International Journal of Clinical Pediatric Dentistry

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VOLUME 11 , ISSUE 4 ( July-August, 2018 ) > List of Articles

ORIGINAL ARTICLE

Alveolar Bone and Epithelial Attachment Status following Two Different Closed-eruption Surgical Techniques for Impacted Maxillary Central Incisors

Ayman Mourad, Elia Sfeir, Mona Gholmieh, Zouhair Skaf

Keywords : Closed-eruption surgical technique, Discontinued traction, Impacted, Periodontal status, Upper central incisor

Citation Information : Mourad A, Sfeir E, Gholmieh M, Skaf Z. Alveolar Bone and Epithelial Attachment Status following Two Different Closed-eruption Surgical Techniques for Impacted Maxillary Central Incisors. Int J Clin Pediatr Dent 2018; 11 (4):317-322.

DOI: 10.5005/jp-journals-10005-1532

License: CC BY-NC 4.0

Published Online: 01-03-2018

Copyright Statement:  Copyright © 2018; The Author(s).


Abstract

Aim: Two eruption surgical techniques are commonly described for the treatment of upper impacted central incisors (ICIs): Open and closed. Currently, the closed-eruption surgical technique (CEST) is the most commonly used, as it allows for the best esthetic and periodontal results. The aim of this study was to determine the effect of traction discontinuation on maxillary central incisor sulcal depth and alveolar bone ridge levels compared with contralateral incisors, when CEST is used. Materials and methods: Our study involved 28 unilateral impacted maxillary central incisors treated by CEST. Thirteen teeth were subjected to traction interruption for a month at the time of emergence of the crown, while 15 teeth underwent continuous traction. One year after treatment, periapical digital X-rays, anterosuperior cone beam computerized tomography (CBCT) scanning, and periodontal probing of the ICIs and contralateral central incisors (CCIs) were performed. Student's t-test was used to study whether a statistically significant difference between continuous and interrupted tractions takes place while using the CCI measurements as reference. Results: There was a statistically significant difference between the two techniques only for the following measurements: Mesial probing (p-value 0.039352), labial bone level (p-value 2.58E-08), and palatal bone level (p-value 2.56E-06). Limitations: A larger sample size and longer term follow-up are needed to draw more robust conclusions. Conclusion: A temporary discontinuation during traction of the tooth appears to positively impact treatment outcome on ICIs. Clinical significance: • The CEST leads to the best periodontal status for ICIs. • The discontinuation of traction at the emergence of the tooth allows the supracrestal fibers to insert into the cement in a proper way.


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  1. Grover PS, Lorton L. The incidence of unerupted permanent teeth and related clinical cases. Oral Surg Oral Med Oral Pathol 1985 Apr;59(4):420-425.
  2. Cozza P, Marino A, Condo R. Orthodontic treatment of an impacted dilacerated maxillary incisor: a case report. J Clin Pediatr Dent 2005 Winter;30(2):93-97.
  3. Topouzelis N, Tsaousoglou P, Pisoka V, Zouloumis L. Dilaceration of maxillary central incisor: a literature review. Dent Traumatol 2010 Oct;26(5):427-433.
  4. Standerwick RG. A possible etiology for the dilaceration and flexion of permanent tooth roots relative to bone remodeling gradients in alveolar bone. Dent Hypotheses 2014 Mar;5(1): 7-10.
  5. da Costa CT, Torriani DD, Torriani MA, da Silva RB. Central incisor impacted by an odontoma. J Contemp Dent Pract 2008 Sep;9(6):122-128.
  6. Paoloni V, Pavoni C, Laganà, G, Cozza P. Trattamento chirurgico- ortodontico degli incisivi in malposizione: protocollo terapeutico. Mondo Ortodontico 2012 May;37(5):167-174.
  7. Jayam C, Bandlapalli A, Patel N, Choudhary RS. A case of impacted central incisor due to dentigerous cyst associated with impacted compound odontome. BMJ Case Rep 2014 Mar;2014:202447.
