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Biomedical subjects

P A Rhodes

Publications and source records attributed to P A Rhodes.

4 recordsLinked to original sources

Apical tuft input efficacy in layer 5 pyramidal cells from rat visual cortex.

1. The integration of synaptic inputs to the apical dendrite of layer 5 neocortical pyramidal cells was studied using compartment model simulations. The goal was to characterize the generation of regenerative responses to synaptic inputs under two conditions: (a) where there was an absence of background synaptic input, and (b) when the entire cell surface was subjected to a uniform blanket of synaptic background conductance such that somatic input resistance was reduced 5-fold. 2. Dendritic morphology corresponded to a layer 5 thick-trunked pyramidal cell from rat primary visual cortex at postnatal day 28 (P28), with distribution of dendritic active currents guided by the electrophysiological characteristics of the apical trunk reported in this cell type. Response characteristics for two dendritic channel distributions were compared, one of which supported Ca(2+) spikes in the apical dendrite. 3. In the absence of background, synaptic input to the apical tuft was surprisingly effective in eliciting somatic firing when compared with input to apical oblique branches. This result obtained even when the tuft membrane was the least excitable in the dendritic tree. 4. The special efficacy of tuft input arose because its electrotonic characteristics favour development of a sustained depolarization which charged the apex of the apical trunk to its firing threshold; once initiated in the distal trunk, firing propagated inward to the soma. This mechanism did not depend upon the presence of depolarizing channels in tuft membrane, but did require an excitable apical trunk. 5. Rather than disconnect the tuft, background synaptic conductance enhanced the efficacy advantage enjoyed by input arriving there. This counterintuitive result arose because background reduced the subthreshold spread of voltage, and so diminished the ability of the excitation of various individual oblique branches to combine to charge the relatively thick adjacent trunk. In contrast, drive from the depolarized tuft is exerted at a single critical point, the apex of the distal trunk, and so was relatively undiminished by the background. Further, once initiation at the apex occurred, background had little effect on inward propagation along the trunk. 6. We conclude that synaptic input to the apical tuft of layer 5 cells may be unexpectedly effective in triggering cell firing in vivo. The advantage in efficacy was not dependent upon the characteristics of tuft membrane excitability, but rather stemmed from the geometry of the tuft and its junction with the distal apical trunk. The efficacy of tuft input was, however, critically dependent upon inward propagation, suggesting that modulation of membrane currents which affect propagation in the apical trunk might sensitively control the efficacy of tuft input.

Action Potentials↗

Copper-induced myopathy in rabbits: ultrastructural observations.

Mature rabbits were injected intra-muscularly into the hamstring (HS) muscles with doses of 1.66 mg Cu/kg/day, as cupric acetate, in aqueous solution. Similar doses of Na acetate were injected into control rabbits. Skeletal (HS) and cardiac (MYO) muscles were examined by scanning electron microscopy, transmission electron microscopy and a microanalyzer and energy dispersive X-ray (MEDX). Na-injected rabbits showed slight myofibrillar lesions in HS after four injections, and mitochondrial inclusions in MYO were noted after two or seven injections. No Cu was found with MEDX. Cu-injected rabbits showed that the severity of lesions of myofibrillar degeneration and mitochondrial inclusions in HS increased with the number of injections and days the rabbits had been on experiment. After seven days on experiment signs of muscle regeneration were seen. Cu was found first to localize in the nucleus of HS after one day, thereafter it localized in the mitochondria after three and seven days. MYO lesions were found in the mitochondria after six or seven days after Cu-injection. With MEDX less Cu was found than had been found in HS. This Cu first localized in the nucleus of MYO after one day and then disappeared from the tissue altogether.

Animals↗

A correlative study of porcine endometrium and hormone levels during early lactation and the late luteal phase.

This study sought to determine what morphological similarities there were between sow uterus 6-10 days post-partum and during the late luteal phase of the estrous cycle (day 14 post-estrum). An attempt to assess blastocyst receptivity was made. SEM examination of the uterine surfaces in all sows revealed two distinct types of gland openings: 1) Several wider openings (40-60 microM diam.) were always surrounded by large numbers of ciliated cells. At day 7 post-partum distinct epithelial "ridges" surrounding these ciliated patches were very pronounced and consisted of proliferating/differentiating non-ciliated cells. These "ridges" seemed to appear as "valleys" on day 8 post-partum and were densely populated with cells bearing a single cilium. 2) Smaller, (2-4 micron diam.) more numerous gland openings were not associated with large numbers of ciliated cells. The larger gland openings were more numerous in post-partum uterus. Surface and glandular epithelial heights were similar in all sows. Circulating levels of steroids and prostaglandins were very low in post-parturient sows and appeared to exert little effect on cell morphology. Secretory cells lacking microvilli appeared around days 6 and 7 post-partum but were less prominent around days 8-10 post-partum. Several similarities were noted between the luteal phase uterus and the uterus at days 8 and 9 post-partum. These included cell heights, lipid inclusions and large secondary lysosomes, the amount of breakdown within the surface epithelium, and the densities of the zona compacta and the zona spongiosa. It was concluded that attempts at blastocyst implantation might be feasible at around days 8 and 9 post-partum.

Animals↗