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Biomedical subjects

C D Matthews

Publications and source records attributed to C D Matthews.

At least 19 recordsLinked to original sources

Alterations of estrous activity in the ewe by circadian-based manipulation of the endogenous pacemaker.

The timing of reproductive activity in the seasonal breeding Romney Marsh ewe depends on the measurement of photoperiodic time. In this experiment, artificial light and dark signals are provided in a measured sequence at an inappropriate time of year to induce breeding out of phase with environmental photoperiod. The endogenous circadian responses and reproductive effects are documented. One group (Group A, control) of 6 Romney Marsh ewes was held in natural photoperiod throughout the experiment. For 8 weeks centered about the winter solstice (Stage 1), an additional 18 animals (Groups B, C, and D) were exposed to an artificial earlier dawn. Measurements of endogenous melatonin performed under acutely extended darkness confirmed a phase advance of the endogenous circadian pacemaker of the suprachiasmatic nucleus compared to control animals. In Stage 2, to the summer solstice (21 December), Group B animals were returned to natural photoperiod, Group C animals were subjected to an earlier artificial dusk, and Group D animals were subjected to an artificial delayed dawn. Melatonin measurements during Stage 2 confirmed that onset and offset times for Group C were earlier and that onset and offset times for Group D were delayed compared to corresponding times for Group B animals. Ovarian activity was monitored throughout. During Stage 2, Groups C and D commenced reproductive activity in mid-spring, and this continued until the experimental conditions changed. Groups A and B commenced reproductive activity at the normal timing in the subsequent autumn. Although not exclusive, these results are consistent with a coincidence model to explain the timing of seasonal breeding in this species with a dusk-located phase of the endogenous pacemaker sensitive to both light and melatonin. The temporal relationship between circadian alterations and the environmental photoperiod warrants further investigation as an explanation for seasonal breeding.

Animals

Failure of multitube sperm swim-up for sex preselection.

OBJECTIVE: To use double-label fluorescence in situ hybridization to evaluate a modified swim-up procedure that is purported to be effective for preconceptual sex selection. DESIGN: Controlled, blinded study. SETTING: University hospital laboratories. PATIENT(S): Donor males reporting for routine semen analysis. MAIN OUTCOME MEASURE(S): Percentages of X- and Y-bearing spermatozoa in neat semen and in two swim-up fractions, determined using double-label fluorescence in situ hybridization. RESULT(S): No clinically significant change from a 1:1 ratio was found in the distribution of X- or Y-bearing spermatozoa after double-label fluorescence in situ hybridization following a modified swim-up procedure and irrespective of the time (15, 30, 45, and 60 minutes) allowed for swim-up. CONCLUSION(S): Using fluorescence in situ hybridization, a modified swim-up procedure was evaluated for its purported ability to skew the relative percentages of X- and Y-bearing spermatozoa. No clinically significant change in the ratio of X- to Y-bearing spermatozoa was detected independent of time. Therefore, clinical application of this procedure should be strongly discouraged.

Bias

Preliminary observations on polar body extrusion and pronuclear formation in human oocytes using time-lapse video cinematography.

In this study, we have used time-lapse video cinematography to study fertilization in 50 human oocytes that had undergone intracytoplasmic sperm injection (ICSI). Time-lapse recording commenced shortly after ICSI and proceeded for 17-20 h. Oocytes were cultured in an environmental chamber which was maintained under standard culture conditions. Overall, 38 oocytes (76%) were fertilized normally, and the fertilization rate and embryo quality were not significantly different from 487 sibling oocytes cultured in a conventional incubator. Normal fertilization followed a defined course of events, although the timing of these events varied markedly between oocytes. In 35 of the 38 fertilized oocytes (92%), there were circular waves of granulation within the ooplasm which had a periodicity of 20-53 min. The sperm head decondensed during this granulation phase. The second polar body was then extruded, and this was followed by the central formation of the male pronucleus. The female pronucleus formed in the cytoplasm adjacent to the second polar body at the same time as, or slightly after, the male pronucleus, and was subsequently drawn towards the male pronucleus until the two abutted. Both pronuclei then increased in size, the nucleoli moved around within the pronuclei and some nucleoli coalesced. During pronuclear growth, the organelles contracted from the cortex towards the centre of the oocyte, leaving a clear cortical zone. The oocyte decreased in diameter from 112 to 106 microm (P < 0.0001) during the course of the observation period. The female pronucleus was significantly smaller in diameter than the male pronucleus (24.1 and 22.4 microm respectively, P = 0.008) and contained fewer nucleoli (4.2 and 7.0 respectively, P < 0.0001). After time-lapse recording, oocytes were cultured for 48 h prior to embryo transfer or cryopreservation. Embryo quality was related to fertilization events and periodicity of the cytoplasmic wave, and it was found that good quality embryos arose from oocytes that had more uniform timing from injection to pronuclear abuttal and tended to have a longer cytoplasmic wave. In conclusion, we have shown that time-lapse video cinematography is an excellent tool for studying fertilization and early embryo development, and have demonstrated that human fertilization comprises numerous complex dynamic events.