  8. Smailiene D, Sidlauskas A, Bucinskiene J. Impaction of the central maxillary incisor associated with supernumerary teeth: initial position and spontaneous eruption timing. Stomatologija 2006 Feb;8(4):103-107.
  9. Ling KK, Ho CT, Kravchuk O, Olive RJ. Comparison of surgical and non-surgical methods of treating palatally impacted canines. I. Periodontal and pulpal outcomes. Aust Orthod J 2007 May;23(1):1-7.
  10. Kokich VG, Mathews DP. Surgical and orthodontic management of impacted teeth. Dent Clin North Am 1993 Apr;37(2):181-204.
  11. Becker, A. The orthodontic treatment of impacted teeth. London: Martin Dunitz Ltd.; 1998.
  12. Becker A, Brin I, Ben-Bassat Y, Zilberman Y, Chaushu S. Closed-eruption surgical technique for impacted maxillary incisors: a postorthodontic periodontal evaluation. Am J Orthod Dentofacial Orthop 2002 Jul;122(1):9-14.
  13. Chaushu S, Brin I, Ben-Bassat Y, Zilberman Y, Becker A. Periodontal status following surgical–orthodontic alignment of impacted central incisors with an open-eruption technique. Eur J Orthod 2003 Dec;25(6):579-584.
  14. Chaushu S, Dykstein N, Ben-Bassat Y, Becker A. Periodontal status of impacted maxillary incisors uncovered by 2 different surgical techniques. J Oral Maxillofac Surg 2009 Jan;67(1): 120-124.
  15. Sherwood K. Evidence-based surgical-orthodontic management of impacted teeth. Atlas Oral Maxillofacial Surg Clin N Am 2013 Sep;21(2):199-210.
  16. Ayers E, Kennedy D, Wiebe C. Clinical recommendations for management of mesiodens and unerupted permanent maxillary central incisors. Eur Arch Paediatr Dent 2014 Dec;15(6):421-428.
  17. Khouri SA. Periodontal adaptation following extensive extrusion and rotation of a horizontally impacted maxillary central incisor. A case report. J Periodontol 1986 Apr;57(4):251-256.
  18. Pinho T, Neves M, Alves C. Impacted maxillary central incisor: surgical exposure and orthodontic treatment. Am J Orthod Dentofacial Orthop 2011 Aug;140(2):256-265.
  19. Rizzatto SM, de Menezes LM, Allgayer S, Batista EL Jr, Freitas MP, Loro RC. Orthodontically induced eruption of a horizontally impacted maxillary central incisor. Am J Orthod Dentofacial Orthop 2013 Jul;144(1):119-129.
  20. Pavoni C, Mucedero M, Paoloni V, Cozza P. Interceptive management for multiple eruption disturbances: a follow-up evaluation. Eur J Paediatr Dent 2014 Jul;15(2 Suppl):191-194.
  21. Korbendau, JM.; Patti, A. Les dents incluses. Traitement orthodontique et chirurgical. Paris: Quintessence International; 2013. pp. 15-18.
  22. Korbendau, JM.; Patti, A. Clinical success in surgical and orthodontic treatment of impacted teeth. Paris: Quitessence Pub Co; 2012. pp. 68-91.
  23. Calibrated Periodontal Probe and Basic Probing Technique. www.1.umn.edu/perio/dent5612-04/module_11
  24. Study Design samples. Available from: www.jbpub. com/9780763754099/54099_CH02_5402.Pdf.
  25. Vermette ME, Kokich VG, Kennedy DB. Uncovering labially impacted teeth: apically positioned flap and closed-eruption techniques. Angle Orthod 1995 Feb;65(1):23-32.
  26. Singh M, Saini A, Saimbi CS, Bajpai AK. Prevalence of dental diseases in 5 to 14 years-old school children in rural areas of the Barabanki district, Uttar Pradesh, India. Indian J Dent Res 2011 May-Jun;22(3):396-399.
