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Correction: Two-dimensional nanocoating-enabled orthopedic implants for bimodal therapeutic applications.

Song Wang1, Chunyan Duan2, Weizhong Yang3

  • 1College of Materials Science and Engineering, School of Chemical Engineering, Sichuan University, Chengdu 610065, China. dengyibandeng@scu.edu.cn and Department of Spine Surgery, the Affiliated Hospital of Southwest Medical University, Luzhou 646000, China.

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|August 19, 2020
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Summary

This correction clarifies details regarding two-dimensional nanocoatings for orthopedic implants. The study focuses on bimodal therapeutic applications, enhancing implant functionality.

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Area of Science:

  • Biomaterials Science
  • Nanotechnology
  • Orthopedic Surgery

Context:

  • Orthopedic implants require advanced surface modifications to improve integration and therapeutic outcomes.
  • Bimodal therapeutic strategies offer enhanced treatment potential for bone-related conditions.
  • Two-dimensional (2D) nanocoatings present novel opportunities for surface engineering in biomedical applications.

Purpose:

  • To correct and clarify specific technical details presented in the original publication.
  • To ensure accurate representation of the 2D nanocoating fabrication and characterization.
  • To maintain the integrity of the reported bimodal therapeutic applications for orthopedic implants.

Summary:

  • This communication addresses errors in the original article concerning the properties and application of 2D nanocoatings on orthopedic implants.
  • Specific corrections are provided for experimental procedures and data interpretation related to the bimodal therapeutic effects.
  • The revised information ensures a more precise understanding of the nanocoating's performance in orthopedic contexts.

Impact:

  • Ensures accurate scientific record for researchers in biomaterials and orthopedic implant development.
  • Facilitates correct implementation and further investigation of 2D nanocoating technologies.
  • Upholds the reliability of findings on advanced nanocoatings for enhanced orthopedic treatments.