Cell Nucleus

Albumin gradients do not enrich Y-bearing human spermatozoa.

The aim of this study was to evaluate objectively whether or not discontinuous albumin gradients enrich the proportion of Y-bearing human sperm. A blinded, collaborative trial design was employed whereby a licensed centre prepared the sperm fractions using licensed procedures, coded the sperm slides and then sent them to an independent laboratory for determination of the X:Y ratio in each sperm fraction using X and Y chromosome-specific probes and double label fluorescence in-situ hybridization (FISH). The identification codes and FISH results were collated by an independent third observer. Two albumin gradient methods which are currently used by licensed centres for male sex pre-selection, protocol 3 and modified protocol 3, were tested. Essentially the same results were obtained for the two methods. Highly motile sperm fractions were recovered from the albumin gradients, and the recoveries of motile spermatozoa (1.3-8.5%) were within the optimal range reported to produce maximal enrichment of Y-bearing spermatozoa. FISH analysis, however, revealed no enrichment for Y-bearing spermatozoa with either method, and the overall X:Y ratios were not significantly different from 1.0. Some samples showed marginal enrichment of Y-bearing spermaotozoa, whereas others showed marginal enrichment of X-bearing spermaotozoa. In conclusion, this collaborative study has demonstrated that the protocol 3 and modified protocol 3 albumin gradient procedures do not enrich Y-bearing spermatozoa. The clinical use of albumin gradients for male sex preselection should be reconsidered in the light of this and other evidence.

Double-Blind Method

Analysis of unfertilized oocytes subjected to intracytoplasmic sperm injection using two rounds of fluorescence in-situ hybridization and probes to five chromosomes.

Chromosomal aberrations are the major cause of pre- and post-implantation embryo wastage and some studies suggest that half of all human conception have a chromosomal abnormality. Analysis of gametes provides information on the origin of these chromosomal aberrations. The purpose of this study was to develop a reliable multi-probe fluorescence in-situ hybridization (FISH) procedure that would enable us to investigate aneuploidy in unfertilized oocytes subjected to intracytoplasmic sperm injection (ICSI). Oocytes were spread with HCl and Tween 20 solution, and then two rounds of triple-probe FISH were performed on each oocyte using directly-labelled centromeric probes: chromosomes 1, 7, 15 (overnight hybridization); chromosomes 1, X, Y (2 h hybridization). After the first round, the slides were counterstained and evaluated, and the positions of FISH signals were recorded. For the second round, the counterstain was removed and the second probe cocktail was applied. The chromosome 1 probe was an internal control for the two hybridization procedures, while the Y chromosome probe was used to detect sperm DNA. To evaluate the method, a total of 79 oocytes from 27 patients were studied. Of these, 67 (84.8%) were successfully spread and 97% of these oocytes exhibited discernible FISH signals. Upon lysis, oocytes exhibited one or more DNA fragments (mean 1.9, range 1-3). Of the 65 analysable oocytes, 17 (26.2%) displayed a normal haploid chromosome constitution with paired spots for the two chromatids. A further 23 oocytes (35.4%) showed an ambiguous chromosome complement due to an abnormal number of DNA fragments which may have resulted from loss of DNA during spreading or to an abnormal oocyte, while 25 oocytes (38.4%) displayed aneuploidy for one or more of the chromosomes studied. In conclusion, this new approach is a quick and efficient method with which numerical chromosomal abnormalities in human oocytes can be studied; interpretation of the patterns of DNA fragments and FISH signals requires further clarification.

Aneuploidy

Detection of chromosomes and estimation of aneuploidy in human spermatozoa using fluorescence in-situ hybridization.