  27. Katiyar R, Singh GK, Mehrotra D, Singh A. Surgical-orthodontic treatment of a skeletal class III malocclusion. Natl J Maxillofac Surg 2010 Jul;1(2):143-149.
  28. Lew KK, Foong WC. Horizontal skeletal typing in an ethnic Chinese population with true class III malocclusion. Br J Orthod 1993 Feb;20(1):19-23.
  29. Shaikh HS, Desai DH. Varieties of malocclusion among orthodontic patients. J Ind Dent Ass 1966 Jul;38(7):201-203.
  30. Nainani JT, Sugandh R. Prevalence of malocclusion in school children of Nagpur Rural Region—an epidemiological study. JIDA 2011;5(8):865-867.
  31. Joshi MR, Makhija PG. Some observation on spacing in normal deciduous dentition of 100 Indian children from Gujarat. Br J Orthod 1984 Apr;11(2):75-79.
  32. Dinesh RB, Arnitha HM, Munshi AK. Malocclusion and orthodontic treatment need of handicapped individuals in South Canara, India. Int Dent J 2003 Feb;53(1):13-18.
  33. Shivakumar KM, Chandu GN, Subba Reddy VV, Shafiulla MD. Prevalence of malocclusion and orthodontic treatment needs among middle and high school children of Davangere City, India by using Dental Aesthetic Index. J Indian Soc Pedod Prev Dent 2009 Oct-Dec;27(4):211-218.
  34. Prasad AR, Savadi SC. Epidemiology of malocclusion: a report of a survey conducted in Bangalore. J Indian Orthod Soc 1971 Jan;3:43-55.
  35. Phaphe S, Kallur R, Vaz A, Gajapurada J, Raddy S, Mattigatti S. To determine the prevalence rate of malocclusion among 12 to 14-year-old schoolchildren of Urban Indian population (Bagalkot). J Contemp Dent Pract 2012 May-Jun;13(3):316-321.
  36. Siddegowda R, Rani MS. Assessment of malocclusion in school children of Karnataka state between the age groups of 10-12 years and 13-16 years. A cross-sectional descriptive survey. IOSR J Dent Med Sci 2013 Nov-Dec;11(3):6-12.
  37. Premkumar, S. Graber: incidence and recognition of malocclusion. In: Premkumar S, editor. Graber's textbook of orthodontics: basic principles and practice. India: Elsevier; 2009; pp. 155-200.
  38. Brook PH, Shaw WC. The development of an index for orthodontic treatment priority. Eur J Orthod 1989 Aug;11(3): 309-320.
  39. Peter E, Valoathan A. IOTN and PAR index: comparison and uses. J Indian Orthod Soc 1997 Jun;30:85-89.
  40. Richmond S, Shaw WC, Stephens CD, Webb WG, Roberts CT, Andrews M. Orthodontics in the general dental service of England and Wales: a critical assessment of standards. Br Dent J 1993 May;174(9):315-329.
  41. Kok YV, Mageson P, Harradine NW, Sprod AJ. Comparing a quality of life measure and the Aesthetic component of the index of orthodontic treatment need (IOTN) in assessing orthodontic treatment need and concern. J Orthod 2004 Dec;31(4):312-318.
  42. Reddy S, John J, Sarvanan S, Arumugham IM. Normative and perceived orthodontic needs among 12 year old school children in Chennai, India—a comparative study. Appl Tech Innov 2010 Nov;3(3):40-47.
  43. Roopesh R, Manoj KM, Sidharthan B, Manjusha KK. Evaluation of prevalence and severity of malocclusion in South Travancore population. J Int Oral Health 2015 Jul;7(7):94-97.
  44. Singh S, Sharma A, Sandhu N, Mehta K. The prevalence of malocclusion and orthodontic treatment needs in school going children of Nalagarh, Himachal Pradesh, India. Indian J Dent Res 2016 May-Jun;27(3):317-322.
  45. Amado JN, Sierraa AM, Gallon A, Alvarez C, Baccettic T. Relationship between personality traits and cooperation of adolescent orthodontic patients. Angle Orthod 2008 Jul;78(4):688-691.
