DOI QR코드

DOI QR Code

The Efficacy of Coblator in Turbinoplasty

  • Lee, Keun-Cheol (Department of Plastic and Reconstructive Surgery, Dong-A University School of Medicine) ;
  • Cho, Jeong-Min (Department of Plastic and Reconstructive Surgery, Dong-A University School of Medicine) ;
  • Kim, Seok-Kwun (Department of Plastic and Reconstructive Surgery, Dong-A University School of Medicine) ;
  • Lim, Kwang-Ryeol (Department of Plastic and Reconstructive Surgery, Dong-A University School of Medicine) ;
  • Lee, Sang-Yun (Department of Plastic and Reconstructive Surgery, Dong-A University School of Medicine) ;
  • Park, Su-Seong (I&Co Aesthetic Plastic Surgery Clinic)
  • 투고 : 2016.12.14
  • 심사 : 2017.04.10
  • 발행 : 2017.06.20

초록

Background: Turbinate hypertrophy is one of the common causes of chronic nasal obstruction. In principle, therapeutic guidelines recommend medical treatment. Failure to treat turbinate thickening despite drug therapy may indicate the need for surgery. The main aim of this study was to determine the effect of radiofrequency surgery, among various other surgical procedures, on people with both nasal septal deviation and turbinate hypertrophy. Methods: Among people with nasal deviation who visited the subject hospital between July 2008 to July 2014, 21 people with nasal septal deviation and severe turbinate hypertrophy before their surgery had undergone septoplasty with turbinoplasty using radiofrequency combined with septoplasty. The degree of the turbinate's hypertrophy was appraised in all the patients before and after the surgery using the rhinoscopy, and acoustic rhinometry was objectively carried out. The subjective effect of the turbinoplasty using radiofrequency was explored through the visual analog scale (VAS) score. Results: The degree of contraction of the nasal mucosa after the rhinoscopy changed from Grades 3 and 4 (100%) to Grades 1 and 2 (95.2%) and Grades 3 (4.8%). The minimal cross-sectional area significantly increased from $0.44{\pm}0.07$ to $0.70{\pm}0.07cm^2$ (p<0.05). The nasal cavity volume increased from $4.79{\pm}0.49$ to $6.76{\pm}0.55cm^2$ (p<0.05). The subjective symptoms evaluated with VAS score a year after the surgery significantly improved (p<0.05). Conclusion: Turbinoplasty using Coblator with septoplasty is an effective treatment method because it expands nasal cavity, has a low incidence of complications, subjectively improves symptoms, and has short treatment duration.

키워드

참고문헌

  1. Lavinsky-Wolff M, Camargo HL Jr, Barone CR, Rabaioli L, Wolff FH, Dolci JE, et al. Effect of turbinate surgery in rhinoseptoplasty on quality-of-life and acoustic rhinometry outcomes: a randomized clinical trial. Laryngoscope 2013;123:82-9.
  2. Berger G, Hammel I, Berger R, Avraham S, Ophir D. Histopathology of the inferior turbinate with compensatory hypertrophy in patients with deviated nasal septum. Laryngoscope 2000;110:2100-5.
  3. Cingi C, Ure B, Cakli H, Ozudogru E. Microdebrider-assisted versus radiofrequency-assisted inferior turbinoplasty: a prospective study with objective and subjective outcome measures. Acta Otorhinolaryngol Ital 2010;30:138-43.
  4. Liu CM, Tan CD, Lee FP, Lin KN, Huang HM. Microdebrider-assisted versus radiofrequency-assisted inferior turbinoplasty. Laryngoscope 2009;119:414-8.
  5. Lee KC, Hwang PH, Kingdom TT. Surgical management of inferior turbinate hypertrophy in the office: Three mucosal sparing techniques. Operative Techniques in Otolaryngology-Head and Neck Surgery 2001;12:107-11.
  6. Gindros G, Kantas I, Balatsouras DG, Kaidoglou A, Kandiloros D. Comparison of ultrasound turbinate reduction, radiofrequency tissue ablation and submucosal cauterization in inferior turbinate hypertrophy. Eur Arch Otorhinolaryngol 2010;267:1727-33.
  7. Sathyaki DC, Geetha C, Munishwara GB, Mohan M, Manjuanth K. A comparative study of endoscopic septoplasty versus conventional septoplasty. Indian J Otolaryngol Head Neck Surg 2014;66:155-61.
  8. Abdel-Fattah AM, Eid MI, Ezzat AE. Turbinoplasty using submucosal microdebrider, radiofrequency and conventional surgical, what is the best? Online J Otolaryngol 2014;4:117-28.
  9. Camacho M, Zaghi S, Certal V, Abdullatif J, Means C, Acevedo J, et al. Inferior turbinate classification system, grades 1 to 4: development and validation study. Laryngoscope 2015;125:296-302.
  10. Fettman N, Sanford T, Sindwani R. Surgical management of the deviated septum: techniques in septoplasty. Otolaryngol Clin North Am 2009;42:241-52.
  11. Edwards N. Septoplasty. Rational surgery of the nasal septum. J Laryngol Otol 1975;89:875-97.
  12. Grymer LF, Illum P, Hilberg O. Septoplasty and compensatory inferior turbinate hypertrophy: a randomized study evaluated by acoustic rhinometry. J Laryngol Otol 1993;107:413-7.
  13. Lee TH, Kim BY, Kim DY. Effectiveness of the turbinoplasty in the patient with deviated septum of nose. Korean J Otolaryngol-Head Neck Surg 2005;48:326-31.
  14. Mahler D, Reuven S. The role of turbinectomy in rhinoplasty. Aesthetic Plast Surg 1985;9:277-9.
  15. Nease CJ, Krempl GA. Radiofrequency treatment of turbinate hypertrophy: a randomized, blinded, placebo-controlled clinical trial. Otolaryngol Head Neck Surg 2004;130:291-9.
  16. Cakmak O, Coskun M, Celik H, Buyuklu F, Ozluoglu LN. Value of acoustic rhinometry for measuring nasal valve area. Laryngoscope 2003;113:295-302.
  17. McCaffrey TV, Kern EB. Clinical evaluation of nasal obstruction: a study of 1,000 patients. Arch Otolaryngol 1979;105:542-5.
  18. Wewers ME, Lowe NK. A critical review of visual analogue scales in the measurement of clinical phenomena. Res Nurs Health 1990;13:227-36.
  19. Lund VJ. Evidence-based surgery in chronic rhinosinusitis. Acta Otolaryngol 2001;121:5-9.
  20. Fisher EW, Scadding GK, Lund VJ. The role of acoustic rhinometry in studying the nasal cycle. Rhinology 1993;31:57-61.
  21. Roithmann R, Cole P, Chapnik J, Barreto SM, Szalai JP, Zamel N. Acoustic rhinometry, rhinomanometry, and the sensation of nasal patency: a correlative study. J Otolaryngol 1994;23:454-8.
  22. Moxness MH, Nordgard S. An observational cohort study of the effects of septoplasty with or without inferior turbinate reduction in patients with obstructive sleep apnea. BMC Ear Nose Throat Disord 2014;14:11.

피인용 문헌

  1. Long-term outcome of concurrent coblator turbinoplasty with adenotonsillectomy in children with allergic rhinitis vol.141, pp.3, 2017, https://doi.org/10.1080/00016489.2020.1846782
  2. Surgical Interventions for Inferior Turbinate Hypertrophy: A Comprehensive Review of Current Techniques and Technologies vol.18, pp.7, 2017, https://doi.org/10.3390/ijerph18073441