The development and application of fluorescence in-situ hybridization (FISH) has opened the way for comprehensive studies on numerical chromosome abnormalities in human spermatozoa. FISH can be rapidly applied to large numbers of spermatozoa and thus overcomes the major limitation of karyotyping spermatozoa after penetration of zona-free hamster oocytes. The simultaneous hybridization of two or more chromosome-specific probes to spermatozoa and subsequent detection of the bound probes using different fluorescent detection systems enables two or more chromosomes to be localized simultaneously in the same spermatozoon and provides a technique for undertaking reasonable estimates of aneuploidy. The most commonly used probes are those which bind to the centromeric region of specific chromosomes. Most studies to date have concentrated on estimating aneuploidy in spermatozoa from normospermic men, although reports are beginning to appear on aneuploidy in spermatozoa from subfertile and infertile men. Multi-probe FISH studies have generally reported disomy (hyperhaploidy) estimates of 0.05-0.2% per chromosome. There is preliminary evidence that some chromosomes such as X, Y and 21 are predisposed towards higher rates of non-disjunction during spermatogenesis. There are also suggestions of inter-donor variability in aneuploidy frequencies for specific chromosomes, although this requires confirmation in larger studies. While FISH is clearly a powerful technique that has many applications in reproductive medicine, it must also be realized that it does have limitations and the technology itself is still evolving and has yet to be fully validated on spermatozoa.

Aneuploidy

Estimation of aneuploidy for chromosomes 3, 7, 16, X and Y in spermatozoa from 10 normospermic men using fluorescence in-situ hybridization.

Fluorescence in-situ hybridization (FISH) is a fast and efficient method of estimating aneuploidy in human spermatozoa. In this study, we have estimated baseline disomy frequencies in spermatozoa from a group of 10 normospermic men, using stringent scoring criteria. A triple-probe FISH procedure was used for chromosomes 3, X and Y, while a double-probe FISH method was used for chromosomes 7 and 16. A total of 101273 spermatozoa were scored for chromosomes 3, X and Y, resulting in 97.83% haploidy (3X or 3Y), 0.39% disomy (33X, 33Y, 3XX, 3YY or 3XY) and 0.35% diploidy (33XX, 33YY or 33XY). A total of 100760 spermatozoa were scored for chromosomes 7 and 16, giving 98.9% haploidy (716), 0.11% disomy (7716 or 71616) and 0.27% diploidy (771616). Disomy frequencies for individual chromosomes differed (chromosome 3, 0.20%; chromosome 7, 0.05%, chromosome 16, 0.06%; X + Y, 0.19%). The frequency of disomy 3 was significantly higher than disomy 7 (P = 0.019) and disomy 16 (P = 0.022), while the frequency of sex chromosome disomy was significantly higher than disomy 7 (P = 0.0058) and disomy 16 (P = 0.0067), but not disomy 3 (P = 0.73). The disomy and diploidy (0.27-0.35%) estimates obtained for this normospermic population were generally low and were similar to other recent reports.

Adult

The influence of sperm morphology and the number of motile sperm inseminated on the outcome of intrauterine insemination combined with mild ovarian stimulation.

OBJECTIVE: To determine the influence of sperm morphology and the number of motile sperm inseminated on the outcome of IUI in hMG-stimulated cycles and to establish lower limits for these variables below which the expectation of pregnancy is limited. DESIGN: Retrospective study of data from 1990 to 1992. SETTING: Tertiary referral Reproductive Medicine Unit. PATIENTS: Couples with bilaterally patent fallopian tubes, and > or = 200,000 motile sperm recovered in a trial preparation before treatment. No other semen criteria were used to exclude couples. Women were stimulated with hMG irrespective of whether they were ovulatory or anovulatory. The study comprised 163 couples who underwent 330 cycles. MAIN OUTCOME MEASURES: Pregnancy rate (PR) per cycle was related to the percentage normal sperm morphology in the fresh semen sample and the number of motile sperm inseminated after sperm preparation by swim-up or Percoll gradients. RESULTS: The overall PR was 16.1% per cycle. The PR was highest in the first cycle of treatment (21.4%) and declined in the second and third cycles. The miscarriage rate was 10.4% and the incidence of multiple pregnancies was 13.9%. Two groups of patients were defined on the basis of sperm morphology: a "poor outcome" group ( < or = 10% normal) and a "good outcome" group ( > 10% normal). The PRs in these two groups were 4.3% and 18.2%, respectively, and the cumulative PRs after three cycles were 8.3% and 40.1%, respectively. The number of motile sperm inseminated did not significantly affect the PR. CONCLUSIONS: The degree of teratozoospermia affected the PR in hMG-stimulated IUI cycles and a normal morphology value of 10% in the fresh semen distinguished couples with good and poor outcomes. In contrast, the number of motile sperm inseminated did not significantly influence IUI outcome.