  46. Ansai T, Miyazaki H, Katoh Y, Yamashita Y, Takehara T, Jenny J, Cons NC. Prevalence of malocclusion in high school students in Japan according to the dental aesthetic index. Comm Dent Oral Epidemiolol 1993 Oct;21(5):303-305.
  47. Danaei SM, Amirrad F, Salehi P. Orthodontic treatment needs of 12- 15 year old students in Shiraz, Islamic Republic of Iran. East Mediterr Health J 2007 Mar-Apr;13(2):326-334.
  48. Onyeaso CO, BeGole EA, Orthodontic treatment need in an accredited orthodontic centre in North America: a pilot study. J Contemp Dent Pract 2006 May;7(2):87-94.
  49. Onyeaso CO, Sanu OO. Perception of personal dental appearance in Nigeria adolescents. Am J Orthod Dentofac Orthop 2005 Jun;127(6):700-706.
  50. Onyeaso CO. Orthodontic concern of parents compared with orthodontic treatment need assessed by Dental Aesthetic Index (DAI) in Ibaden, Nigeria. Odontostomatol Trop 2003 Mar;26(101):13-20.
  51. Naveen Kumar B, Mohapatra A, Ramesh N, Ravishankar TL. Prevalence of malocclusion and orthodontic treatment need among 12-15 years old school children in Davangere, Karnataka, India. Pak Oral Dent J 2010;30(1):181-185.
  52. de Oliveira CM, Sheiham A. The relationship between normative orthodontic treatment need and oral health-related quality of life. Community Dent Oral Epidemiol 2003 Dec;31(6):426-436.
  53. de Oliveira CM, Sheiham A, Tsakos G, O'Brien KD. Oral health related quality of life and the IOTN index as predictors of children's perceived needs and acceptance for orthodontic treatment. Br Dent J 2008 Apr;204(7):1-5.
  54. Al-Sarheed M, Bedi R, Hunt NP. Orthodontic treatment need and self perception of 11-16 year old Saudi Arabian children with a sensory impairment attending special schools. J Orthod 2003 Mar;30(1):39-44.
  55. Kerosuo H, Al Enezi S, Kerosuo E, Abdulkarim E. Association between normative and self perceived orthodontic treatment need among Arab high school students. Am J Orthod Dentofacial Orthop 2004 Mar;125(3):373-378.
  56. Ghijselings I, Brosens V, Williams G, Fieuws S, Clijmans M, Lemiere J. Normative and self-perceived orthodontic treatment need in 11- to 16-year-old children. Eur J Orthod 2014 Apr;36(2):179-185.
  57. Onyeaso CO, Arowojolu MO. Perceived, desired and normatively determined treatment need among orthodontically untreated Nigerian adolescents. West Afr J Med 2003 Jan- Mar;22(1):5-9.
  58. Jung MH. Quality of life and self-esteem of female orthognathic surgery patients. J Oral Maxillofac Surg 2016 Jun;74(6):1240.e1-1240.e7.
  59. Abu Alhaija ES, Al-Nimri KS, Al-Khateeb SN. Self perception of malocclusion among Jordanian school children. Eur J Orthod 2005 Jun;27(3):292-295.
  60. Kolawole KA, Otuyemi DE, Jebode SO, Unweni AA. Awareness for malocclusion and desire for orthodontic treatment need in 11-14year old Nigerian school and their parents. Aust Orthod J 2008 May;24(1):21-25.
  61. Cucalon A 3rd, Smith RJ. Relationship between by adolescent orthodontics patients and performance on psychological tests. Angle Orthod 1990 Summer;60(2):107-114.
  62. Southard KA, Tolley EA, Arheart KL, Hackett-Renner CA, Southard TE. Application of the Millon Adolescent Personality Inventory in evaluating orthodontic compliance. Am J Orthod Dentofacial Orthop 1991 Dec;100(6):553-561.
  63. Kharbanda OP. What is the prevalence of malocclusion in India? Do we know orthodontic treatment needs of our country. J Indian Orthod Soc 1999 Apr-Jun;32(2):33-41.
