Section 4 Plastic and Reconstructive Problems

L. Ribeiro et al.

16. Xu CC, Chan RW, Weinberger DG, Efune G, Pawlowski KS. A bovine acellular scaffold for vocal fold reconstruction in a rat model. J Biomed Mater Res A. 2010;92:18--32. 17. Kishimoto Y, Hirano S, Kojima T, Kanemaru S, Ito J. Implantation of atelocollagen sheet for the treatment of vocal fold scarring and sulcus vocalis. Ann Otol Rhinol Laryngol. 2009;118:613--20. 18. Chhetri DK, Head C, Revazova E, Hart S, Bhuta S, Berke GS. Lamina propria replacement therapy with cultured autologous fibroblasts for vocal fold scars. Otolaryngol Head Neck Surg. 2004;131:864--70. 19. Kanemaru S, Nakamura T, Yamashita M, Magrufov A, Kita T, Tamaki H, et al. Destiny of autologous bone marrow-derived stromal cells implanted in the vocal fold. Ann Otol Rhinol Laryn- gol. 2005;114:907--12. 20. Long JL, Zuk P, Berke GS, Chhetri DK. Epithelial differentiation of adipose-derived stem cells for laryngeal tissue engineering. Laryngoscope. 2010;120:125--31. 21. HertegÄrd S, Cedervall J, Svensson B, Forsberg K, Maurer FH, Vidovska D, et al. Viscoelastic and histologic properties in scar- rid rabbit vocal folds after mesenchymal stem cell injection. Laryngoscope. 2006;116:1248--54. 22. Chang AA, Reuther MS, Briggs KK, Schumacher BL, Williams GM, Corr M, et al. In vivo implantation of tissue- engineered human nasal septal neocartilage constructs: a pilot study. Otolaryngol Head Neck Surg. 2012;146:46--52. 23. Alexander TH, Sage AB, Chen AC, Schumacher BL, Shelton E, Masuda K, et al. Insulin-like growth factor-I and growth differentiation factor-5 promote the formation of tissue- engineered human nasal septal cartilage. Tissue Eng. 2009;16: 1213--21. 24. Cao Y, Vacanti JP, Paige KT, Upton J, Vacanti CA. Transplantation of chondrocytes utilizing a polymer-cell construct to produce tissue-engineered cartilage in the shape of a human ear. Plast Reconstr Surg. 1997;100:297--302. 25. Yanaga H, Imai K, Fujimoto T, Yanaga K. Generating ears from cultured autologous auricular chondrocytes by using two-stage implantation in treatment of microtia. Plast Reconstr Surg. 2009;124:817--25. 26. Yanaga H, Imai K, Yanaga K. Generative surgery of cultured autologous auricular chondrocytes for nasal augmentation. Aes- thetic Plast Surg. 2009;33:795--802. 27. Kanemaru S, Hirano S, Umeda H, Yamashita M, Suehiro A, Naka- mura T, et al. A tissue-engineering approach for stenosis of the trachea and/or cricoid. Acta Otolaryngol. 2010;130:79--83. 28. Imaizumi M, Nomoto Y, Sato Y, Sugino T, Miyake M, Wada I, et al. Evaluation of the use of induced pluripotent stem cells for the regeneration of tracheal cartilage. Cell Transplant. 2013;22:341--58.

29. Tsakiridis K, Darwiche K, Visouli AN, Zarogoulidis P, Machairi- otis N, Christofis C, et al. Management of complex benign post-tracheostomy tracheal stenosis with bronchoscopic inser- tion of silicon tracheal stents, in patients with failed or contraindicated surgical reconstruction of trachea. J Thorac Dis. 2012;4 Suppl. 1:32--40. 30. Omori K, Nakamura T, Kanemaru S, Asato R, Yamashita M, Tanaka S, et al. Regenerative medicine of the trachea: the first human case. Ann Otol Rhinol Laryngol. 2005;114:429--33. 31. Macchiarini P, Jungebluth P, Go T, Asnaghi MA, Rees LE, Cogan TA, et al. Clinical transplantation of a tissue-engineered airway. Lancet. 2008;372:2023--30. 32. Hong P, Bance M, Gratzer P. Repair of tympanic membrane perfo- ration using novel adjuvant therapies: a contemporary review of experimental and tissue engineering studies. Int J Pediatr Otorhinolaryngol. 2013;77:3--12. 33. Parekh A, Mantle B, Banks J, Swarts JD, Badylak SF, Dohar JE, et al. Repair of the tympanic membrane with urinary bladder matrix. Laryngoscope. 2009:1206--13. 34. Demirpehlivan IA, Onal K, Arslanoglu S, Songu M, Ciger E, Can N. Comparison of different tympanic membrane reconstruction technics in type I timpanoplasty. Eur Arch Otorhinolaryngol. 2011;268:471--4. 35. Farhadi M, Mirzadeh H, Solouk A, Asghari A, Jalessi M, Ghan- bari H, et al. Collagen- immobilized patch for repairing small tympanic membrane perforations: in vitro and in vivo assays. J Biomed Mater Res Part A. 2012;100:549--53. 36. Ozturk K, Yaman H, Cihat Avunduk M, Arbag H, Keles B, Uyar Y. Effectiveness of MeroGel hyaluronic acid on tympanic mem- brane perforations. Acta Otolaryngol. 2006;126:1158--63. 37. Kanemaru S, Umeda H, Kitani Y, Nakamura T, Hirano S, Ito J. Regenerative treatment for tympanic membrane perforation. Otol Neurotol. 2011;32:1218--23. 38. Ramalho RO, Bento RF. Healing of subacute tympanic membrane perforations in chinchillas treated with epidermal growth factor and pentoxifylline. Otol Neurotol. 2006;27:720--7. 39. Deng Z, Wu J, Qiu J, Wang J, Tian Y, Li Y, et al. Com- parison of porcine acellular dermis and dura mater natural scaffolds for bioengineering tympanic membranes. Tissue Eng. 2009;15:3729--39. 40. Hott ME, Megerian CA, Beane R, Bonassar LJ. Fabrica- tion of tissue engineered tympanic membrane patches using computer-aided design and injection molding. Laryngoscope. 2004;114:1290--5. 41. Weber DE, Semaan MT, Wasman JK, Beane R, Bonassar LJ, Megerian CA. Tissue-engineered calcium alginate patches in the repair of chronic chinchilla tympanic membrane perforations. Laryngoscope. 2006;116:700--4.

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