Gene expression across mammalian organ development M Cardoso-Moreira, J Halbert, D Valloton, B Velten, C Chen, Y Shao, ... Nature 571 (7766), 505-509, 2019 | 672 | 2019 |
Lineage-specific profiling delineates the emergence and progression of naive pluripotency in mammalian embryogenesis T Boroviak, R Loos, P Lombard, J Okahara, R Behr, E Sasaki, J Nichols, ... Developmental cell 35 (3), 366-382, 2015 | 466 | 2015 |
Foxa2 is required for the differentiation of pancreatic α-cells CS Lee, NJ Sund, R Behr, PL Herrera, KH Kaestner Developmental biology 278 (2), 484-495, 2005 | 267 | 2005 |
Dynamic regulation of histone H3 methylation at lysine 4 in mammalian spermatogenesis M Godmann, V Auger, V Ferraroni-Aguiar, AD Sauro, C Sette, R Behr, ... Biology of reproduction 77 (5), 754-764, 2007 | 192 | 2007 |
Testicular cAMP responsive element modulator (CREM) protein is expressed in round spermatids but is absent or reduced in men with round spermatid maturation arrest. GF Weinbauer, R Behr, M Bergmann, E Nieschlag Molecular human reproduction 4 (1), 9-15, 1998 | 144 | 1998 |
The molecular evolution of spermatogenesis across mammals F Murat, N Mbengue, SB Winge, T Trefzer, E Leushkin, M Sepp, ... Nature 613 (7943), 308-316, 2023 | 113 | 2023 |
Round spermatids show normal testis‐specific hit but reduced cAMP‐responsive element modulator and transition protein 1 expression in men with round‐spermatid maturation arrest K STEGER, T KLONISCH, K GAVENIS, R BEHR, V SCHALLER, ... Journal of andrology 20 (6), 747-754, 1999 | 97 | 1999 |
Derivation and characterization of bovine induced pluripotent stem cells by transposon-mediated reprogramming TR Talluri, D Kumar, S Glage, W Garrels, Z Ivics, K Debowski, R Behr, ... Cellular Reprogramming (Formerly" Cloning and Stem Cells") 17 (2), 131-140, 2015 | 95 | 2015 |
Developmental expression of the pluripotency factor sal-like protein 4 in the monkey, human and mouse testis: restriction to premeiotic germ cells K Eildermann, N Aeckerle, K Debowski, M Godmann, H Christiansen, ... Cells Tissues Organs 196 (3), 206-220, 2012 | 93 | 2012 |
Spatial profiling of early primate gastrulation in utero S Bergmann, CA Penfold, E Slatery, D Siriwardena, C Drummer, S Clark, ... Nature 609 (7925), 136-143, 2022 | 89 | 2022 |
The pluripotency factor LIN28 in monkey and human testes: a marker for spermatogonial stem cells? N Aeckerle, K Eildermann, C Drummer, J Ehmcke, S Schweyer, A Lerchl, ... Molecular human reproduction 18 (10), 477-488, 2012 | 88 | 2012 |
A novel embryonic stem cell line derived from the common marmoset monkey (Callithrix jacchus) exhibiting germ cell-like characteristics T Müller, G Fleischmann, K Eildermann, K Mätz-Rensing, PA Horn, ... Human Reproduction 24 (6), 1359-1372, 2009 | 85 | 2009 |
cAMP response element modulator (CREM): an essential factor for spermatogenesis in primates? R Behr, GF Weinbauer International Journal of Andrology 24 (3), 126-135, 2001 | 82 | 2001 |
Epithelial–mesenchymal transition in colonies of rhesus monkey embryonic stem cells: a model for processes involved in gastrulation R Behr, C Heneweer, C Viebahn, HW Denker, M Thie Stem cells 23 (6), 805-816, 2005 | 78 | 2005 |
Replacement of connexin43 by connexin26 in transgenic mice leads to dysfunctional reproductive organs and slowed ventricular conduction in the heart E Winterhager, N Pielensticker, J Freyer, A Ghanem, JW Schrickel, JS Kim, ... BMC Developmental Biology 7, 1-14, 2007 | 76 | 2007 |
Novel germ cell markers characterize testicular seminoma and fetal testis I Gashaw, O Dushaj, R Behr, K Biermann, R Brehm, H Rübben, ... Molecular human reproduction 13 (10), 721-727, 2007 | 76 | 2007 |
Importance of the pluripotency factor LIN28 in the mammalian nucleolus during early embryonic development EJ Vogt, M Meglicki, KI Hartung, E Borsuk, R Behr Development 139 (24), 4514-4523, 2012 | 73 | 2012 |
The involvement of gonadotropin inhibitory hormone and kisspeptin in the metabolic regulation of reproduction F Wahab, M Shahab, R Behr J Endocrinol 225 (2), R49-R66, 2015 | 69 | 2015 |
Misleading and reliable markers to differentiate between primate testis-derived multipotent stromal cells and spermatogonia in culture K Eildermann, J Gromoll, R Behr Human Reproduction 27 (6), 1754-1767, 2012 | 68 | 2012 |
Separation of somatic and germ cells is required to establish primate spermatogonial cultures D Langenstroth, N Kossack, B Westernströer, J Wistuba, R Behr, ... Human Reproduction 29 (9), 2018-2031, 2014 | 66 | 2014 |