  64. Siddiqui TA, Shaikh A, Fida M. Agreement between orthodontist and patient perception using Index of Orthodontic Treatment Need. Saudi Dent J 2014 Oct;26(4):156-165.
  65. Borzabadi-Farahani A, Borzabadi-Farahani A, Eslamipour F. Orthodontic treatment needs in an urban Iranian population in epidemiological study of 11-14 years old children. Eur J Paediatr Dent 2009 Jun;10(2):69-74.
  66. Grando G, Young AA, Vedovello Filho M, Vedovello SA, Ramirez-Yañez GO. Prevalence of malocclusions in a young Brazilian population. Int J Orthod Milwaukee 2008 Summer;19(2):13-16.
  67. Nadim R, Aslam K, Rizwan S. Frequency of malocclusion among 12 -15 years old school children in three sectors of Karachi. Pak Oral Dent J 2014 Sep;34(3):510-514.
  68. Reddy ER, Manjula M, Sreelakshmi N, Rani ST, Aduri R, Patil BD. Prevalence of malocclusion among 6 to 10 year old Nalgonda school children. J Int Oral Health 2013 Dec;5(6): 49-54.
  69. Onyeaso CO. Prevalence of malocclusion among adolescents in Ibadan, Nigeria. Am J Orthod Dentofacial Orthop 2004 Nov;126(5):604-607.
  70. Kaur H, Pavithra US, Abraham R. Prevalence of malocclusion among adolescents in South Indian population. J Int Soc Prev Community Dent 2013 Jul-Dec;3(2):97-102.
  71. Lauc T. Orofacial analysis on the Adriatic islands: an epidemiological study of malocclusions on Hvar Island. Eur J Orthod 2003 Jun;25(3):273-278.
  72. Zimmermann E, Gamborg M, Holst C, Baker JL, Sørensen TI, Berentzen TL. Body mass index in school-aged children and the risk of routinely diagnosed non-alcoholic fatty liver disease in adulthood: a prospective study based on the Copenhagen School Health Records Register. BMJ Open 2015 May;5(4):e006998.
  73. Singh SP. Non-alcoholic fatty liver disease: the unfolding monster? J Gastroenterol Hepatol 2006 Jan;21(1 Pt 2):199-201.
  74. Reece EA, Hagay Z, Roberts AB, DeGennaro N, Homko CJ, Connolly-Diamond M, Sherwin R, Tamborlane WV, Diamond MP. Fetal Doppler and behavioral responses during hypoglycemia induced with the insulin clamp technique in pregnant diabetic women. Am J Obstet Gynecol 1995 Jan;172(1 Pt 1):151-155.
  75. Patrick J, Campbell K, Carmichael L, Natale R, Richardson B. Patterns of gross fetal body movements over 24-hour observation intervals during the last 10 weeks of pregnancy. Am J Obstet Gynecol 1982 Feb;142(4):363-371.
  76. Ornoy A, Ratzon N, Greenbaum C, Peretz E, Soriano D, Dulitzky M. Neurobehavior of school age children born to diabetic mothers. Arch Dis Child Fetal Neonatal Ed 1998 Sep;79(2):F94-F99.
  77. Wolf, A. Developmental evaluation on early school age children born to gestational diabetic mothers. Israel: Hebrew University; 1997.
  78. Mulder EJ, Leiblum DM, Visser GH. Fetal breathing movements in late diabetic pregnancy: relationship to fetal heart rate patterns and Braxton Hicks’ contractions. Early Hum Dev 1995 Nov;43(3):225-232.
  79. Schulte FJ, Michaelis R, Nolte R, Albert G, Parl U, Lasson U. Brain and behavioral maturation in newborn infants of diabetic mothers. I. Nerve conduction and EEG patterns. Neuropadiatrie 1969 Jan-Jul;1(1):24-35.
  80. Devoe LD, Youssef AA, Castillo RA, Croom CS. Fetal biophysical activities in third-trimester pregnancies complicated by diabetes mellitus. Am J Obstet Gynecol 1994 Aug;171(2):298-303.
