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1 ge, resulting in decreased testis weight and sperm count.
2 ted via apoptosis, with a consequent reduced sperm count.
3 uctions in serum testosterone and epididymal sperm count.
4 cal activity, was positively associated with sperm counts.
5 ont of a computer, was associated with lower sperm counts.
6 y reported high frequency of subnormal human sperm counts.
7 V levels in brains and testes, and preserved sperm counts.
8 d show reduced sperm motility and epididymal sperm counts.
9 ad abnormal seminiferous tubules and reduced sperm counts.
10  reproduction and reported declines in human sperm counts.
11 aracterized by an age-associated decrease in sperm counts, abnormal sperm morphology, and mild testic
12 tion and a 29% (95% CI: -46, -1) lower total sperm count after adjustment for confounders.
13 d reduced sperm motility, survival time, and sperm count also contributed to the infertility phenotyp
14 t, degenerated seminiferous tubules, reduced sperm count and low fertility in C/C males, but no overt
15 alizations were also higher with a low total sperm count and low motility.
16                                              Sperm count and motility in epididymis from AR(-/y) mice
17 wn by reduced mating activity, a decrease in sperm count and motility, and smaller litter size.
18 even low levels of these compounds can lower sperm count and negatively affect human male fertility,
19  Together with the adult-onset disorders low sperm count and testicular cancer, they can constitute a
20 of mutant germ cells were infertile with low sperm counts and a high frequency of degenerate seminife
21                                              Sperm counts and motility did not differ at age 6 wk in
22 ination of NOVP plus abdominal radiotherapy, sperm counts and motility were restored in most patients
23 thesis to explain the link between declining sperm counts and rising testis cancer, there has been in
24 cluding a reasonable ovulation rate, correct sperm count, and appropriate organization of the germ li
25 t cryptorchidism, lower testis weight, lower sperm count, and subfertility.
26             Tenr mutant males have a reduced sperm count, and Tenr-/- sperm show a decrease in motili
27  positively correlated to sperm motility, to sperm count, and to the desmosterol-to-cholesterol ratio
28 ciated with lower sperm concentration, total sperm count, and total motile sperm count (p-trends </=
29 d 30% (2, 70%) in sperm concentration, total sperm count, and total motile sperm count, respectively,
30 y due to degeneration of germ cells, reduced sperm counts, and decreased sperm motility.
31 l vacuolization, loss of germ cells, reduced sperm counts, and disruption of the seminiferous tubules
32 xhibit defective spermatogenesis and reduced sperm count as young adults.
33 t normal, with testis weights and epididymal sperm counts being unaffected.
34        The previously reported difference in sperm counts between Finland and elsewhere in northwest
35 males, which have normal mating behavior and sperm counts, but abnormal distal vas deferens convoluti
36 ntration by 52% (95% CI: -68, -27) and total sperm count by 55% (95% CI: -71, -31).
37 ive duration and improve early postoperative sperm counts compared to the pure microsurgical techniqu
38  improve the rate of return of postoperative sperm counts compared to the pure microsurgical techniqu
39 ed significant lower sperm concentration and sperm counts compared with nonusers, while testosterone
40 uced motility, abnormal structure, and lower sperm counts compared with that in normal subjects.
41 nd significantly improve early postoperative sperm counts compared with the pure microsurgical techni
42                                              Sperm counts declined significantly within 1 month after
43        A lower sperm concentration and total sperm count in men with a high intake of saturated fat w
44 rty for F1 females, reduced caput epidydimal sperm counts in F1 adult males, and increased incidences
45 mong men who did not watch television; total sperm counts in those 2 groups were 104 million (95% CI:
46 ts that optimized testes mass and epididymal sperm counts (indicators of gamete production) contained
47 y had significantly smaller testes and total sperm counts (median: 12.5 mL and 16.3 million) in compa
48 fertility in Cstf2t(-/-) males is due to low sperm count, multiple genes controlling many aspects of
49                    In two men with ejaculate sperm counts of 40 000-100 000 per mL, we detected Y-chr
50             The testicular volumes and total sperm counts of the RTx patients were smaller than those
51 tration, total sperm count, and total motile sperm count (p-trends </= 0.05).
52  association with sperm concentration, total sperm count, percent motile and percent morphologically
53         This effect on hybrid males, lowered sperm counts rather than nonfunctional sperm, is differe
54 during, and after chemotherapy and after the sperm count recovered from the effects of abdominal radi
55 months after the completion of chemotherapy, sperm counts recovered rapidly to normospermic levels in
56 tration, total sperm count, and total motile sperm count, respectively, compared with the lowest quar
57 e were unusually small with severely reduced sperm count resulting in infertility.
58 gger testes, larger seminal vesicles, higher sperm counts, richer mitochondrial loading in sperm and
59                                        Total sperm count, sperm concentration, morphology, motility,
60                                              Sperm counts, sperm motility, and sperm morphology were
61                            Normal epididymal sperm count, spermatozoa morphology, capacitation, and m
62 tion and a 41% (95% CI: 4%, 64%) lower total sperm count than did men in the lowest quartile.
63 exhibit structurally abnormal sperm, reduced sperm count, weakened motility, and compromised fertilit
64 es and male genitalia, and were fertile, but sperm counts were reduced by one half.

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