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1 ficant differences in allelic counts between cryptorchid and control dogs.
2         Statistics were similar for formerly cryptorchid and control men.
3 eel/Steel(Dickie)(Sl/Sl(d)) and experimental cryptorchid, as a source of testis cell populations enri
4                                          The cryptorchid condition does not affect stem cell activity
5                                  A bilateral cryptorchid condition was surgically created in sexually
6 e gonadal transcriptome of nine unilaterally cryptorchid dogs and seven control dogs was analyzed usi
7 he scrotal and inguinal gonads of unilateral cryptorchid dogs revealed 8,028 differentially expressed
8  cells harvested from experimentally induced cryptorchid donor testes were exposed in vitro to AAV ve
9 ansgenic mice missing the LGR8 gene are also cryptorchid, INSL3 was tested as the ligand for LGR8.
10                              After 4 days of cryptorchid-mediated heat stress, the average weight of
11      Validation studies in larger cohorts of cryptorchid (n = 122) and control (n = 173) dogs showed
12 ng DHPLC analysis of the genomic DNA from 60 cryptorchid patients.
13 -mediated heat stress, the average weight of cryptorchid testes in wild-type ubiquitin mice was signi
14                                        Thus, cryptorchid testes provide an important approach for pur
15                     The cells recovered from cryptorchid testes were enriched for stem cells 25-fold
16 er which they were injected into each of the cryptorchid testes.
17                                              Cryptorchid testis cells were fractionated by fluorescen
18 st, spermatogonial stem cells from the adult cryptorchid testis express little or no c-kit.
19 er selection strategy, combining the in vivo cryptorchid testis model with in vitro fluorescence-acti
20 C-I)-Thy-1+c-kit- cell fraction of the mouse cryptorchid testis.