4.7 Article

Automated Axon Counting in Rodent Optic Nerve Sections with AxonJ

Journal

SCIENTIFIC REPORTS
Volume 6, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/srep26559

Keywords

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Funding

  1. NIH [R01 EY018825, R01 EY018853, R01 EY019112, R01 EY023187]
  2. Department of Veterans Affairs grant [VA 5I01CX000119]
  3. [EY023187]
  4. [EY023512]
  5. [EY017673]
  6. [EY018825]
  7. [EY019112]
  8. [5I01CX000119]

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We have developed a publicly available tool, AxonJ, which quantifies the axons in optic nerve sections of rodents stained with paraphenylenediamine (PPD). In this study, we compare AxonJ's performance to human experts on 100x and 40x images of optic nerve sections obtained from multiple strains of mice, including mice with defects relevant to glaucoma. AxonJ produced reliable axon counts with high sensitivity of 0.959 and high precision of 0.907, high repeatability of 0.95 when compared to a gold-standard of manual assessments and high correlation of 0.882 to the glaucoma damage staging of a previously published dataset. AxonJ allows analyses that are quantitative, consistent, fully-automated, parameter-free, and rapid on whole optic nerve sections at 40x. As a freely available ImageJ plugin that requires no highly specialized equipment to utilize, AxonJ represents a powerful new community resource augmenting studies of the optic nerve using mice.

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