Variability of the Chromatin Decondensation Ability Test on Human Sperm
A sperm nuclear decondensation ability test using 1% SDS + 6 mM EDTA was used to evaluate: a system of classification and nomenclature for the decondensation of nuclear chromatin; the progress of decondensation as a function of the duration of exposure to SDS/EDTA; the residual variance, or "sc...
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| Published in: | Archives of andrology Vol. 11; no. 1; pp. 1 - 7 |
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| Format: | Journal Article |
| Language: | English |
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England
Informa UK Ltd
01.01.1983
Taylor & Francis |
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| ISSN: | 0148-5016, 1521-0375 |
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| Abstract | A sperm nuclear decondensation ability test using 1% SDS + 6 mM EDTA was used to evaluate: a system of classification and nomenclature for the decondensation of nuclear chromatin; the progress of decondensation as a function of the duration of exposure to SDS/EDTA; the residual variance, or "scoring error;" the within-subject variance (N = 5); and the between-subject variance (N = 10). The process of chromatin decondensation was found to be a continuous phenomenon, but a scheme of nomenclature using four categories along with a system of data analysis using class weightings were developed. A 5-min exposure to SDS/EDTA resulted in a minimum scoring error (8.34%). The within- and between-subject variances were not significantly different from each other, but both were individually different (p < 0.001) from the residual variance. |
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| AbstractList | A sperm nuclear decondensation ability test using 1% SDS + 6 mM EDTA was used to evaluate: a system of classification and nomenclature for the decondensation of nuclear chromatin; the progress of decondensation as a function of the duration of exposure to SDS/EDTA; the residual variance, or "scoring error;" the within-subject variance (N = 5); and the between-subject variance (N = 10). The process of chromatin decondensation was found to be a continuous phenomenon, but a scheme of nomenclature using four categories along with a system of data analysis using class weightings were developed. A 5-min exposure to SDS/EDTA resulted in a minimum scoring error (8.34%). The within- and between-subject variances were not significantly different from each other, but both were individually different (p less than 0.001) from the residual variance. A sperm nuclear decondensation ability test using 1% SDS + 6 mM EDTA was used to evaluate: a system of classification and nomenclature for the decondensation of nuclear chromatin; the progress of decondensation as a function of the duration of exposure to SDS/EDTA; the residual variance, or "scoring error;" the within-subject variance (N = 5); and the between-subject variance (N = 10). The process of chromatin decondensation was found to be a continuous phenomenon, but a scheme of nomenclature using four categories along with a system of data analysis using class weightings were developed. A 5-min exposure to SDS/EDTA resulted in a minimum scoring error (8.34%). The within- and between-subject variances were not significantly different from each other, but both were individually different (p < 0.001) from the residual variance. A sperm nuclear decondensation ability test using 1% SDS + 6 mM EDTA was used to evaluate: a system of classification and nomenclature for the decondensation of nuclear chromatin; the progress of decondensation as a function of the duration of exposure to SDS/EDTA; the residual variance, or "scoring error;" the within-subject variance (N = 5); and the between-subject variance (N = 10). The process of chromatin decondensation was found to be a continuous phenomenon, but a scheme of nomenclature using four categories along with a system of data analysis using class weightings were developed. A 5-min exposure to SDS/EDTA resulted in a minimum scoring error (8.34%). The within- and between-subject variances were not significantly different from each other, but both were individually different (p less than 0.001) from the residual variance.A sperm nuclear decondensation ability test using 1% SDS + 6 mM EDTA was used to evaluate: a system of classification and nomenclature for the decondensation of nuclear chromatin; the progress of decondensation as a function of the duration of exposure to SDS/EDTA; the residual variance, or "scoring error;" the within-subject variance (N = 5); and the between-subject variance (N = 10). The process of chromatin decondensation was found to be a continuous phenomenon, but a scheme of nomenclature using four categories along with a system of data analysis using class weightings were developed. A 5-min exposure to SDS/EDTA resulted in a minimum scoring error (8.34%). The within- and between-subject variances were not significantly different from each other, but both were individually different (p less than 0.001) from the residual variance. |
| Author | Huret, J. L. |
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| Cites_doi | 10.1530/jrf.0.0650331 10.1111/j.1440-169X.1980.00543.x 10.1111/j.1748-1716.1982.tb07111.x 10.1111/j.1748-1716.1980.tb06565.x 10.1111/j.1365-2605.1980.tb00102.x 10.1111/j.1748-1716.1980.tb06567.x |
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| SubjectTerms | Chromatin - analysis Chromatin decondensation Edetic Acid Human Humans Male Methodology Methods Nucleus Sodium Dodecyl Sulfate Sperm Spermatozoa - analysis |
| Title | Variability of the Chromatin Decondensation Ability Test on Human Sperm |
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