Computerized human sperm analysis

1994 ◽  
Vol 61 (1) ◽  
pp. 75-80
Author(s):  
G. Bonanni ◽  
A. Colonna ◽  
S. Masiero ◽  
I. Mastrogiacomo

The recent introduction of various devices for computer-assisted sperm analysis allows us to have not only objective measurements of the seminal parameters but also to determine some characteristics of sperm motion such as curvilinear and linear velocity and amplitude of lateral head displacement that cannot be obtained by routine analysis. These new seminal parameters seem to be very useful in the diagnosis of male infertility and, among them, ALH seems to play a more important role; in one of our studies we found a significant correlation between this parameter and the results of the bovine cervical mucus penetration test (Penetrak). Furthermore it is possible to determine sperm subpopulations for each parameter and so it will be possible to express a more accurate judgement not only on the fertilizing capacity of semen but also to know the effects on spermatozoa of different activating and capacitating treatments.

2014 ◽  
Vol 2014 ◽  
pp. 1-6 ◽  
Author(s):  
P. Perumal ◽  
S. K. Srivastava ◽  
S. K. Ghosh ◽  
K. K. Baruah

The present study was undertaken to assess the motility and velocity parameters of sperm of freezable and nonfreezable ejaculates by computer-assisted sperm analyser (CASA) such as Hamilton-Thorne Semen Analyser IVOS 11 in mithun semen. Fifty ejaculates (twenty-five ejaculates each for freezable and nonfreezable semen ejaculates) were collected from ten matured mithun bulls. CASA parameters, motility parameters such as forward progressive motility (FPM) (%), nonprogressive motility (NPM) (%), total motility (TM) (%), and static sperms (SM) (%); velocity parameters such as curvilinear velocity (VCL) (μm/sec), straight line velocity (VSL) (μm/sec), average path velocity (VAP) (μm/sec), linearity (LIN) (%), straightness (STR) (%), wobble (WOB) (%), amplitude of lateral head displacement (ALH) (μm), and beat/cross-frequency (BCF) (Hz) were measured by CASA analyser. The result revealed that these parameters varied significantly (P<0.05) between the freezable and nonfreezable ejaculates and freezable ejaculates have significantly (P<0.05) higher value than nonfreezable ejaculates. It was concluded that most of the CASA parameters were significantly lower in nonfreezable ejaculates than in freezable ejaculates in mithun and confirmed that the CASA was effective for a quick and objective analysis of motility and velocity parameters in mithun semen.


Animals ◽  
2020 ◽  
Vol 10 (11) ◽  
pp. 1993
Author(s):  
Sabrina Gacem ◽  
Jaime Catalán ◽  
Anthony Valverde ◽  
Carles Soler ◽  
Jordi Miró

In order to optimize the donkey sperm motility analysis by the CASA (Computer Assisted Sperm Analysis)-Mot system, twelve ejaculates were collected from six jackasses. Capillary loaded chamber (CLC), ISAS®D4C depths 10 and 20 µm, ISAS®D4C Leja 20 and drop displacement chamber (DDC), Spermtrack® (Spk) depths 10 and 20 µm were used. Sperm kinematic variables were evaluated using each chamber and a high-resolution camera capable of capturing a maximum of 500 frames/second (fps). The optimum frame rate (OFR) (defined according to curvilinear velocity—VCL) was dependent on chamber type. The highest OFR obtained was 278.46 fps by Spk20. Values for VCL, straight-line velocity (VSL), straightness (STR), amplitude of lateral head displacement (ALH) and beat cross frequency (BCF) were high in DDC and 10 µm depth. In both DDC 10 and 20 µm, the sperm velocities (VCL, VSL, VAP) and ALH values decreased significantly from the centre to the edges, while Wobble and BCF increased. No defined behavior was observed along the CLC. However, all the kinematic variables had a higher value in a highly concentrated sample, in both chamber types. In conclusion, analyzing a minimum of nine fields at 250 fps from the centre to the edges in Spk10 chamber using a dilution of 30 × 106 sperm/mL offers the best choice for donkey computerised sperm motility analysis.


2013 ◽  
Vol 25 (1) ◽  
pp. 183 ◽  
Author(s):  
I. Ortiz ◽  
J. Dorado ◽  
D. Acha ◽  
L. Ramirez ◽  
M. Urbano ◽  
...  

