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821.
822.
823.
Previous results have established that 17β-estradiol (E2) administered in capsules for 24 h on Day 6 of the menstrual cycle results in atresia of the dominant follicle (DF). The present experiment was designed to determine if atresia could be induced similarly as late as Day 8, when the DF is presumably larger, to facilitate biochemical analyses. On the morning of Day 8, laparoscopy was used to confirm the presence of the DF, and 4, 6, or 8 Silastic capsules containing E2 were placed s.c. for 12 or 24 h. Treatment with E2 for 12 h resulted in atresia of the dominant follicle: 2/4,4/5, and 2/5 with 4, 6, and 8 capsules, respectively. Increases in luteinizing hormone (LH) usually occurred following removal of E2 after 12 h; similar increases resulted previously from treatment on Day 6, and are interpreted as the result of removal of E2-induced negative feedback rather than an effect of positive feedback. In contrast to the efficacy of treatment for 12 h, treatment with E2 for 24 h resulted in a lower incidence of atresia (2/5,1/6, and 1/4 with 4, 6, and 8 capsules), and premature LH surges were seen during treatment in almost all animals, especially with 6 or 8 capsules, initiating luteinization of the DF without ovulation. Regarding intrafollicular changes, E2 treatment resulted in a 10-fold reduction in follicular fluid concentrations of estrogen, while progesterone (P) levels were augmented; the output of P by granulosa cells in culture was also enhanced by E2 treatment. We conclude that the DF in monkeys remains susceptible to the atretogenic effects of E2 as late as Day 8 of the cycle, but the amount of follicular material recoverable is not increased with the later treatment. Furthermore, the similarity between the luteinized unruptured follicles induced in this study and those occurring spontaneously in women suggests that this model may be valuable in elucidating the factors involved in this source of infertility in women. © 1994 Wiley-Liss, Inc.  相似文献   
824.
Although many case studies describe stromatoporoid-rich Jurassic reefs, there are only few reliable data as to their distribution pattern. This is in part due to a largely taxonomic and systematic focus on the enigmatic stromatoporoids which now are interpreted as a polyphyletic informal group of demosponges by most specialists. The common co-occurrence of Jurassic scleractinian corals and stromatoporoids might, at first hand, point to very similar environmental demands of both organismic groups, but autecological considerations as well as evaluation of stromatoporoid distribution patterns should allow for a much more refined interpretation. This study concludes that Jurassic corals and stromatoporoids show a relatively broad overlap of environmental demands but their maximum ecological tolerances appear to differ considerably. Jurassic corals were dominating in mesotrophic to mildly oligotrophic, slightly deeper settings, where they largely outcompeted stromatoporoids. On the other hand, stromatoporoid growth was particularly favoured in very shallow water, strongly abrasive, high-energy settings as well as in possibly overheated waters. Many taxa and growth forms were very tolerant towards frequent reworking and redistribution, a feature which is compatible with the sponge nature of the stromatoporoids. As such, stromatoporoid facies may be common in low-accommodation regimes, giving rise to frequent “shelf shaving” and redistribution across wide shelf areas. The mixed coral-stromatoporoid reefs from the margins of isolated Intra-Tethys platforms are interpreted to be indicative of oligotrophic normal marine waters. This is corroborated by statistical cluster analysis of stromatoporoid taxa from representative areas. In addition, Arabian stromatoporoid occurrences might have been adapted to overheated and slightly hypersaline waters. There also are a few exceptional stromatoporoid taxa which might have had environmental tolerances different from the bulk tolerances of other Jurassic stromatoporoids. Part of our interpretations are preliminary and should stimulate further research. However, the present results already help explain the observed compositional differences between Jurassic North Tethys/North Atlantic, Intra-Tethys, and South Tethys shallow-water reefs and platforms.  相似文献   
825.
