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A comparative study of cellular diversity between the Xenopus pronephric and mouse metanephric nephron. , Corkins ME, Achieng M, DeLay BD , Krneta-Stankic V , Cain MP, Walker BL, Chen J , Lindström NO, Miller RK ., Kidney Int. January 1, 2023; 103 (1): 77-86.
Tissue-Targeted CRISPR-Cas9-Mediated Genome Editing of Multiple Homeologs in F0-Generation Xenopus laevis Embryos. , Corkins ME, DeLay BD , Miller RK ., Cold Spring Harb Protoc. March 1, 2022; 2022 (3):
Dynamin Binding Protein Is Required for Xenopus laevis Kidney Development. , DeLay BD , Baldwin TA, Miller RK ., Front Physiol. January 1, 2019; 10 143.
Transgenic Xenopus laevis Line for In Vivo Labeling of Nephrons within the Kidney. , Corkins ME, Hanania HL, Krneta-Stankic V , DeLay BD , Pearl EJ , Lee M, Ji H, Davidson AJ, Horb ME , Miller RK ., Genes (Basel). April 6, 2018; 9 (4):
Tissue-Specific Gene Inactivation in Xenopus laevis: Knockout of lhx1 in the Kidney with CRISPR/Cas9. , DeLay BD , Corkins ME, Hanania HL, Salanga M , Deng JM, Sudou N , Taira M , Horb ME , Miller RK ., Genetics. February 1, 2018; 208 (2): 673-686.
Xenopus: leaping forward in kidney organogenesis. , Krneta-Stankic V , DeLay BD , Miller RK ., Pediatr Nephrol. April 1, 2017; 32 (4): 547-555.
Technique to Target Microinjection to the Developing Xenopus Kidney. , DeLay BD , Krneta-Stankic V , Miller RK ., J Vis Exp. May 3, 2016; (111):