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Reproductive performance of high growth rate gilts inseminated at an early age.

The aim of this work was to determine if gilts, which have a high growth rate (GR) could be mated earlier without reducing the reproductive performance or increasing the culling rate up to the third parity. Gilts of Camborough 22 (C22, n=568) breeding were mated and allocated into three groups according to weight and age on the insemination day. G1 (n=164)-gilts with a GR>or=700 g/d and inseminated at <210 d. G2 (n=165)-gilts with a GR>or=700 g/d and inseminated at >or=210 d. G3 (n=239)-gilts with a GR<700 g/d and inseminated at >or=210 d. All females were fed ad libitum from 150 d on and were inseminated at their second estrus or later. The minimum weight at mating was 127 kg. Three parities were studied, with farrowing rate, litter size and culling rate being compared. At the first parity, G2 gilts produced, on average, one more piglet than the other groups (P<0.05). However, when analyzing three parities, there were no differences in total born (11.6 x 12.3 x 11.7), farrowing rate (87.1% x 88.7% x 89.8%) and culling rate (30.2% x 25.3% x 28.2%) among G1-G3 groups, respectively (P>0.05). In conclusion, gilts, which had a minimum weight of 127 kg can be inseminated at their second or greater estrus, between 185 and <210 d of age, without impairing their productive performance over three parities.

Aging↗

[Optimization of artificial inseminations with donor semen: a four-year experience].

OBJECTIVE: Our aim was to analyse the results of a donor insemination program using ovarian stimulation, swim-up sperm preparation and intrauterine insemination proposed to women with a maximum age of 39. Incidence of several clinical and biological parameters on success rates was investigated. PATIENTS AND METHODS: Retrospective analysis of the results of 249 cycles performed in 106 couples during a four-year period is reported. RESULTS: Overall pregnancy rate of 28.1% and delivery rate of 22% per cycle were achieved, with a multiple pregnancy rate of 11.4%. Most of the pregnancies (84%) were obtained before the fourth insemination. Among the different parameters studied the total number of motile sperm inseminated was found to be the most important factor for success rate: pregnancy rate per cycle reached 40.4% if more than 1.5 million progressive sperm were inseminated vs. 24.7% if they were less than 1.5 million (P<0.05). DISCUSSION AND CONCLUSION: In precise conditions, outcome of inseminations with donor semen can reach satisfying pregnancy rates, being a valuable help for couples suffering of long-time infertility.

Adult↗

Study of fertilising capacity of spermatozoa after heterospermic insemination in rabbit using DNA markers.

The aim of this study was to evaluate the fertilising capacity of males belonging to a rabbit line selected for growth rate using heterospermic insemination and genetic markers. Semen from five males was used to make pools of three of them, and to perform homospermic insemination. Insemination was carried out in receptive multiparous lactating does with 6 million spermatozoa per insemination dose. DNA from 360 young rabbits born from heterospermic insemination, 5 sires and 42 does were amplified to nine microsatellite loci for determination of the offspring rate per male. Although each female was inseminated with the same number of spermatozoa from each male (2 million from a total dose of 6 million), sperm from one male was always dominant, notable differences being observed in the offspring among the males with similar semen quality (83-68% from dominant male versus 31-0% from non-dominant, P<0.05 ).

Animals↗

Laparoscopic insemination technique with low numbers of spermatozoa in superovulated prepuberal gilts for biotechnological application.

New biotechnologies, such as sperm-mediated gene transfer (SMGT), spermatozoa freezing and spermatozoa sorting have improved the possibilities to produce animals with desirable features. The main problem associated with these technologies is the scarce availability of spermatozoa for insemination. The objective of this study was to develop a laparoscopic insemination (LI) technique in gilt that allows the use of low semen doses resulting in high fertilization rates (FR) and minimal distress to the animal; the efficiency of this technique was compared to conventional artificial insemination (AI). Ten gilts were inseminated 36 h post hCG treatment near both utero-tubal junctions (UTJ) with 1.5 x 10(9)spermatozoa/5 mL per horn and 10 gilts (C) underwent conventional AI. Embryos were collected either at two to four cell stage (LI, n = 5; C, n = 5) for determination of fertilization rate or at day 6 for evaluation of developmental competence (LI, n = 5; C, n = 5). LI gilts showed a slightly higher FR than control animals. In a second trial, 24 gilts underwent LI with varying doses (1.5 x 10(8), 1.5 x 10(7), 1 x 10(7), 5 x 10(6) or 1 x 10(6)) of semen. Two to four stage embryos were collected and FR was evaluated in each tube. FR obtained with the lowest dose was significantly different from that with other dosages (P < 0.05). Embryos were cultured in vitro to blastocyst stages (percentage of blastocysts: 79.2 +/- 3.6%). In a third trial, five gilts were inseminated with semen processed by SMGT technique; both FR (86.1 +/- 9.9%) and transgene protein expression were satisfactory. In conclusion, this study shows that LI can be a useful tool for reducing doses of insemination, without affecting the efficiency of fertilization; this technique could have a wide range of biotechnological applications.

