• Chinese Journal of Lasers
  • Vol. 45, Issue 2, 207024 (2018)
Jiang Pengchong1, Wei Wei1, Hu Fen1, Zhang Xinzheng1、2, and Pan Leiting1、3、*
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: 10.3788/CJL201845.0207024 Cite this Article Set citation alerts
    Jiang Pengchong, Wei Wei, Hu Fen, Zhang Xinzheng, Pan Leiting. Study of Stripe Regeneration of Zebrafish Based on Laser Ablation Technology[J]. Chinese Journal of Lasers, 2018, 45(2): 207024 Copy Citation Text show less
    Pulsed laser ablation system. (a) Schematic; (b) photographic image
    Fig. 1. Pulsed laser ablation system. (a) Schematic; (b) photographic image
    Effects of melanophores and xanthophores on melanophore regeneration. (a)(e) Schematics of ablation areas; (b)(f) regenerated zebrafish surface patterns on the third day after ablation; (c)(g) regenerated zebrafish surface patterns on the twenty-fifth day after ablation; (d) statistical data of cell density
    Fig. 2. Effects of melanophores and xanthophores on melanophore regeneration. (a)(e) Schematics of ablation areas; (b)(f) regenerated zebrafish surface patterns on the third day after ablation; (c)(g) regenerated zebrafish surface patterns on the twenty-fifth day after ablation; (d) statistical data of cell density
    Effects of xanthophores within short/middle distance on melanophore regeneration. (a)(e) Schematics of ablation areas; (b)(f) regenerated zebrafish surface patterns on the third day after ablation; (c)(g) regenerated zebrafish surface patterns on the twenty-fifth day after ablation; (d) statistical data of cell density
    Fig. 3. Effects of xanthophores within short/middle distance on melanophore regeneration. (a)(e) Schematics of ablation areas; (b)(f) regenerated zebrafish surface patterns on the third day after ablation; (c)(g) regenerated zebrafish surface patterns on the twenty-fifth day after ablation; (d) statistical data of cell density
    Effects of xanthophores with long distance on melanophore regeneration. (a) Schematics of ablation areas; (b) regenerated zebrafish surface patterns on the third day after ablation; (c) regenerated zebrafish surface patterns on the twenty-fifth day after ablation; (d) statistical data of cell densities in regions I and II
    Fig. 4. Effects of xanthophores with long distance on melanophore regeneration. (a) Schematics of ablation areas; (b) regenerated zebrafish surface patterns on the third day after ablation; (c) regenerated zebrafish surface patterns on the twenty-fifth day after ablation; (d) statistical data of cell densities in regions I and II
    Direction-dependent manner of promotion of xanthophores on melanophore regeneration. (a)(e) Schematics of ablation areas; (b)(f) regenerated zebrafish surface patterns on the third day after ablation; (c)(g) regenerated zebrafish surface patterns on the twenty-fifth day after ablation; (d) statistical data of cell densities for blue and green rectangular regions
    Fig. 5. Direction-dependent manner of promotion of xanthophores on melanophore regeneration. (a)(e) Schematics of ablation areas; (b)(f) regenerated zebrafish surface patterns on the third day after ablation; (c)(g) regenerated zebrafish surface patterns on the twenty-fifth day after ablation; (d) statistical data of cell densities for blue and green rectangular regions
    Schematic of main interactions between zebrafish pigment cells. (a) Xanthophores inhibit melanophore regeneration within short distance (adjacent location); (b) xanthophores promote melanophore regeneration in a direction perpendicular to its stripe within middle distance (half stripe); (c) xanthophores have no effect on melanophore regeneration within long distance (beyond half width); (d) xanthophores do not promote melanophore regeneration in a direction parallel to its stripe
    Fig. 6. Schematic of main interactions between zebrafish pigment cells. (a) Xanthophores inhibit melanophore regeneration within short distance (adjacent location); (b) xanthophores promote melanophore regeneration in a direction perpendicular to its stripe within middle distance (half stripe); (c) xanthophores have no effect on melanophore regeneration within long distance (beyond half width); (d) xanthophores do not promote melanophore regeneration in a direction parallel to its stripe
    Jiang Pengchong, Wei Wei, Hu Fen, Zhang Xinzheng, Pan Leiting. Study of Stripe Regeneration of Zebrafish Based on Laser Ablation Technology[J]. Chinese Journal of Lasers, 2018, 45(2): 207024
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