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Y Yaari

Publications and source records attributed to Y Yaari.

57 records · Page 4Linked to original sources

Slow transmission of neural activity in hippocampal area CA1 in absence of active chemical synapses.

Transmission of neural activity in the mammalian cortex involves the operation of chemical synapses. Here we report that activity of hippocampal pyramidal cells (HPC) in vitro can spread through the neural aggregate even when chemical synaptic transmission is blocked by lowering the external Ca2+ concentration ( [Ca2+]0). In these conditions focal stimulation of the HPC body layer (stratum pyramidale) at area CA1 evokes a localized repetitive neural response which, when large enough, spreads along this layer in both transverse directions. It was recently reported for similar conditions that the activated HPC often discharge in synchrony. However, the spread of the neural response does not depend upon the occurrence of synchronized HPC activity, and therefore represents a distinct phenomenon.

Animals↗

The role of interstitial potassium in the generation of low-calcium hippocampal seizures.

The explosive nature of a focal cortical seizure suggests the operation of strong positive feedback in the neuronal network. It was previously proposed that in the hippocampus this may be provided by the regenerative accumulation of potassium in the interstitium. This hypothesis was severely criticized in the past. However, it gained new impetus with the recent discovery that focal seizures can arise in mammalian hippocampal slices perfused with low calcium solutions despite the block of chemical synaptic transmission. Here, we examine the relationship of interstitial potassium concentration to the electrogenesis of these low-calcium seizures. Both the experimental data and the behavior of a simplified mathematical model describing neuronal discharge in low calcium, support the contention that interstitial potassium accumulation may play an important role in the buildup of hippocampal seizures.

Animals↗