Single-layer centrifugation (SLC) with EquipureTM Bottom Layer has been used to enhance the quality of stallion semen samples; however, no studies have been performed on donkeys. The aim of this study was to determine if SLC with EquipureTM Bottom Layer improves kinematic parameters on frozen–thawed donkey sperm. Semen was collected from 4 Andalusian donkeys by artificial vagina. Three ejaculates from each donkey were centrifuged with EquiproTM, supernatant was removed, and pellet was re-extended in the freezing medium GentTM to a final concentration of 200 × 106 spermatozoa per milliliter. Sperm were slowly cooled to 5°C for 2 h, loaded in 0.5-mL plastic straws, and frozen in liquid-nitrogen vapors. After at least one week of storage, straws were thawed in a water bath at 37°C for 30 s. After thawing, semen samples were divided in 2 aliquots: aliquot 1 was used as such (control) and aliquot 2 was processed by SLC using EquipureTM Bottom Layer. Computer-assisted sperm analysis was performed, and sperm kinematics total motility (%), progressive motility (%), curvilinear velocity (VCL; µm s–1), velocity straight line (VSL; µm s–1), velocity average path (VAP; µm s–1), linearity (LIN; %), straightness (STR; %), wobble (WOB; %), lateral head displacement (ALH; µm), and beat cross frequency (BCF; Hz) were statistically compared using GLM model between frozen–thawed semen samples processed or not with EquipureTM. Results were expressed as mean ± standard error. Significant differences (P < 0.05) were found between SLC-selected and unselected semen for total motility (77.44 ± 5.83 v. 58.89 ± 6.07), progressive motility (76.88 ± 4.52 v. 56.59 ± 5.44), VCL (137.50 ± 0.75 v. 133.0 ± 0.99), LIN (69.43 ± 0.31 v. 68.23 ± 0.41), STR (78.45 ± 0.29 v. 76.90 ± 0.37), WOB (85.06 ± 0.18 v. 83.91 ± 0.26), ALH (2.76 ± 0.01 v. 2.44 ± 0.01), and BCF (9.13 ± 0.05 v. 8.53 ± 0.06), respectively. No significant differences were observed for VSL (102.89 ± 0.70 v. 104.32 ± 0.95) and VAP (123.21 ± 0.71 v. 121.50 ± 0.98). Most of the computer-assisted sperm analysis parameters used in the present study have been previously identified as reliable markers of sperm motility in relation to sperm quality and fertility. It has also been reported that VCL appears to be critical for the formation of the sperm reservoir and penetration of the zona pellucida. In addition, other variables improved in the SLC-selected samples have been described as measure of progressivity (LIN, STR) and spermatozoa vigor (BCF, ALH). These preliminary results suggest an additional option for improving sperm quality in donkey semen doses. In conclusion, SLC with EquipureTM can be used to enhance kinematic parameters on frozen–thawed donkey sperm.


Author(s):  
Raushan K Singh ◽  
A. Kumaresan ◽  
M. A. Mir ◽  
P. Kumar ◽  
S. Chhillar ◽  
...  

The present study was undertaken to identify the differences in sperm kinematics between buffalo bulls with different fertility ratings. Murrah buffalo bulls (n=9) that were routinely used for breeding purpose under progeny testing programme were utilized for the study. Bull fertility was determined based on in vivo fertility trials and the conception rates (CR) were adjusted for different non-genetic parameters. Based on the adjusted CR, bulls were classified into high, medium and low fertile group. Frozen semen samples of these bulls were obtained and sperm kinematic parameters were assessed using a computer assisted sperm analyzer. The kinematic parameters analyzed included the curvilinear velocity (VCL), the linear velocity (VSL), the average path velocity (VAP), the amplitude of lateral head displacement (ALH), the linearity (LIN), the straightness coefficient (STR) and the beat cross frequency (BCF). In high fertile bulls, the proportion of motile spermatozoa was higher (p<0.001) than the medium and low fertile bulls. The VAP and VCL of sperm motion were significantly higher (P<0.05) in high fertile bulls compared to either medium or low fertile bulls. The VSL was significantly lower in low fertile bulls (P<0.005) compared to either high or medium fertile bulls. Spermatozoa from high fertile bulls had significantly higher (P<0.05) BCF, STR, ALH and LIN compared to either medium or low fertile bulls. Buffalo bull fertility was significantly and positively correlated with sperm motility, VAP, VSL, VCL and ALH.


2001 ◽  
Vol 26 (2) ◽  
pp. 75-83 ◽  
Author(s):  
Hashihiro HIGUCHI ◽  
Masanao NAKAOKA ◽  
Satoshi KAWAMURA ◽  
Yusuke KAMITA ◽  
Akira KOHDA ◽  
...  

2020 ◽  
Vol 1 (2) ◽  
pp. 60-66
Author(s):  
Agustinus Agustinus ◽  
Cennikon Pakpahan

Background: A semen analysis exam is a routine check that is done to evaluate fertility. The World Health Organization (WHO) recommended a manual method to obtain objective and standardized values. However, sometimes some errors can be found with this method such as motility. Computer-Assisted Sperm Analysis offers a way to reduce inaccuracies that often occur with manual methods. Reviews:  CASA systems consist of a microscope which connected into a camera to detect microscopic sperm suspension images and a computer installed with special software to extract desired information and produce the desired output. In the morphological examination, CASA can reduce the coefficient of variation (CV) which is around 4.8% compared to the manual examination but the time required is longer than manual. CASA can visualize and evaluate sperm kinematics. Various parameters such as mean path velocity (VAP), curved velocity (VCL), straight-line velocity (VSL), lateral head displacement amplitude (ALH), or beat cross frequency can be obtained, and this allows a detailed view into the behavior of individual sperm. The limitations affecting CASA's ability to provide accurate results for sperm concentration and percentages of motile or progressively motile spermatozoa. Summary: CASA has several advantages through its ability to calculate more detailed parameters, but a qualified operator must operate it because there is some potential for misinterpretation. The combination of The Manual and CASA is highly recommended for better results.


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