Animals↗

Factors influencing the success of vaginal and laparoscopic artificial insemination in churra ewes: a field assay.

Pregnancy rate following artificial insemination (AI) in sheep is variable depending on several factors. The Churra breed (milk breed of the North-West of Spain) yields lower fertility results compared with other local and European breeds (Manchega, Latxa, Merino, Lacaune, Sarde, etc.). In this work we studied the influence of many factors on the fertility of the Churra breed (insemination technique, year, farm, age, male, number of inseminations per ewe, lambing-insemination interval and technician), analyzing lambing data obtained after 44448 inseminations (39.67% cervical AI via vagina, AIV, and 60.33% intrauterine AI using laparoscopy, AIL) in a categorical model. The most important factors influencing fertility after AI were farm, year, season, AI technique, and technician. AIL showed significantly higher fertility results than AIV (44.89% versus 31.25%). Season significantly affected fertility in both cases, but differences were more evident in AIV. Fertility dropped 1.74% (AIV) and 2.07% (AIL) per year as the ewes aged. Finally, AI fertility decreased when the lambing-insemination interval was lower than 10 weeks.

Aging↗

Uterine activity, sperm transport, and the role of boar stimuli around insemination in sows.

This paper describes changes in spontaneous myometrial activity around estrus, factors that affect myometrial activity, and the possible role of uterine contractions in the process of (artificial) insemination, sperm transport and fertilization. Myometrial activity in the sow increases during estrus. The activity is myogenic in origin, but several factors have been shown to affect myometrial activity. Natural mating stimulates uterine contractions through several mechanisms. The presence of a boar, rather than the act of mating, induces central oxytocin release in the sow and thus increases uterine activity. Estrogens in the ejaculate of a boar can trigger prostaglandin release by the endometrium and thus increase uterine activity. Tactile stimulation of the genital tract (cervix) or tactile stimulation of the back and flanks of the sow during artificial insemination does not cause a release of oxytocin. There is hardly any evidence for the effects of these latter stimuli on uterine activity, and if they are present at all, the effects are very small. Evidence for the effects of synthetic boar odor on oxytocin release and/or uterine activity is inconsistent. The mere presence of a boar during insemination, in contrast, clearly stimulates uterine activity through the release of oxytocin. Hormonal stimulation (intrauterine) of uterine activity with estrogens, prostaglandins, or oxytocins before, during or after insemination generally improves fertilization rate, especially in situations with reduced fertility. Therefore, uterine contractions are believed to play an important role in the transport of sperm cells to the oviducts after insemination. Whether uterine contractions are absolutely necessary for sperm transport through the uterine horns, however, is not clear. Intensive stimulation of uterine contractions using hormones can also reduce the fertilization rate, probably by increasing the reflux of sperm cells during insemination. In this respect, the presence of a boar during AI seems more adequate, as only sows with a low level of uterine activity show an increase in uterine activity in response to this stimulus.

Animals↗

Homologous prostatic fluid added to frozen-thawed dog spermatozoa prior to intravaginal insemination of bitches resulted in better fertility than albumin-free TALP.

