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Articles 61 - 67 of 67

Full-Text Articles in Neuroscience and Neurobiology

Synaptic Contact Localization In Three Dimensional Space Using A Center Distance Algorithm, Benjamin D. Ausdenmoore Jan 2011

Synaptic Contact Localization In Three Dimensional Space Using A Center Distance Algorithm, Benjamin D. Ausdenmoore

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Spatial distribution of synaptic inputs on the dendritic tree of a neuron can have significant influence on neuronal function. Consequently, accurate anatomical reconstructions of neuron morphology and synaptic localization are critical when modeling and predicting physiological responses of individual neurons. Historically, generation of three-dimensional (3D) neuronal reconstructions together with comprehensive mapping of synaptic inputs has been an extensive task requiring manual identification of putative synaptic contacts directly from tissue samples or digital images. Recent developments in neuronal tracing software applications have improved the speed and accuracy of 3D reconstructions, but localization of synaptic sites through the use of pre- and/or …


Meg And Fmri Fusion For Non-Linear Estimation Of Neural And Bold Signal Changes, Sergey M. Plis, Vince D. Calhoun, Michael Patrick Weisend, Tom Eichele, Terran D.R. Lane Nov 2010

Meg And Fmri Fusion For Non-Linear Estimation Of Neural And Bold Signal Changes, Sergey M. Plis, Vince D. Calhoun, Michael Patrick Weisend, Tom Eichele, Terran D.R. Lane

Wright State Research Institute Publications

The combined analysis of magnetoencephalography (MEG)/electroencephalography and functional magnetic resonance imaging (fMRI) measurements can lead to improvement in the description of the dynamical and spatial properties of brain activity. In this paper we empirically demonstrate this improvement using simulated and recorded task related MEG and fMRI activity. Neural activity estimates were derived using a dynamic Bayesian network with continuous real valued parameters by means of a sequential Monte Carlo technique. In synthetic data, we show that MEG and fMRI fusion improves estimation of the indirectly observed neural activity and smooths tracking of the blood oxygenation level dependent (BOLD) response. In …


The Role Of Nucleotide Signaling In The Regulation Of Icl,Swell In Human 1321n1 Astrocytoma Cells, Ian C. Wenker Jan 2009

The Role Of Nucleotide Signaling In The Regulation Of Icl,Swell In Human 1321n1 Astrocytoma Cells, Ian C. Wenker

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Swollen cells expel osmolytes to decrease volume in a process referred to as Regulatory Volume Decrease, or RVD. The plasma membrane current ICl,swell is ubiquitously expressed in mammalian cells and contributes significantly to RVD. In a variety of cell types, activation of ICl,swell is enhanced by nucleotide signaling. In this study, we used human astrocytoma cells to examine whether nucleotide signaling is necessary or sufficient for ICl,swell activation. Three clones of the 1321N1 human astrocytoma cell line were used for voltage clamp recordings. One clone was transfected with P2Y1 receptors, another with P2Y2 receptors and a third was devoid of …


Clamping Of Intracellular Ph In Neurons From Neonatal Rat Brainstem During Hypercapnia, Vivian C. Nanagas Jan 2009

Clamping Of Intracellular Ph In Neurons From Neonatal Rat Brainstem During Hypercapnia, Vivian C. Nanagas

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In this work, I have made attempts to clamp intracellular pH in the presence of hypercapnic acidosis (HA) in neurons from the locus coeruleus (LC) and nucleus of the solitary tract (NTS) in neonatal rat (ages P3 to P17) brainstem slices. Two approaches were used to minimize hypercapnia-induced ΔpHi: 1) an increase in intracellular buffering power with a high HEPES concentration using whole cell patching techniques in individual neurons, and 2) a weak acid diffusion technique that relies on an efflux of weak acid to counterbalance HA influx thereby clamping pHi in multiple neurons at once. pH …


Ultrastructural Analysis Of Excitatory And Inhibitory Synapses Within The Medial Nucleus Of The Trapezoid Body Of Normal Hearing And Congenitally Deaf Mice, Melissa A. Bautista Jan 2008

Ultrastructural Analysis Of Excitatory And Inhibitory Synapses Within The Medial Nucleus Of The Trapezoid Body Of Normal Hearing And Congenitally Deaf Mice, Melissa A. Bautista

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The auditory brainstem has been the area of much focus in recent years due to its advantages in circuitry and synaptic connections. The endbulbs and calyces of Held are large, glutamatergic synapses within the AVCN and MNTB, respectively. Because of their large size and accessibility these synapses have offered the ability to study pre- and post-synaptic mechanisms of neurotransmission within the central nervous system. The calyx of Held synapse is the main excitatory input into the MNTB principal cells, containing hundreds of individual synaptic specializations, or release sites. Previous studies have identified physiological and morphological changes at the endbulb of …


Sensitization To Trail-Induced Apoptosis In K-Ras 12 Mutant Pancreatic Cancer Cells By Bitc, Christina Ann Wicker Jan 2008

Sensitization To Trail-Induced Apoptosis In K-Ras 12 Mutant Pancreatic Cancer Cells By Bitc, Christina Ann Wicker

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Pancreatic adenocarcinoma is an aggressive cancer with a greater than 95% mortality rate and short survival after diagnosis. Chemotherapeutic resistance hinders successful treatment. This resistance is associated with mutations within codon 12 of the K-Ras gene (K-Ras 12), which is present in over 90% of all pancreatic adenocarcinomas. Codon 12 mutations maintain Ras in a constitutively active state leading to continuous cellular proliferation. Our study determined if TRAIL resistance in pancreatic adenocarcinomas with K-Ras 12 mutations could be overcome by first sensitizing the cells with Benzyl isothiocyanate (BITC). BITC is a component of cruciferous vegetable extracts and a cell cycle …


Regulation Of Calcium Entry Pathway In Jurkat T Cells, Petronilla A. Fruasaha Jan 2008

Regulation Of Calcium Entry Pathway In Jurkat T Cells, Petronilla A. Fruasaha

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Calcium release-activated calcium channels (CRAC) control influx of calcium in human T lymphocytes. Hour-long calcium elevations are necessary for efficient gene expression during T cell activation and proliferation. We report here that, the time course for store-operated Ca2+ entry is short-lived (3-4 min) and therefore, cannot account for the prolonged Ca2+ elevations necessary for NFAT translocation into nucleus. Previous findings strongly suggest that T cell activation is accompanied by cytosolic alkalinization. Here, we show that pH changes in Jurkat T cells following activation with mitogenic lectin, phytohemagglutinin (PHA), depends on the length of time of exposure and the concentration (potency) …