نتایج جستجو برای: ischemiareperfusion injury pyramidal neurons
تعداد نتایج: 484663 فیلتر نتایج به سال:
introduction: many studies have shown that amygdala kindling produces synaptic potentiation by induction of changes in the neuronal electrophysiological properties and inward currents both in epileptic focus and in the areas which are in connection with the epileptic focus and have important role in seizure development and progression such as hippocampal ca1 region. however, cellular mechanisms...
Introduction: (S)- 3,5-Dihydroxyphenylglycine (DHPG) is an agonist for group I metabotropic glutamate receptors. DHPG-induced synaptic depression of excitatory synapses on hippocampal pyramidal neurons is well known model for synaptic plasticity studies. The aim of the present study was to examine the effects of DHPG superfusion on excitatory synapses on pyramidal and fast-spiking GABAergic cel...
Objective(s):The hippocampus has been implicated in pathophysiology of schizophrenia. Prenatal stress is a contributing risk factor for a wide variety of neuropsychiatric diseases including schizophrenia. This study examined long-term effects of prenatal restraint stress on the stereological parameters in the Cornu Ammonis (CA) of adult male rats as an animal model of schizophrenia. Materials ...
Introduction: Considering the antiepileptogenic effects of repeated transcranial magnetic stimulation (rTMS), the effect of rTMS applied during amygdala kindling on spontaneous activity of hippocampal CA1 pyramidal neurons was investigated. Materials and Methods: A tripolar electrode was inserted in basolateral amygdala of Male Wistar rats. After a recovery period, animals received daily kindl...
Introduction: Many studies have shown that amygdala kindling produces synaptic potentiation by induction of changes in the neuronal electrophysiological properties and inward currents both in epileptic focus and in the areas which are in connection with the epileptic focus and have important role in seizure development and progression such as hippocampal CA1 region. However, cellular mechani...
introduction: the present study evaluated morphological changes of ca1 hippocampal neurons following transient bilateral common carotid and permanent left middle cerebral arteries occlusion, also the neuroprotective effects of aspirin i.p injection was inducing assessed after ischemia in male rat. material and methods: in this experiment, 4 groups of animals were used including; control, sham, ...
introduction: although aging is the most important risk factor for alzheimer's disease (ad), there is evidence indicating that neuroinflammation may contribute to the development and progression of the disease. several studies indicated that minocycline may exert neuroprotective effects in rodent models of neurodegenerative diseases. nevertheless, there are also other studies implying that...
Commentary Does impaired inhibition cause epilepsy? Does epilepsy alter inhibitory circuits? These longstanding questions have few clear answers. A recent study by Jin et al. provides a fascinating view of the inputs and outputs of an inhibitory circuit in chronically epileptic neocortex and highlights the complexity of circuit reorganization following injury. The choice of experimental model i...
introduction: alzheimer’s disease (ad) is one of the most common neurodegenerative disorders, which has much benefited from animal models to find the basics of its pathophysiology. in our previous work (haghani, shabani, javan, motamedi, & janahmadi, 2012), a non-transgenic rat model of ad was used in electrophysiological studies. however, we did not investigate the histological aspects in the ...
Partially isolated cortical islands prepared in vivo become epileptogenic within weeks of the injury. In this model of chronic epileptogenesis, recordings from cortical slices cut through the injured area and maintained in vitro often show evoked, long- and variable-latency multiphasic epileptiform field potentials that also can occur spontaneously. These events are initiated in layer V and are...
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