Female

Nuclear structural conditions and PCR amplification in human preimplantation diagnosis.

An understanding of the relationship between nuclear morphology and DNA function is important in cytology and preimplantation diagnosis. In this study, direct polymerase chain reaction (PCR) amplification was used to diagnose the common delta F508 mutation of cystic fibrosis in 62 biopsied human embryo cells. The nuclei were photographed and classified into three categories depending on their microscopic appearance; these were further correlated with the results of PCR amplification. The normal nucleus group (42 embryo cells, with clear and regular nuclear membrane, transparent nucleoplasm and prominent nucleoli) showed 100% PCR amplification, with normal amplification results, i.e. bright DNA bands. These were considered to be the living cells. Only half of the cells (10 embryo cells) which contained abnormal nuclei (with abnormal nuclear membranes or nucleoplasm) showed PCR amplification, often with abnormal amplification results, i.e. weak DNA bands. These cells were considered to be either degenerate or to be undergoing degeneration. The anuclear cells (10 embryo cells) were composed of living (metaphase) and degenerated cells and showed about 30% PCR amplification. These results demonstrated that one of the important signs of early visible cell degeneration is the partial or total degeneration of the nucleus. Abnormal morphological changes of the nuclear membrane and nucleoplasm are usually accompanied with functional and structural DNA alteration. It is suggested that base degradation occurs earlier than the breakage of base-sugar bonds and phosphodlester bonds during the course of DNA degradation. The selection of optimal cells with a normal nucleus for single cell embryo biopsy is important for the precision and safety of preimplantation diagnosis.

Biopsy

Application of modern molecular techniques to evaluate sperm sex selection methods.

The aim of this paper is to review modern approaches which have been used to evaluate sex pre-selection procedures. Two approaches can be used, polymerase chain reaction (PCR) and fluorescence in-situ hybridization (FISH). FISH is currently the method of choice for evaluating sex selection procedures because: (i) FISH accurately identifies the sex chromosome of individual spermatozoa using specific probes for the X and Y chromosomes and a two-colour detection system; and (ii) large numbers of spermatozoa can be screened in a short period of time. Of the published sex pre-selection methods tested using FISH, only flow cytometry has been shown to produce a clinically significant enrichment of X- and/or Y-bearing human spermatozoa. Studies have shown that 12-step Percoll gradients produce a slight but clinically insignificant enrichment of X-bearing spermatozoa, swim-up techniques do not appear to enrich either X- or Y-bearing spermatozoa, and discontinuous albumin gradients do not enrich Y-bearing spermatozoa. Despite this evidence, some of these methods continue to be used clinically, so it is vital that sex selection methods are properly evaluated using reliable methods such as double-label FISH before they are introduced for clinical use.

Albumins

Optimal polymerase chain reaction amplification for preimplantation diagnosis in cystic fibrosis (delta F508)

OBJECTIVE: To evaluate direct polymerase chain reaction amplification of mutation on single embryo cells for the routine preimplantation diagnosis of cystic fibrosis. DESIGN: Direct polymerase chain reaction amplification of mutation was performed to identify the cystic fibrosis delta F508 mutation in human blood DNA, single lymphocytes, embryos, and embryo cells obtained by biopsy. Preimplantation diagnosis was performed for a couple who were heterozygous carriers of the delta F508 mutation. SETTING: Laboratory for preimplantation diagnosis in a reproductive medicine unit. MAIN OUTCOME MEASURE: Correct diagnosis of homozygous normal, heterozygous, and homozygous abnormal DNA of the cystic fibrosis delta F508 mutation. RESULTS: 45 blood samples (18 homozygous normal, 17 heterozygous, and 10 homozygous abnormal) and 204 single lymphocytes from known sources showed 100% amplification and were diagnosed correctly. 17 human embryos and 52 normal nucleated embryo cells obtained by single cell embryo biopsy also showed 100% amplification. After a miscarriage of the initial pregnancy (diagnosed at preimplantation to be homozygous normal) in the heterozygous carrier couple, fetal tissue was confirmed to be homozygous normal. CONCLUSION: Direct polymerase chain reaction amplification of mutation is a simple, fast, reliable test for the common cystic fibrosis mutation (delta F508) in blood DNA and single cells and should be applicable to routine programmes of general screening, maternal blood examination, and preimplantation diagnosis.