  81. Dierker LJ Jr, Pillay S, Sorokin Y, Rosen MG. The change in fetal activity periods in diabetic and nondiabetic pregnancies. Am J Obstet Gynecol 1982 May;143(2):181-185.
  82. Doherty NN, Hepper PG. Habituation in fetuses of diabetic mothers. Early Hum Dev 2000 Aug;59(2):85-93.
  83. Kainer F, Prechtl HF, Engele H, Einspieler C. Assessment of the quality of general movements in fetuses and infants of women with type-1 diabetes mellitus. Early Hum Dev 1997 Nov;50(1):13-25.
  84. Mulder EJ, O'Brien MJ, Lems YL, Visser GH, Prechtl HF. Body and breathing movements in near-term fetuses and newborn infants of type-1 diabetic women. Early Hum Dev 1990 Nov;24(2):131-152.
  85. Mulder EJ, Visser GH. Growth and motor development in fetuses of women with type-1 diabetes. I. Early growth patterns. Early Hum Dev 1991 May;25(2):91-106.
  86. Mulder EJ, Visser GH. Growth and motor development in fetuses of women with type-1 diabetes. II. Emergence of specific movement patterns. Early Hum Dev 1991 May;25(2):107-115.
  87. Mulder EJ, Visser GH. Impact of early growth delay on subsequent fetal growth and functional development: a study on diabetic pregnancy. Early Hum Dev 1992 Dec;31(2):91-95.
  88. Mulder EJ, Visser GH, Bekedam DJ, Prechtl HF. Emergence of behavioral states in fetuses of type-1 diabetic women. Early Hum Dev 1987 Jul;15(4):231-251.
  89. Mulder EJ, Visser GH, Morssink LP, de Vries JI. Growth and motor development in fetuses of women with type-1 diabetes. III. First trimester quantity of fetal movement patterns. Early Hum Dev 1991 May;25(2):117-133.
  90. Aberg A, Westbom L, Kallen B. Congenital malformations among infants whose mothers had gestational diabetes or preexisting diabetes. Early Hum Dev 2001 Mar;61(2):85-95.
  91. Deregnier RA, Nelson CA, Thomas KM, Wewerka S, Georgieff MK. Neurophysiologic evaluation of auditory recognition memory in healthy newborn infants and infants of diabetic mothers. J Pediatr 2000 Dec;137(6):777-784.
  92. Nelson CA, Wewerka S, Thomas KM, Tribby-Walbridge S, deRegnier R, Georgieff M. Neurocognitive sequelae of infants of diabetic mothers. Behav Neurosci 2000 Oct;114(5):950-956.
  93. Reece EA, Homko CJ. Infant of the diabetic mother. Semin Perinatol 1994 Oct;18(5):459-469.
  94. Reece EA, Homko CJ. Why do diabetic women deliver malformed infants? Clin Obstet Gynecol 2000 Mar;43(1):32-45.
  95. Rizzo T, Metzger BE, Burns WJ, Burns K. Correlations between antepartum maternal metabolism and intelligence of offspring. N Engl J Med 1991 Sep;325(13):911-916.
  96. Rizzo TA, Metzger BE, Dooley SL, Cho NH. Early malnutrition and child neurobehavioral development: insights from the study of children of diabetic mothers. Child Dev 1997 Feb;68(1):26-38.
  97. Schwartz R, Teramo KA. Effects of diabetic pregnancy on the fetus and newborn. Semin Perinatol 2000 Apr;24(2):120-135.
  98. Vaarasmaki MS, Hartikainen A, Anttila M, Pramila S, Koivisto M. Factors predicting peri- and neonatal outcome in diabetic pregnancy. Early Hum Dev 2000 Jul;59(1):61-70.
  99. Robertson SS, Dierker LJ. Fetal cyclic motor activity in diabetic pregnancies: sensitivity to maternal blood glucose. Dev Psychobiol 2003 Jan;42(1):9-16.
