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21.
The fixing-staining mixture consisted of 1 part of 2% aqueous OsO4 and 3 parts of 3% Nal in distilled water. Fresh lungs were cut into 2 mm slices and immersed in this solution for 24 hr at room temperature. Controls were fixed in buffered OsO4 alone. Selective staining of type II alveolar cells was shown by the OsOt-NaI mixture but was absent in the controls. No additional staining of the sections was required, and the selectivity was readily observable in either paraffin or Araldite sections by light microscopy and in Araldite sections by electron microscopy 相似文献
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SYNOPSIS Plasmodium gonatodi sp. nov. is described from Gonatodes albogularis fuscus of eastern Panama. It is characterized by elongate gametocytes and polymorphic schizonts containing 12-46 nuclei when apparently mature. Both proerythrocytes and erythrocytes are commonly parasitized, host cells are hypertrophied and distorted, and their nuclei are displaced. Prematuration sexual stages may be irregularly shaped and larger than mature gametocytes.
Plasmodium diploglossi Aragão and Neiva , 1909 is reported from Mabuya mabouya in eastern Panama, and Plasmodium morulum sp. nov. is described from this host. P. morulum usually parasitizes immature erythrocytes, and is characterized by lenticular or oval to round gametocytes, and schizonts with 14-40 nuclei usually arranged in a globular mass. Host cells are slightly hypertrophied and distorted, and their nuclei are usually displaced. Inoculation of infected blood into clean hosts produces numerous schizonts in white cells as well as in the erythrocyte series.
Pigment in both P. gonatodi and P. morulum , if present, consists of a few minute dark dots which do not meet the polarized light test for hemozoin. 相似文献
Plasmodium diploglossi Aragão and Neiva , 1909 is reported from Mabuya mabouya in eastern Panama, and Plasmodium morulum sp. nov. is described from this host. P. morulum usually parasitizes immature erythrocytes, and is characterized by lenticular or oval to round gametocytes, and schizonts with 14-40 nuclei usually arranged in a globular mass. Host cells are slightly hypertrophied and distorted, and their nuclei are usually displaced. Inoculation of infected blood into clean hosts produces numerous schizonts in white cells as well as in the erythrocyte series.
Pigment in both P. gonatodi and P. morulum , if present, consists of a few minute dark dots which do not meet the polarized light test for hemozoin. 相似文献
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Partitioning of respiratory flow resistance in man 总被引:9,自引:0,他引:9
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Lingappa , Yamuna , and A. S. Sussman . (U. Michigan, Ann Arbor.) Changes in the heat-resistance of ascospores of Neurospora upon germination. Amer. Jour. Bot. 46 (9): 671–678. Illus. 1959.—A rapid loss in heat-resistance accompanies activation of ascospores of Neurospora tetrasperma after incubation at 27°C. When activated spores are given a 5-min. “heat-flash” at 65°C. after only 5 min. at 27°C., fully % fail to germinate. Such treatment, if administered 25 min. after activation, results in the complete destruction of the spores. By contrast, when incubation at 27°C. is not interposed, more than ½ of the spores will germinate, even when they have been exposed to 65°C. for 30 min. Similar results were obtained with “heat-flashes” at 50 and 60°C., although exposures of longer duration were required to affect the spores. Conidia respond very differently to “heat-flashes” in that germination is stimulated if they are provided after an incubation period at 27°C. On the other hand, conidia are killed by short exposures to 60°C., so that they are far more susceptible to such treatment than are ascospores. A study of the cardinal temperatures of germination revealed that the maximum is about 44°C. for both conidia and ascospores. The maximum for the growth of two strains of N. tetrasperma and for one of N. crassa is between 40–45°C.; however, another strain of the latter species grows at 45°C. Dry heat was shown to be less effective than wet in activating ascospores. Removal of the exospore of ascospores results in the loss of considerable heat-resistance. In addition, the requirement for heat-activation is considerably mitigated in such spores, suggesting that the exospore, or an associated layer is the locus of the ascospore's heat-resistance. 相似文献
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