longitudinal white matter alterations in SIVmac239 infected rhesus monkeys with and without regular cART treatment

ObjectiveWe use the SIV-mac239 infected Chinese rhesus monkeys to longitudinally investigate white matters alterations with and without regular combined antiretroviral therapy (cART) treatment, and its relationship with clinical tests. Material and methodsDiffusion tensor imaging (DTI), CD4 T cell counts, and CD4/CD8 were obtained at baseline, 10 days, 4th week,12th week, 24th week, and 36th week post virus inoculation. postinfection (wpi). Microstructural properties were examined within 76 white matter defined by DTI-WM atlas for rhesus macaques. Corrections for multiple comparisons were performed using a false discovery rate (p < 0.05, FDR). Correlation analyses between imaging markers and clinical measures (CD4 T-cell counts, CD4/CD8 ratio) were determined using Pearsons correlations. ResultsIn our model, White matter alterations in SIV-infected macaques can be detected as soon as 4 weeks post inoculation in several brain regions. And with time proceeding, the cART can reverse, relieve, or even progressive effects. CD4 T-cell count is mainly associated with DTI metrics before the cART, whereas CD4/CD8 ratio was associated with white matter alteration with and without cART. ConclusionSIV-mac239 infection can be an idol modal to explore HIV induced HIV associated brain alterations, and the first group of white matter alterations was as soon as 4 weeks post inoculation in structure next to the periventricular area. As the time progressed, cART can bring different effect to each region, including reversed, relieved, and even progressive effects. In addition, these changes are closely linked to CD4/CD8 ratio even after cART. Importance

animal behavior and cognition↗

Overlapping Representation of Basic Tastes in the Human Gustatory Cortex

The topological representation is a fundamental property of human primary sensory cortices. The human gustatory cortex (GC) responds to the five basic tastes: bitter, salty, sweet, umami, and sour. However, the topological representation of the human gustatory cortex remains controversial. Through functional magnetic resonance imaging(fMRI) measurements of human responses to the five basic tastes, the current study aimed to delineate the taste representations within the GC. During the scanning, the volunteers tasted solutions of the five basic tastes, then washed their mouths with the tasteless solution. The solutions were then sucked from the volunteers mouths, eliminating the action of swallowing. The results showed that the bilateral mid-insula activated most during the taste task, and the active areas were mainly in the precentral and central insular sulcus. However, the regions responding to the five basic tastes are substantially overlapped, and the analysis of contrasts between each taste response and the averaged response to the remaining tastes does not report any significant results. Furthermore, in the gustatory insular cortex, the multivariate pattern analysis (MVPA) was unable to distinguish the activation patterns of the basic tastes, suggesting the possibility of weakly clustered distribution of the taste-preference neural activities in the human insular cortex. In conclusion, the presented results suggest overlapping representations of the basic tastes in the human gustatory insular cortex.

neuroscience↗