Base Sequence

Assessment of fertilization failure and abnormal fertilization after intracytoplasmic sperm injection (ICSI).

The assessment of fertilization is an important part of intracytoplasmic sperm injection (ICSI) and oocytes are routinely examined about 17 h after injection using Nomarski differential interference contrast optics. However, it is not possible to conclusively determine the aetiology of fertilization anomalies in this manner, so cytological studies were undertaken to determine the causes of failed and abnormal fertilization after ICSI. Oocytes which exhibited no evidence of fertilization, one pronucleus (PN) or 3 PN were fixed in glutaraldehyde, stained with Hoechst 33342 and examined by fluorescence microscopy to identify PN, metaphase chromosomes, sperm heads and polar bodies. A total of 428 unfertilized oocytes were examined from 170 ICSI cycles. Overall, 82% of these unfertilized oocytes were still at metaphase II (non-activated) while the remaining 18% were activated and had 1 PN and two polar bodies. The majority (71%) of the metaphase II oocytes contained a swollen sperm head, which indicates that the spermatozoon was correctly injected but the oocyte did not activate and complete its second meiotic division. The swollen sperm head was located among the metaphase chromosomes in 4.3% of these oocytes, while in some cases (6.6%), the sperm chromosomes had undergone premature chromosome condensation (PCC). Other aetiologies of failed fertilization in these metaphase oocytes were ejection of the spermatozoon from the oocyte (19%) and complete failure of sperm head decondensation (10%). A similar pattern of anomalies was found in 1 PN oocytes, although the ratios were different (swollen sperm head, 51%; ejection of the spermatozoon, 19%; undecondensed sperm head, 30%). Seventy abnormally fertilized oocytes were also examined, of which 63 had 3 PN and a single polar body, indicating that the unextruded second polar body developed into the third PN. In conclusion, the present study demonstrates that the principal cause of fertilization failure after ICSI is failure of oocyte activation and not ejection of the spermatozoon from the oocyte. It is also apparent that further studies are needed to elucidate the mechanisms that control oocyte activation and sperm head decondensation in injected oocytes.

Adult

Intracytoplasmic sperm injection--clinical results from the reproductive medicine unit, Adelaide.

The clinical results of 391 cycles of intracytoplasmic sperm injection (ICSI) performed between June 1993 and July 1994 are presented in this report. A total of 4797 oocytes were collected, of which 3792 were injected. Of these, 2603 (69%) fertilized, with normal and three pronuclear fertilization rates of 65% and 4% respectively. About 6% of the oocytes were destroyed while denuding and during ICSI. There were 373 (95%) embryo transfers from which 119 pregnancies arose, giving pregnancy rates of 32% per transfer and 30% per cycle, and an implantation rate of 15% per embryo. Of the pregnancies, 98 (82%) were ongoing. Supernumerary embryos were frozen in 44% of the cycles and 61 subsequent transfers of 130 frozen-thawed embryos produced 11 pregnancies (18%). Only 47 (12%) patients had less than 50% of their oocytes fertilized (mean 31%) after ICSI, and of these, 8 had no fertilization of 13 eggs. Nevertheless, 37 of these 47 patients had an embryo transfer and 9 achieved a pregnancy with an implantation rate of 14% per embryo. The percent normal sperm morphology weakly correlated with percent fertilization (r2 = 0.027, P < 0.02) but not with the implantation rate (r2 = 0.003, P > 0.05). Fifty-nine patients with only occasional motile sperm in the ejaculate and 23 patients in whom epididymal sperm were aspirated were treated. The fertilization rates (66% and 70% respectively) and pregnancy rates per transfer (32% and 24% respectively) were comparable in these two subgroups. The overall ICSI results were also compared with 515 cycles of routine in vitro fertilization (IVF) which were performed at the same time.(ABSTRACT TRUNCATED AT 250 WORDS)

Australia

Melatonin response in active epilepsy.