Aspiration of ovarian follicular contents in humans is a well-established procedure used to obtain oocytes for fertilization in vitro (IVF). However, the effects of aspiration on the menstrual cycle and resulting luteal function have been incompletely characterized. The present study was designed to investigate alterations in the temporal and endocrine characteristics of menstrual cycles following aspiration of contents of the dominant preovulatory follicle (DF) on day 10 of the cycle in normal rhesus monkeys. When aspiration was performed prior to the preovulatory surge of luteinizing hormone (LH), cycle length was extended to 38.6 ± 8.6 [15] (x days ± SD, [n]), as compared to 29.5 ± 5.7 [8] days when the surge occurred before the time of aspiration. Mean and maximal amounts of progesterone (P) in the luteal phase and the number of days in which P-values were > 1 ng/ml were significantly greater when aspiration was performed prior to the surge of LH than for aspiration after this event. Laparoscopic observations made in the midluteal phase in animals of the former group demonstrated that the corpus luteum (CL was derived from a follicle other than the original DF which had been aspirated on day 10 of the menstrual cycle; observations in the latter group of animals indicated that the CL was derived from the DF.  相似文献   
826.
827.
The omasum is the third forestomach compartment of pecoran ruminants. It is assumed that the re-absorption of fluid present in the forestomach digesta (that facilitates particle sorting, digestion, and harvest of microbes) is its main function, so that less diluted digesta is submitted to enzymatic digestion in the lower digestive tract. Here, we evaluate measures of omasum size (representing 84 ruminant species in the largest data set) against body mass and proxies of the natural diet (%grass) or forestomach physiology (fluid throughput), using phylogenetically controlled models. The origin of specimens (free-ranging or captive) did not have an effect in the data set. Models with the best support invariably either included %grass or a physiology proxy in addition to body mass. These effects were not necessarily additive (affecting the intercept of the allometric regression), but often indicated a change in the allometric body mass-exponent with diet or physiology. Only models that allowed an influence on the allometric exponent yielded basic exponents compatible with predictions derived from geometry. Species that include more grass in their natural diet, or that have a “cattle-type” physiology marked by a high forestomach fluid throughput, generally have larger omasa. However, the existence of outliers, as well as the overall data pattern, suggest that this is not an obligatory morphophysiological condition. Circumstantial evidence is presented leading to the hypothesis that the comparatively small and less complex omasa of “moose-type” species do not necessarily represent an “original” state, but may be derived from more complex states by ontogenetic reduction and fusion of omasal laminae.  相似文献   
828.
829.
Ultimately based on the different gamete size and the resulting sex roles, most animal species have acquired traits that occur only in one of the sexes. For those sex-limited traits the impact of a single selection event is reduced, because the genes coding for these traits also occur unexpressed in the other sex and are therefore partly hidden to selection. All sex-limited traits thus show a storage effect analogous to a seed bank. This storage effect has to be considered when measuring the effect of fluctuating selection on sex-limited traits. Here, I develop appropriate equations to measure the ability of an allele to invade a population when fluctuating selection acts on sex-limited traits. A comparison of the equations for X-chromosomal and autosomal traits gives the following result: the evolution of traits limited to the heterogametic sex should preferentially involve X-chromosomal genes and the evolution of traits limited to the homogametic sex should preferentially involve autosomal genes. This difference between the sexes may contribute to explain (1) the large effect of X-chromosomal genes in causing hybrid sterility in the heterogametic sex and (2) the large effect of X-chromosomal genes on sexually selected traits in heterogametic males.  相似文献   
830.
Imaging follicular development has advanced notably from the invasive—laparotomy—to the relatively noninvasive—laparoscopy (making frequent observations over a single cycle possible)—to totally noninvasive approaches such as ultrasonography and magnetic resonance imaging (MRI). Now we can identify the dominant preovulatory follicle (DF) in macaques by day 6 of the menstrual cycle via laparoscopy and by day 6–8 via ultrasonography. MRI scans are remarkably correlated with histologic specimens. We obtained axial, coronal, and sagittal ovarian images with MRI software. Moreover, we are discerning structure/function relationships in ovarian estrogen-receptor systems using X-ray autoradiography and immunocytochemistry. We have localized the estrogen receptor in functional corpus luteum (CL) with 3H-estradiol and in germinal epithelium and granulosa cells with monoclonal antibody to the receptor. We believe that by using a combination of the aforementioned techniques, we will be able to investigate more fully the processes of recruitment and selection of ovarian follicles.  相似文献   
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