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Corrigendum

Polycaprolactone Electrospun Fiber Scaffold Loaded With iPSCs-NSCs And ASCs As A Novel Tissue Engineering Scaffold For The Treatment Of Spinal Cord Injury [Corrigendum]

Page mmmmmmmdclxxxi | Published online: 19 Sep 2019
This article refers to:
Polycaprolactone electrospun fiber scaffold loaded with iPSCs-NSCs and ASCs as a novel tissue engineering scaffold for the treatment of spinal cord injury

Zhou X, Shi G, Fan B, et al. Int J Nanomedicine. 2018;13:6265–6277.

On page 6273, ) should be presented as follows:

Following a review of our data post-publication, we found the image was incorrectly uploaded and used for ). The correct image is shown in this corrigendum. This correction of the image has no impact to the findings of the study. The authors apologize for this error.

Figure 4 Axonal regeneration and remyelination of transplanted cells in injured spinal cord.

Notes: (A) Spinal cord transection and transplantation. Scale bar =0.5 cm. (B) Gross morphology and cavity formation of spinal cord tissue. (C) H&E staining of Group 1 (a), Group 2 (b), Group 3 (c), and Group 4 (d). Arrows: infiltrated cells in spinal cord. Scale bar =100 μm.

Abbreviation: H&E, hematoxylin–eosin.

Figure 4 Axonal regeneration and remyelination of transplanted cells in injured spinal cord.Notes: (A) Spinal cord transection and transplantation. Scale bar =0.5 cm. (B) Gross morphology and cavity formation of spinal cord tissue. (C) H&E staining of Group 1 (a), Group 2 (b), Group 3 (c), and Group 4 (d). Arrows: infiltrated cells in spinal cord. Scale bar =100 μm.Abbreviation: H&E, hematoxylin–eosin.