Montero J, Mazzaglia G (2011) Effect of removing an impacted mandibular third molar on the periodontal status of the mandibular second molar. J Oral Maxillofac Surg 69(11):2691–2697
Baqain ZH, Al-Shafii A, Hamdan AA, Sawair FA (2012) Flap design and mandibular third molar surgery: a split mouth randomized clinical study. Int J Oral Maxillofac Surg 41(8):1020–1024
Article CAS PubMed Google Scholar
Padhye MN, Dabir AV, Girotra CS, Pandhi VH (2013) Pattern of mandibular third molar impaction in the Indian population: a retrospective clinico-radiographic survey. Oral Surg Oral Med Oral Pathol Oral Radiol 116(3):e161–e166
Incision BCS (2002) Comma incision for impacted mandibular third molars. J Oral Maxillofac Surg 60:1506–1509
Kirk DG, Liston PN, Tong DC, Love RM (2007) Influence of two different flap designs on incidence of pain, swelling, trismus, and alveolar osteitis in the week following third molar surgery. Oral Surg Oral Med Oral Pathol Oral Radiol Endodontol 104(1):e1–e6
Bamgbose BO, Akinwande JA, Adeyemo WL, Ladeinde AL, Arotiba GT, Ogunlewe MO (2005) Effects of co-administered dexamethasone and diclofenac potassium on pain, swelling and trismus following third molar surgery. Head Face Med 1:1–6
D’Arcangelo C, Di Maio FDN, Prosperi GD, Conte E, Baldi M, Caputi S (2007) A preliminary study of healing of diode laser versus scalpel incisions in rat oral tissue: a comparison of clinical, histological, and immunohistochemical results. Oral Surg Oral Med Oral Pathol Oral Radiol Endodontol 103(6):764–773
Shalawe WS, Ibrahim ZA, Sulaiman AD (2012) Clinical comparison between diode laser and scalpel incisions in oral soft tissue biopsy. Al-Rafidain Dental J 12(2)
Patel RM, Varma S, Suragimath G, Abbayya K, Zope SA, Kale V (2015) Comparison of labial frenectomy procedure with conventional surgical technique and diode laser. J Dent Lasers 9(2):94
Pick RM, Colvard MD (1993) Status of lasers in soft tissue dental surgery. J Periodontol 64(7):589–602
Article CAS PubMed Google Scholar
Moritz A, Schoop U, Goharkhay K, Schauer P, Doertbudak O, Wernisch J, Sperr W (1998) Treatment of periodontal pockets with a diode laser. Lasers Surg Med 22(5):302–311
Article CAS PubMed Google Scholar
Butcher NJ, Monsour A, Mew EJ, Chan AW, Moher D, Mayo-Wilson E, Offringa M (2022) Guidelines for reporting outcomes in trial reports: the CONSORT-outcomes 2022 extension. JAMA 328(22):2252–2264
Gbotolorun OM, Arotiba GT, Ladeinde AL (2007) Assessment of factors associated with surgical difficulty in impacted mandibular third molar extraction. J Oral Maxillofac Surg 65(10):1977–1983
Gabka J, Matsumura T (1971) Measuring techniques and clinical testing of an anti-inflammatory agent (tantum). Munchener medizinische Wochenschrift (1950) 113(6):198–203
Jain S, Debbarma S, Prasad SS (2019) Prevalence of impacted third molars among orthodontic patients in different malocclusions. Indian J Dent Res 30(2):238–242
Gupta S, Bhowate RR, Nigam N, Saxena S (2011) Evaluation of impacted mandibular third molars by panoramic radiography. Int Scholarly Res Not 2011(1):406714
Lysell L, Rohlin M (1988) A study of indications used for removal of the mandibular third molar. Int J Oral Maxillofac Surg 17(3):161–164
Article CAS PubMed Google Scholar
Ricketts RM (1979) Studies leading to the practice of abortion of lower third molars. Dent Clin North Am 23(3):393–412
Article CAS PubMed Google Scholar
Sayed N, Bakathir A, Pasha M, Al-Sudairy S (2019) Complications of third molar extraction: a retrospective study from a tertiary healthcare Centre in Oman. Sultan Qaboos Univ Med J 19(3):e230
Article PubMed PubMed Central Google Scholar
Cho H, Lynham AJ, Hsu E (2017) Postoperative interventions to reduce inflammatory complications after third molar surgery: review of the current evidence. Aust Dent J 62(4):412–419
Article CAS PubMed Google Scholar
