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101.
Studies have been made of non-specific effect of suboesophageal gnaglion on excitability of the segmental centers in the cockroach P. americana. It was shown that the electrical stimulation of the ganglion increases the frequency of the spontaneous activity and decreases the threshold of the evoked reactions in neurons of the metathoracic ganglion. The level of activation depends on the intensity of stimulation. Application of GABA (0.1 M) to the suboesophageal ganglion decreases the frequency of the background activity in the segmental neurons, this effect being presumably due to activation of the inhibitory structures. The descending influences from the suboesophageal ganglion may spread to centers of the metathoracic ganglion along monosynaptic pathways. 相似文献
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MC Zacharisen AR Kadambi DP Schlueter VP Kurup JB Shack JL Fox HA Anderson JN Fink 《Canadian Metallurgical Quarterly》1998,40(7):640-647
Occupational respiratory diseases have been reported following exposure to metal working fluids. We report a spectrum of respiratory illnesses occurring in an outbreak in 30 workers of an automobile parts engine manufacturing plant. Workers presented with respiratory complaints and, after clinical and laboratory evaluations, were classified as those having hypersensitivity pneumonitis, occupational asthma, or industrial bronchitis, or those without occupational lung disease. Hypersensitivity pneumonitis affected seven workers, with six exhibiting serum precipitins to Acinetobacter Iwoffii. Occupational asthma and industrial bronchitis affected 12 and six workers, respectively. Oil-mist exposures were below current recommendations. Gram-negative bacteria, but no fungi, Thermophiles, or Legionella, were identified. Although specific agents responsible for each individual case could not be identified, probably both specific sensitizing agents and non-specific irritants from metal working fluids, additives, or contaminants contributed to this spectrum of occupational respiratory illness. 相似文献
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CJ Bruschke A Haghparast A Hoek VP Rutten GH Wentink PA van Rijn JT van Oirschot 《Canadian Metallurgical Quarterly》1998,62(1):37-50
The present study was undertaken to investigate firing patterns, locations, and projections to the phrenic motor nucleus of respiratory neurons in medullary raphe nuclei of rat. Experiments were performed on spontaneously breathing rats anesthetized with sodium pentobarbital. Extracellular spikes of single respiratory neurons were explored in midline medullary tegmentum. A total of 107 respiratory neurons was recorded in the raphe magnus, obscurus and pallidus. They were classified into the following eight types based on the relation of their firing patterns to the phase of respiration: (1) Inspiratory (I) throughout (n = 42); (2) I-late (n = 9); (3) I-decrementing (n = 1); (4) Pre-I (n = 2); (5) I-frequency modulated (n = 13); (6) Post-I (n = 12); (7) Expiratory (E) (n = 23) and (8) E-frequency modulated neurons (n = 5). Twenty of the 45 respiratory neurons examined were antidromically activated from the phrenic motor nucleus at the C4 spinal level with thresholds of 2-58 microA and latencies of 0.4-2.4 ms. Among the 20 neurons, 11 neurons were I-throughout, five were I-frequency modulated and four were E neurons. These results suggest that there is a population of neurons in the medullary raphe nuclei that projects to the phrenic motor nucleus at the C4 spinal level. It is possible that this projection may, in part, mediate the control of the diaphragmatic muscle motor neurons located in the C4 segments. 相似文献