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Bradley R. Cairns, PhD, discusses his lab's work creating a transcriptional cell atlas of the developing human testis during puberty, revealing dramatic developmental changes in both germ and somatic niche cell lineages. Series: "Stem Cell Channel" [Show ID: 35452]
Bradley R. Cairns, PhD, discusses his lab's work creating a transcriptional cell atlas of the developing human testis during puberty, revealing dramatic developmental changes in both germ and somatic niche cell lineages. Series: "Stem Cell Channel" [Show ID: 35452]
Bradley R. Cairns, PhD, discusses his lab's work creating a transcriptional cell atlas of the developing human testis during puberty, revealing dramatic developmental changes in both germ and somatic niche cell lineages. Series: "Stem Cell Channel" [Show ID: 35452]
Bradley R. Cairns, PhD, discusses his lab's work creating a transcriptional cell atlas of the developing human testis during puberty, revealing dramatic developmental changes in both germ and somatic niche cell lineages. Series: "Stem Cell Channel" [Show ID: 35452]
Bradley R. Cairns, PhD, discusses his lab's work creating a transcriptional cell atlas of the developing human testis during puberty, revealing dramatic developmental changes in both germ and somatic niche cell lineages. Series: "Stem Cell Channel" [Show ID: 35452]
Bradley R. Cairns, PhD, discusses his lab's work creating a transcriptional cell atlas of the developing human testis during puberty, revealing dramatic developmental changes in both germ and somatic niche cell lineages. Series: "Stem Cell Channel" [Show ID: 35452]
Bradley R. Cairns, PhD, discusses his lab's work creating a transcriptional cell atlas of the developing human testis during puberty, revealing dramatic developmental changes in both germ and somatic niche cell lineages. Series: "Stem Cell Channel" [Show ID: 35452]
Bradley R. Cairns, PhD, discusses his lab's work creating a transcriptional cell atlas of the developing human testis during puberty, revealing dramatic developmental changes in both germ and somatic niche cell lineages. Series: "Stem Cell Channel" [Show ID: 35452]