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10.1242/dev.142950

http://scihub22266oqcxt.onion/10.1242/dev.142950
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C5358112!5358112!28219945
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suck abstract from ncbi


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pmid28219945      Development 2017 ; 144 (6): 1113-7
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  • Novel fixed z-direction (FiZD) kidney primordia and an organoid culture system for time-lapse confocal imaging #MMPMID28219945
  • Saarela U; Akram SU; Desgrange A; Rak-Raszewska A; Shan J; Cereghini S; Ronkainen VP; Heikkilä J; Skovorodkin I; Vainio SJ
  • Development 2017[Mar]; 144 (6): 1113-7 PMID28219945show ga
  • Tissue, organ and organoid cultures provide suitable models for developmental studies, but our understanding of how the organs are assembled at the single-cell level still remains unclear. We describe here a novel fixed z-direction (FiZD) culture setup that permits high-resolution confocal imaging of organoids and embryonic tissues. In a FiZD culture a permeable membrane compresses the tissues onto a glass coverslip and the spacers adjust the thickness, enabling the tissue to grow for up to 12?days. Thus, the kidney rudiment and the organoids can adjust to the limited z-directional space and yet advance the process of kidney morphogenesis, enabling long-term time-lapse and high-resolution confocal imaging. As the data quality achieved was sufficient for computer-assisted cell segmentation and analysis, the method can be used for studying morphogenesis ex vivo at the level of the single constituent cells of a complex mammalian organogenesis model system.
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