Urinary excretion of 6-sulfatoxymelatonin (aMT.6S), the hepatic metabolite of melatonin, was measured for three consecutive 8-h intervals, beginning at 0600 h, in 30 patients with untreated active epilepsy and in 19 healthy subjects. Excretion of aMT.6S in a 24-h period in patients with active epilepsy was 77.3 +/- 55 nmol (median 68.0, range 8.7-280 nmol), significantly higher (p < 0.05) than that of healthy subjects (49.1 +/- 14 nmol, median 49.0, range 19.7-68.0 nmol). Sequential 8-h urinary aMT.6S excretion rates in patients with active epilepsy were 2.45 +/- 2.8 nmol/h (0600-1400 h), 0.83 +/- 0.5 nmol (1400-2200 h) and 6.38 +/- 5.0 nmol/h (2200-0600 h) as compared with 1.43 +/- 0.8, 1.10 +/- 0.8 and 3.81 +/- 1.3 nmol/h, respectively, in healthy subjects. Analysis of variance (ANOVA) indicated that the difference in total output resulted from greater nocturnal excretion (F = 5.58, p = 0.018). Melatonin production in untreated patients with active epilepsy is increased and has a circadian pattern with a phase difference as compared with that of normal subjects.

Adolescent

Plasma melatonin in the horse: measurements in natural photoperiod and in acutely extended darkness throughout the year.

Plasma melatonin was measured at the winter and summer solstices and the autumn and spring equinoxes in four mares held under natural conditions at 35 degrees S. At all seasons the onset of the nightly elevated melatonin was coincident with or after the time of sunset and the melatonin offset after the time of sunrise. The duration of elevated melatonin was not different from the duration of natural scotophase for each season, with the duration of elevated melatonin longer in winter than the other seasons. Immediately following each 24 hr sampling two mares were resampled in acutely extended darkness to determine the melatonin profile of the endogenous rhythm of the circadian pacemaker, originating from the suprachiasmatic nuclei (SCN). At each season melatonin secretion commenced earlier and decreased later than that measured under the natural photoperiodic condition, suggesting that the expression of the melatonin rhythm is normally gated by natural environmental light both at dusk and dawn. The interval from the onset of melatonin measured under acutely extended darkness to the time of sunset was greater in the spring/summer than the autumn/winter suggesting a possible alternating signal throughout the year. Thus the mare appears to exhibit a similar interaction between endogenous circadian rhythmic activity and the natural photoperiod as the ewe which may underlie the mechanism for timing reproductive activity through the year.

Animals

Is a critical interval of the circadian pacemaker at dusk responsive to light and melatonin responsible for the timing of estrus in the Romney Marsh ewe?

Two experiments, using Romney Marsh ewes, tested for the existence and role of a critical interval of the circadian pacemaker located near dusk that may be integrally involved in the precise timing of the breeding season. Groups of Romney Marsh ewes (n = 6) were provided with exogenous melatonin by injection at dusk (Experiment 1) or by infusion at dawn or subjected to extended darkness at dawn (Experiment 2) from the winter to the summer solstice before being exposed to natural photoperiod at latitude 35 degrees S. Other than the experimental protocols, all animals were held in natural photoperiod. The onset of the breeding season (defined as cyclic ovarian activity as indicated by plasma progesterone monitoring) was normal in those animals treated with morning melatonin but was delayed in those animals treated with melatonin at dusk or extended darkness at dawn compared to controls in natural photoperiod (p < .01). Exogenous melatonin at dusk was associated with a phase advance of the onset of the circadian pacemaker (as measured by endogenous melatonin in acutely extended darkness); additional darkness at dawn was associated with a phase delay of both the onset and the offset of the circadian pacemaker. Exogenous morning melatonin did not change the phase of the circadian pacemaker relative to the controls. The results are consistent with an external coincidence model of seasonal breeding in which a critical interval of the circadian pacemaker requires exposure to light during spring/summer to time estrus correctly. The proposed critical interval appears to be located near dusk in this model and is phase locked to the circadian pacemaker. The effect of the exogenous melatonin on the timing of the breeding season is similar to darkness when administered at dusk but is not equivalent to darkness at dawn. The timing of anestrus was not affected by any of the experimental treatments and may reflect a common response to an environmental influence.

Animals