The aim of this study was to determine whether canine prostatic fluid has intrinsic effects resulting in higher fertility than albumin-free Tyrode's albumin lactate pyruvate (afTALP) when added to thawed semen prior to intravaginal insemination. Twenty-four German shepherd bitches were inseminated intravaginally with frozen-thawed spermatozoa to which either homologous prostatic fluid (Group P; 12 bitches) or afTALP (Group T; 12 bitches) was added to give a final insemination volume of 7mL. Each bitch was inseminated daily starting when the vaginal folds first became angular and continuing until the day before a diestrus vaginal smear was first seen. Bitches were spayed about 3 weeks after the onset of diestrus and the number of corpora lutea and the number of conceptuses counted. Group P and Group T bitches were, respectively, inseminated 5.3+/-1.0 and 5.8+/-2.1 times with 48.9+/-8.6 and 50.4+/-8.3 million progressively motile spermatozoa per insemination. Eight Group P bitches and 10 Group T bitches conceived with totals of 76 and 45 conceptuses and 126 and 117 corpora lutea, respectively. Odds of conception were taken as the number of conceptuses divided by (the number of corpora lutea minus the number of conceptuses). After adjustment for the number of progressively motile spermatozoa per day and the random effect of bitch, the addition of prostatic fluid resulted in an increased odds of conception compared to afTALP. This effect decreased as the number of progressively motile spermatozoa per day increased.

Animals↗

Post-insemination milk progesterone concentration and embryo survival in dairy cows.

Logistic regression analysis was used to evaluate the relationship between post-insemination milk progesterone concentration and embryo survival, and between milk yield and milk progesterone concentration. Milk samples were collected on Days 1, 4, 5, 6, and 7 (insemination=Day 0) following 871 inseminations in spring-calving dairy cows. Milk progesterone concentrations were measured by enzyme-immunoassay and pregnancy diagnosis was conducted with transrectal ultrasonography at approximately Day 30. There was a negative linear relationship (P<0.01) between milk progesterone concentration on Day 4 and embryo survival while, in contrast, there was a positive linear and quadratic relationship between milk progesterone concentration on Days 5, 6 and 7 (P<0.05) and also between the rate of change in progesterone concentrations between Days 4 and 7 inclusive and embryo survival (P<0.05). There was a weak negative linear relationship between average daily milk yield at the time of insemination and milk progesterone concentrations (P<0.001). There was no association between many production parameters, including liveweight and body condition score measured at various stages between calving and insemination, and milk progesterone concentration between Days 4 and 7 inclusive (P>0.05). In conclusion, low progesterone during Days 5-7 (after insemination) was associated with low fertility in dairy cows and there were indications of a range of progesterone concentrations within which embryo survival was maximal.

Animals↗

Birth of live Spanish ibex (Capra pyrenaica hispanica) derived from artificial insemination with epididymal spermatozoa retrieved after death.

As a consequence of increasing limitations to maintaining genetic variability in endangered wildlife species, methods of assisted reproduction widely used in domestic animals are being applied to nondomestic species. However, practical efforts have met limited success to date. The Spanish ibex (Capra pyrenaica hispanica) is a wild caprine originating exclusively in the mountains of Spain. This study was designed to evaluate the fertilizing capability of cryopreserved Spanish ibex epididymal spermatozoa recovered postmortem. For this purpose, we have previously evaluated the effect of time elapsed between death and sperm recovery on spermatic parameters, and the fertilization ability of frozen-thawed spermatozoa using heterologous in vivo fertilization by intrauterine insemination in domestic goat (Capra hircus). The time of death significantly affected most sperm quality parameters (motility, viability and intact acrosomes). The fertility obtained by heterologous artificial insemination was 18.7%, and only goats inseminated with spermatozoa recovered within 8h after death became pregnant. Our findings showed that heterologous in vivo fertilization is a useful method to evaluate the fertilizing capacity of sperm samples in rare or wild species. Sperm samples, with verified fertilization ability in the previous trial, were used to inseminate a total of six ibex females. Inseminations resulted in one pregnancy. The study demonstrated for the first time the feasibility of applying artificial insemination in Spanish ibex.

Animals↗

Insemination doses: how low can we go?

This manuscript presents a brief historical review of investigations related to equine artificial insemination. The origin of recommended insemination doses for use fresh, cooled and frozen semen will be reviewed. Over 30 years ago, an insemination dose of 500 x 10(6) progressively motile sperm (PMS) was recommended to maximize pregnancy rates when mares were bred with fresh semen under less than ideal conditions. Since that time, 500 x 10(6) progressively motile sperm has been almost universally accepted as a standard insemination dose, regardless of a stallion's fertility or the refinements that have been made in mare management and semen extenders. Insemination doses for cooled-transported and frozen-thawed semen have also been extrapolated from this dose. Data from a number of studies will be presented which demonstrate the feasibility and rationale of reducing sperm numbers used to breed mares with fresh, cooled and frozen-thawed semen, including the use of deep-horn insemination techniques.