  100. Accardo PJ, Blondis TA, Whitman BY. Disorders of attention and activity level in a referral population. Pediatrics 1990 Mar;85(3 Pt 2):426-431.
  101. Ornoy A, Uriel L, Tennenbaum A. Inattention, hyperactivity and speech delay at 2-4 years of age as a predictor for ADDADHD syndrome. Isr J Psychiatry Relat Sci 1993;30(3):155-163.
  102. Smyth TR. Impaired motor skill (clumsiness) in otherwise normal children: a review. Child Care Health Dev 1992 Sep-Oct;18(5):283-300.
  103. Petersen MB, Pedersen SA, Greisen G, Pedersen JF, Mølsted- Pedersen L. Early growth delay in diabetic pregnancy: relation to psychomotor development at age 4. Br Med J (Clin Res Ed) 1988 Feb;296(6622):598-600.
  104. Sells CJ, Robinson NM, Brown Z, Knopp RH. Long-term developmental follow-up of infants of diabetic mothers. J Pediatr 1994 Jul;125(1):S9-S17.
  105. Vladareanu R, Lebit D, Constantinescu S. Ultrasound assessment of fetal neurobehaviour in high risk pregnancies. DSJUOG 2012 Apr-Jun;6(2):132-147.
  106. Talic A, Kurjak A, Ahmed B, Stanojevic M, Predojevic M, Kadic AS, Di Renzo GC. The potential of 4D sonography in the assessment of fetal behavior in high-risk pregnancies. J Matern Fetal Neonatal Med 2011 Jul;24(7):948-954.
  107. Bekedam DJ, Visser GH, de Vries JJ, Prechtl HF. Motor behaviour in the growth retarded fetus. Early Hum Dev 1985 Nov;12(2):155-165.
  108. Cioni G, Prechtl HF. Preterm and early postterm motor behaviour in low-risk premature infants. Early Hum Dev 1990 Sep;23(3):159-191.
  109. Seme-Ciglenecki P. Predictive value of assessment of general movements for neurological development of highrisk preterm infants: comparative study. Croat Med J 2003 Dec;44(6):721-727.
  110. Abo-Yaqoub S, Kurjak A, Mohammed AB, Shadad A, Abdel-Maaboud M. The role of 4-D ultrasonography in prenatal assessment of fetal neurobehaviour and prediction of neurological outcome. J Matern Fetal Neonatal Med 2012 Mar;25(3):231-236.
  111. Athanasiadis AP, Mikos T, Tambakoudis GP, Theodoridis TD, Papastergiou M, Assimakopoulos E, Tarlatzis BC. Neurodevelopmental fetal assessment using KANET scoring system in low and high-risk pregnancies. J Matern Fetal Neonatal Med 2013 Mar;26(4):363-368.
  112. Fauser BC, Tarlatzis BC, Rebar RW, Legro RS, Balen AH, Lobo R, Carmina E, Chang J, Yildiz BO, Laven JS, et al. Consensus on women's health aspects of polycystic ovary syndrome (PCOS): the Amsterdam ESHRE/ASRM-Sponsored 3rd PCOS Consensus Workshop Group. Fertil Steril 2012 Jan;97(1):28-38.e25
  113. Sirmans SM, Pate KA. Epidemiology, diagnosis and management of polycystic ovary syndrome. Clin Epidemiol 2014; 6:1-13.
  114. Fauser BC, Diedrich K, Bouchard P, Domínguez F, Matzuk M, Franks S, Hamamah S, Simón C, Devroey P, Ezcurra D, et al. Contemporary genetic technologies and female reproduction. Human Reproduction Update 2011 Nov;17(6):829-847.
  115. Balen A, Conway G, Kaltsas G. Polycystic ovary syndrome: the spectrum of the disorder in 1741 patients. Hum Reprod 1995 Aug;10(8):2107-2111.
  116. Azziz R, Sanchez L, Knochenhauer ES, Moran C, Lazenby J, Stephens KC, Taylor K, Boots LR. Androgen excess in women: experience with over 1000 consecutive patients. J Clin Endocrinol Metab 2004 Feb;89(2):453-462.
