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31 results on '"Shoko, Ishibashi"'

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1. Duox is the primary NADPH oxidase responsible for ROS production during adult caudal fin regeneration in zebrafish

2. Ca2+-Induced Mitochondrial ROS Regulate the Early Embryonic Cell Cycle

3. Zebrafish duox mutations provide a model for human congenital hypothyroidism

4. Highly efficient bi-allelic mutation rates using TALENs in Xenopus tropicalis

5. The roles of NADPH oxidases during adult zebrafish fin regeneration

6. How to Grow

7. Ca2+-Induced Mitochondrial ROS Regulate the Early Embryonic Cell Cycle

8. Zebrafish

9. Zebrafish duox Mutations Provide A Model For Human Congenital Hypothyroidism

10. Elevated and sustained reactive oxygen species levels facilitate mesoderm formation during early Xenopus development

11. Xenopus as a Model Organism for Biomedical Research

12. List of Contributors

13. Amputation-induced reactive oxygen species are required for successful Xenopus tadpole tail regeneration

14. pTransgenesis: a cross-species, modular transgenesis resource

15. The 5′-AT-rich half-site of Maf recognition element: a functional target for bZIP transcription factor Maf

17. Construction of BAC library for the amphibian Xenopus tropicalis

18. Reverse genetic studies using antisense morpholino oligonucleotides

19. Reverse Genetic Studies Using Antisense Morpholino Oligonucleotides

20. A Simple Method of Transgenesis Using I-Sce I Meganuclease in Xenopus

21. Generating Transgenic Frog Embryos by Restriction Enzyme Mediated Integration (REMI)

22. Generation of Transgenic Xenopus laevis: III. Sperm Nuclear Transplantation

23. Generation of Transgenic Xenopus laevis: I. High-Speed Preparation of Egg Extracts

24. cis-Regulatory remodeling of the SCL locus during vertebrate evolution

25. A method for generating transgenic frog embryos

26. Ca2+-Induced Mitochondrial ROS Regulate the Early Embryonic Cell Cycle.

27. Distinct roles of maf genes during Xenopus lens development

28. Generation of Transgenic Xenopus laevis: II. Sperm Nuclei Preparation

29. Whole-mount in situ hybridization and a genotyping method on single Xenopus embryos

31. BDNF promotes target innervation of Xenopus mandibular trigeminal axons in vivo

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