Animals↗

Effects of insemination-ovulation interval on fertilization rates and embryo characteristics in dairy cattle.

The objective of this study was to examine effects of the interval between insemination and ovulation on fertilization and embryo characteristics (quality scored as good, fair, poor and degenerate; morphology; number of cell cycles and accessory sperm number) in dairy cattle. Time of ovulation was assessed by ultrasonography (every 4h). Cows were artificially inseminated once between 36h before ovulation and 12h after ovulation. In total 122 oocytes/embryos were recovered 7d after ovulation. Insemination-ovulation interval (12h-intervals) affected fertilization and the percentages of good embryos. Fertilization rates were higher when AI was performed between 36-24 and 24-12h before ovulation (85% and 82%) compared to AI after ovulation (56%). AI between 24 and 12h before ovulation resulted in higher percentages of good embryos (68%) compared to AI after ovulation (6%). Insemination-ovulation interval had no effect on number of accessory sperm cells and number of cell cycles when corrected for embryo quality. This study showed that the insemination-ovulation interval with a high probability of fertilization is quite long (from 36 to 12h before ovulation). However, the insemination-ovulation interval in which this fertilized oocyte has a high probability of developing into a good embryo is shorter (24-12h before ovulation).

Animals↗

Success of intrauterine insemination in women aged 40-42 years.

OBJECTIVE: To determine how advancing female age decreases successful outcomes of intrauterine insemination (IUI) alone or combined with ovarian stimulation. DESIGN: Retrospective review. SETTING: Academic fertility center. PATIENT(S): Infertile men and women. INTERVENTION(S): Intrauterine insemination alone or combined with ovarian stimulation. MAIN OUTCOME MEASURE(S): Pregnancy rates, miscarriage rates, and live birth rates per insemination cycle according to female age. RESULT(S): The 1,117 cycles of IUI resulted in 217 pregnancies, for an overall pregnancy rate for all female ages of 19.4% and a live birth rate of 12.9% per cycle inseminated. The overall live birth rate per insemination declined with advancing maternal age. CONCLUSION(S): Advancing female age decreases successful outcomes with IUI. The live birth rate with IUI for women 40-42 years old (n = 82) was 9.8% per insemination and may demonstrate that IUI is an appropriate treatment for this age group of women.

Abortion, Spontaneous↗

Ultrastructure of rabbit ova recovered from ovarian follicles and inseminated in vitro.

Rabbit ova were obtained from presumably preovulatory ovarian follicles of gonadotropin-treated does and inseminated with uterine sperm in vitro. Ova were serially sectioned for light and electron microscopy 0, 1 1/2, 3, 6, and 9 hours after in vitro insemination. Control ova were maintained in culture for 25 hours and examined by light microscopy for cleavage. Little difference in fertilization rate (i.e., ova fertilized/ova inseminated) was observed when criteria were based on ultrastructural evidence (56.5%) and on light microscopic evidence 25 hours post-insemination provided by cleavage of control ova (54.8%). Therefore, observations of cleavage (as in controls here) can be an accurate criterion for fertilization in the rabbit, at least under the in vitro conditions used in this study. After insemination of ova recovered from preovulatory follicles, the developmental sequence was as follows: after 1 1/2 hours, sperm penetration into the vitellus; after 3 hours, male pronuclear formation and second polar body extrusion; after 6 hours, male and female pronuclear enlargement; and after 9 hours, pronuclei in apposition. This sequence compares favorably with the normal temporal sequence of events already well known for fertilization of ovulated ova in the rabbit. Penetrating sperm cells within the matrix of the zona pellucida and the supplementary sperm cells lying in the perivitelline space had undergone the acrosome reaction. Changes associated with the acrosome reaction took place before the penetration of the zona pellucida. The presence of a number of supplementary sperm, usually five to six per ovum, within the perivitelline space of the already activated ovum indicated that the block to polyspermy in these experiments operated mainly at the level of the vitelline membrane, as is the case in the normal fertilization process. The vitelline membrane block to polyspermy occurred rapidly after penetration of the fertilizing sperm into the vitellus and was associated with cortical granule breakdown. Ultrastructural details of rabbit ova recovered from ovarian follicles and inseminated in vitro revealed no distinguishable characteristics when compared with reported observations of ovulated rabbit ova undergoing fertilization in vivo.

Acrosome↗

Psychological aspects of donor insemination: evaluation and follow-up of recipient couples.