  117. Wild S, Pierpoint T, McKeigue P, Jacobs H. Cardiovascular disease in women with polycystic ovary syndrome at longterm follow-up: a retrospective cohort study. Clin Endocrinol (Oxf) 2000 May;52(5):595-600.
  118. Hollinrake E, Abreu A, Maifeld M, Van Voorhis BJ, Dokras A. Increased risk of depressive disorders in women with polycystic ovary syndrome. Fertil Steril 2007 Jun;87(6): 1369-1376.
  119. Zawadski JK, Dunaif A. Diagnostic criteria for polycystic ovary syndrome. In: Givens JHF, Merriman G, editors. The polycystic ovary syndrome. Cambridge, MA: Blackwell Scientific; 1992. p. 377-384.
  120. Rotterdam ESHRE/ASRM-Sponsored PCOS Consensus Workshop Group. Revised 2003 consensus on diagnostic criteria and long-term health risks related to polycystic ovary syndrome. Fertil Steril 2004 Jan;81(1):19-25.
  121. Azziz R, Carmina E, DeWailly D, Diamanti-Kandarakis E, Escobar-Morreale HF, Futterweit W, Janssen OE, Legro RS, Norman RJ, Taylor AE, et al. Position statement: criteria for defining polycystic ovary syndrome as a predominantly hyperandrogenic syndrome: an Androgen Excess Society guideline. J Clin Endocrinol Metab 2006 Nov;91(11):4237-4245.
  122. Lujan ME, Jarrett BY, Brooks ED, Reines JK, Peppin AK, Muhn N, Haider E, Pierson RA, Chizen DR. Updated ultrasound criteria for polycystic ovary syndrome: reliable thresholds for elevated follicle population and ovarian volume. Hum Reprod 2013 May;28(5):1361-1368.
  123. Badawy A, Elnashar A. Treatment options for polycystic ovary syndrome. Int J Womens Health 2011 Feb;3:25-35.
  124. ACOG Committee on Practice Bulletins—Gynecology. ACOG Practice Bulletin No 108: Polycystic ovary syndrome. Obstet Gynecol 2009 Oct;114(4):936-949.
  125. Thessaloniki ESHRE/ASRM-Sponsored PCOS Consensus Workshop Group Consensus on infertility treatment related to polycystic ovary syndrome. Fertil Steril 2008 Mar;89(3): 505-522.
  126. Balen AH. Ovulation induction in the management of anovulatory polycystic ovary syndrome. Mol Cell Endocrinol 2013 Jul;373(1-2):77-82.
  127. Berridge DL, Winter TC. Saline infusion sonohysterography: technique, indications, and imaging findings. J Ultrasound Med 2004 Jan;23(1):97-112.
  128. Allison SJ, Horrow MM, Kim HY, Lev-Toaff AS. Salineinfused sonohysterography: tips for achieving greater success. Radiographics 2011 Nov-Dec;31(7):1991-2004.
  129. O'Neill MJ. Sonohysterography. Radiol Clin North Am 2003 Jul;41(4):781-797.
  130. Bonnamy L, Marret H, Perrotin F, Body G, Berger C, Lansac J. Sonohysterography: a prospective survey of results and complications in 81 patients. Eur J Obstet Gynecol Reprod Biol 2002 Apr;102(1):42-47.
  131. Lindheim SR, Adsuar N, Kushner DM, Pritts EA, Olive DL. Sonohysterography: a valuable tool in evaluating the female pelvis. Obstet Gynecol Surv 2003 Nov;58(11):770-784.
  132. Lindheim SR, Sprague C, Winter TC. Hysterosalpingography and sonohysterography: lessons in technique. AJR Am J Roentgenol 2006 Jan;186(1):24-29.
  133. Jeanty P, Besnard S, Arnold A, Turner C, Crum P. Air-contrast sonohysterography as a first step assessment of tubal patency. J Ultrasound Med 2000 Aug;19(8):519-527.
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