Majid OW (2011) Submucosal dexamethasone injection improves quality of life measures after third molar surgery: a comparative study. J Oral Maxillofac Surg 69(9):2289–2297
Nehme W, Fares Y, Abou-Abbas L (2021) Piezo-surgery technique and intramuscular dexamethasone injection to reduce postoperative pain after impacted mandibular third molar surgery: a randomized clinical trial. BMC Oral Health 21:1–11
Christensen GJ (2008) Soft-tissue cutting with laser versus electrosurgery. J Am Dent Assoc 139(7):981–984
Bhatsange A, Meshram EP, Waghamare A, Shiggaon L, Mehetre V, Shende A (2016) A clinical and histological comparison of mucosal incisions produced by scalpel, electrocautery, and diode laser: a pilot study. J Dent Lasers 10(2):37–42
Liboon J, Funkhouser W, Terris DJ (1997) A comparison of mucosal incisions made by scalpel, CO2 laser, electrocautery, and constant-voltage electrocautery. Otolaryngol-Head Neck Surgery 116(3):379–385
Vasconcelos BCDE, Freitas LHMD, Santos LKDM, Pereira JRD, Frota R, Porto GG (2009) Comparison between electrosurgery and cold blade in tongues of rats: a preliminary experimental study. Acta Cir Bras 24:362–366
Funde S, Baburaj MD, Pimpale SK (2015) Comparison between laser, electrocautery, and scalpel in the treatment of drug-induced gingival overgrowth: A case report. IJSS Case Rep Rev 1(10):27–30
Coluzzi DJ (2002) Lasers and soft tissue curettage: an update. Compendium of continuing education in dentistry (Jamesburg NJ 1995) 23(11A):1104–1111
Romanos G, Nentwig GH (1999) Diode laser (980 nm) in oral and maxillofacial surgical procedures: clinical observations based on clinical applications. J Clin Laser Med Surg 17(5):193–197
Article CAS PubMed Google Scholar
Wilder-Smith P, Arrastia AMA, Liaw LH, Berns M (1995) Incision properties and thermal effects of three CO2 lasers in soft tissue. Oral Surg Oral Med Oral Pathol Oral Radiol Endodontol 79(6):685–691
Pogrel MA, Yen CK, Hansen LS (1990) A comparison of carbon dioxide laser, liquid nitrogen cryosurgery, and scalpel wounds in healing. Oral Surg Oral Med Oral Pathol 69(3):269–273
Article CAS PubMed Google Scholar
Sarver DM (2006) Use of the 810 nm diode laser: soft tissue management and orthodontic applications of innovative technology. PPAD 18(9), suppl-7
Suter VG, Altermatt HJ, Sendi P, Mettraux G, Bornstein MM (2010) CO2 and diode laser for excisional biopsies of oral mucosal lesions. A pilot study evaluating clinical and histopathological parameters. Schweizer Monatsschrift fur Zahnmedizin= Revue mensuelle suisse d’odonto-stomatologie= Rivista mensile svizzera di odontologia e stomatologia 120(8):664–671
Sylvie-Louise Avon D, Klieb HB (2012) Oral soft-tissue biopsy: an overview. J Can Dent Assoc 78:c75
Schuller DE (1990) Use of the laser in the oral cavity. Otolaryngol Clin North Am 23(1):31–42
Article CAS PubMed Google Scholar
Ibrahim ZA, Sulaiman AD (1997) Clinical Comparison between diode laser and scalpel incisions in oral soft tissue biopsy
Alam T, Dawasaz AA, Thukral N, Jangam D (2008) Surgical diode laser excision for peripheral cemento-ossifying fibroma: a case report and literature review. J Oral Laser Appl 8(1)
Aldelaimi TN, Khalil AA (2015) Clinical application of diode laser (980 nm) in maxillofacial surgical procedures. J Craniofac Surg 26(4):1220–1223
Amaral MBF, De Ávila JMS, Abreu MHG, Mesquita RA (2015) Diode laser surgery versus scalpel surgery in the treatment of fibrous hyperplasia: a randomized clinical trial. Int J Oral Maxillofac Surg 44(11):1383–1389
Article CAS PubMed Google Scholar
Azma E, Safavi N (2013) Diode laser application in soft tissue oral surgery. J Lasers Med Sci 4(4):206
PubMed PubMed Central Google Scholar
Ize-Iyamu IN, Saheeb BD, Edetanlen BE (2013) Comparing the 810nm diode laser with conventional surgery in orthodontic soft tissue procedures. Ghana Med J 47(3):107–111
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