OBJECTIVE: To evaluate the utility of psychological screening for couples entering a donor insemination program. DESIGN: Each spouse completed questionnaires. A psychologist reviewed them and rated the psychological fitness of the couple for participation in the program. Follow-up questionnaires were sent to each couple at a mean of 11 months after entry into the program. SETTING: Applicants for donor insemination were studied in an infertility program in a large, tertiary referral center. PATIENTS, PARTICIPANTS: Consecutive applicants to enter the donor insemination program were required to participate in the initial evaluation. INTERVENTIONS: Couples judged by the psychologist to be at risk for a poor psychological outcome had an assessment and counseling interview with the psychologist before proceeding with insemination. MAIN OUTCOME MEASURES: Initially, the Stress and Infertility Questionnaire measured specific anxieties related to donor insemination, marital and sexual impact, and attitudes about confidentiality; the Brief Symptom Inventory measured psychological distress; and the Dyadic Adjustment Inventory assessed marital satisfaction. At follow-up, 48% of couples returned a modified version of the Stress and Infertility Questionnaire and the other two questionnaires. RESULTS: The psychologist's rating was predictive of pregnancy rates (59% for excellent candidates, 41% for acceptable couples, and 14% for couples psychologically at risk). At-risk couples were more likely to drop out of the program (50% versus only 20% of other couples). Sexual problems were reported by 59% of women and 53% of men. Couples believed that a child should not be told of the donor insemination (74% of wives and 80% of husbands). Initially, 64% of wives and 70% of husbands chose total secrecy with families or friends, and these attitudes shifted little over time. CONCLUSION: This screening procedure is cost-effective and suggests that psychological intervention should be attempted with at-risk couples.

Adult↗

Identification of embryo paternity using polymorphic DNA markers to assess fertilizing capacity of spermatozoa after heterospermic insemination in boars.

Differences in sperm fertilizing capacity of males often remain undetected by routine semen parameters. Heterospermic insemination with equal numbers of spermatozoa from 2 males is an accurate method for assessing differences in fertility. Use of heterospermic insemination depends on a reliable, efficient assay to identify paternity of conceptuses or offspring. In this study, polymorphic DNA markers amplified by PCR were tested to determine paternity of Day 5 to 6 embryos. The fertilizing capacity of 2 boars (A and B) with similar semen parameters was compared after homospermic (n=14 gilts) and heterospermic (n=11 gilts) insemination. Single AI's were performed under suboptimal conditions using 1 x 10(9) spermatozoa at 12 to 24 h before ovulation to prompt differences in fertilization and to stimulate sperm competition. The fertilization rate and the number of accessory spermatozoa were determined in Day 5 to 6 embryos. Using 5 different polymorphic DNA markers, paternity could be determined in 95.8% of the embryos. Boar B sired significantly (P<0.05) more offspring than Boar A after insemination with pooled semen, and this was reflected by a significantly (P<0.05) higher number of accessory spermatozoa following homospermic insemination with semen from Boar B, although fertilization rates did not differ between the 2 boars after homospermic insemination. The results suggest that the viability of spermatozoa in the female reproductive tract contributes to differences in fertility rates of males with similar in vitro sperm quality parameters. The number of accessory spermatozoa is a more sensitive measure of boar fertility than the fertilization rate. Polymorphic DNA markers are suitable for verification of parentage even at a very early stage of embryonic development.

Animals↗

A model for economic comparison of swine insemination programs.

Optimal artificial insemination schedules are those that result in a high farrowing rate and litter size, while minimizing costs of semen and labor by avoiding unnecessary inseminations. A simulation model programmed in a commercial spreadsheet was developed to permit comparison of alternative schedules. Farrowing rate and litter size for a particular schedule were dependent on the timing of insemination relative to the time of ovulation. Economic return was calculated by multiplying the number of pigs born per bred sow by $33.00 and subtracting the cost of producing a litter of pigs and raising them to weaning ($222.88 per sow plus $2.44 per pig born) and the cost of detection of estrus and breeding. Seven insemination schedules combined with once versus twice per day detection of estrus were simulated in 500 herds of 100 sows each. Inseminations were simulated to occur on schedules of: 1) 0, 12, 24 and 36 h; 2) 12, 24 and 36 h; 3) 0 and 24 h; 4) 12 and 36 h; 5) 12 h; 6) 24 h; and 7) 36 h after first detection of estrus. Schedule 1 was predicted to yield the highest farrowing rate and litter size. Economic return was highest for Schedule 2 with twice per day detection of estrus followed closely by Schedule 1 with once per day detection of estrus at $14.90 and $13.75 per bred sow, respectively. High performance was dependent on insuring that inseminations occurred at an optimum time in as great a proportion of sows as possible.

