A vast stem-progenitor cell pool, richly vascular system, and hybrid ossification drive the daily centimeter-scale elongation of bony antlers

Hengxing Ba , Shidian He , Hai-Xi Sun , Xin Wang , Hang Zhang , Qiuting Deng , Yue Yuan , Chang Liu , Zhen Wang , Jiping Li , Liuwei Xie , Yujiao Tang , Jimei Wang , Chao Ma , Nan Li , Pengfei Hu , Qianqian Guo , Guokun Zhang , Dawn Elizabeth Coates , Ying Gu , Chuanyu Liu , Datao Wang , Chunyi Li

iMeta ›› 2025, Vol. 4 ›› Issue (6) : e70097

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iMeta ›› 2025, Vol. 4 ›› Issue (6) :e70097 DOI: 10.1002/imt2.70097
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A vast stem-progenitor cell pool, richly vascular system, and hybrid ossification drive the daily centimeter-scale elongation of bony antlers
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Hengxing Ba, Shidian He, Hai-Xi Sun, Xin Wang, Hang Zhang, Qiuting Deng, Yue Yuan, Chang Liu, Zhen Wang, Jiping Li, Liuwei Xie, Yujiao Tang, Jimei Wang, Chao Ma, Nan Li, Pengfei Hu, Qianqian Guo, Guokun Zhang, Dawn Elizabeth Coates, Ying Gu, Chuanyu Liu, Datao Wang, Chunyi Li. A vast stem-progenitor cell pool, richly vascular system, and hybrid ossification drive the daily centimeter-scale elongation of bony antlers. iMeta, 2025, 4(6): e70097 DOI:10.1002/imt2.70097

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