Animals↗

Use of vaginal electrical resistance (VER) to predict estrus and ovarian activity, its relationship with plasma progesterone and its use for insemination in buffaloes.

In three experiments we studied the baseline and changes in VER during different natural estrous cycle stages (n=146) in ovarian structures and in plasma progesterone during estrus induced by prostaglandin injection (n=16) and the VER at insemination (n=90) in an attempt to predict estrus, ovulation and the best VER range for inseminating buffaloes for optimum conception. The baseline VER was classified on the basis of ovarian findings and estrous cycle stages. The mean VER during estrus, metestrus, diestrus, proestrus and anestrus was 32.68 +/- 0.46, 41.26 +/- 1.17, 50.23 +/- 0.55, 43.20 +/- 0.64 and 55.86 +/- 0.57 ohms, respectively. There was a significant difference (P<0.01) between the VER except those between metestrus and proestrus. The ANOVA for VER over estrous cycle stages showed a highly significant (P<0.01) effect of stage of estrous cycle on VER in buffaloes. The percent decrease in VER was more pronounced from diestrus to estrus. In the second part of the study plasma progesterone profiles and the appearance of estrus in buffaloes induced to estrus using two dose schedules and routes of PGF2alpha administration showed that luteolysis and estrus induction was slower in the 10 mg i.v.s.m. route (Intra Vulvo Submucosal) (only 60% animals evinced estrus in 48 to 72 hours) as compared to the 25 mg i.m. route (83.33% evidenced estrus in 48 to 72 hrs). Fall in plasma progesterone was synchronous to a fall in VER, the correlation (0.65) between them being positive and significant (P<0.01). After ovulation the VER started rising, showing a distinct relationship between VER and ovulation. By using VER, an additional 36.6% of the buffaloes could be detected in estrus. In the third part of the study, insemination of buffaloes induced to estrus (n=11) and normal-estrus buffaloes (n=79) showed that the overall conception rates to single insemination when the buffaloes were inseminated at the VER range of 26 to 30, 31 to 35 and 36 to 40 ohms were 81.48, 58.97 and 16.66%, respectively. Buffaloes showing VER from 31 to 35 ohms and 36 to 40 ohms also evidenced atypical and Null fern pattern in the cervicovaginal mucus. The study proved that VER can be used successfully to predict the stage of estrous cycle, ovarian status and ovulation; and insemination at a low VER distinctly improves the conception rates in buffaloes.

Animals↗

Effect of preparing and loading multiple insemination guns on conception rate in two large commercial dairy herds.

In large herds, inseminators frequently thaw multiple straws of semen and prepare several insemination guns at once. The aim of this study was to measure the effect of breeding order, the order that thawed straws are used, on conception rate in commercial dairy herds. A single professional inseminator, utilizing semen from five suppliers, performed 2629 inseminations over 30 months. Up to four straws were thawed at one time with the restriction that straws were used within 20 min of thawing. Straws were thawed per supplier's recommendations, with 66.4% of the straws pocket thawed and the remainder warm-water thawed. Conception was determined by a pregnancy check at 42 days. Data were modeled by multiple logistic regression analysis, which included herd, breeding order, lactation number, times bred, month bred and year bred. Breeding order had no significant effect on the probability of conception: Cows 1-4 achieved adjusted conception rates of 0.36, 0.41, 0.37, and 0.39, respectively. Odds ratios (and 95% confidence intervals) were 1.00 (1.00-1.00), 1.22 (0.99-1.49), 1.04 (0.82-1.32), and 1.12 (0.86-1.45), respectively. Associated laboratory studies, which evaluated the effect of post-thaw holding time on percentage of sperm with progressive motility, found mean values at 20 min holding time to be largely unchanged from mean values at 5 min. Thawing temperatures were 6, and 35 degrees C and holding temperatures were 6, 22, and 35 degrees C. The length of the trial and the wide use of semen from multiple suppliers with differing thawing methods suggests that under similar conditions, a careful and experienced inseminator can thaw multiple straws of semen and prepare insemination guns sufficient to breed up to four cows within 20 min, without an adverse effect on conception.

Animals↗