Skip to main content
Erschienen in: European Archives of Oto-Rhino-Laryngology 8/2016

05.08.2015 | Head and Neck

Redesign and treatment planning orbital floor reconstruction using computer analysis anatomical landmarks

verfasst von: Mehmet Asim Ozer, Figen Govsa, Zuhal Kazak, Senem Erdogmus, Servet Celik

Erschienen in: European Archives of Oto-Rhino-Laryngology | Ausgabe 8/2016

Einloggen, um Zugang zu erhalten

Abstract

Orbital floor fractures are one of the most commonly encountered maxillofacial fractures due to their weak anatomical structure. Restoration of the orbital floor following a traumatic injury or a tumor surgery is often difficult due to inadequate visibility and lack of knowledge on its anatomical details. The aim of this study is to investigate the locations of the inferior orbital fissure (IOF), infraorbital groove (G), and infraorbital foramen (Fo) and their relationship with the orbital floor using a software. Measurements from the inferior orbital rim (IOR) using the Fo, the IOF, G, and the optic canal (OC) were calculated in 268 orbits as reference points. The surgical landmarks from the G and the OC, the G and the IOF, the G and the intersection point were measured as 31.6 ± 6, 12.9 ± 4, and 12 ± 5 mm, respectively. The mean distances between the G and the IOR, the Fo and the IOF, and the Fo and the OC were found as 8.3 ± 2.1, 28.7 ± 3.5, and 53.6 ± 5.9 mm, respectively. The mean angles were calculated as OC-IOF-G 68.1° ± 16.4°; intersection-G-IOF as 61.4° ± 15.8°; IOF-OC-G as 19° ± 5.5°; OC-G-intersection as 31.5° ± 11.9°, G-intersection-OC as 129.5°, IOF-intersection-G as 50.5°. Furthermore, variable bony changes on the orbital floor which may lead to the differences at intersection point of the G and Fo were determined. In 28 specimens (20.9 %), unilateral accessory Fo (AcFo) was present. In 27 specimens, AcFo was situated supermaedially (96.4 %) on the main aperture. In one specimen, two intraorbital canals and Fo emerged from different points and coursed into different apertures. The measured mean distances of the AcFo-IOR and the AcFo-Fo were as 7 ± 2 and 7.3 ± 3.2 mm, respectively. The primary principle in the oculoplastic treatment of orbital floor reconstructions must be repositioning the herniated orbital aperture by maintaining the infraorbital artery and the nerve in the orbital floor. The IOF and the G were recommended as the more reliable oculoplastic surgical landmarks for identifying the orbital floor. To avoid pinching of the orbital floor structures, the triangle (IS-G-IOF) should be equilateral with an exigence of a 70° angle within it. Among each distance of the intersection-IOF, IOF-G, G-intersection should be equal. With the help of certain software, this study made possible to investigate the variability of the orbital floor structures, observe the variety in measurements and calculate the parameters which are crucial in implementing personalized reconstruction and implanting support.
Literatur
1.
Zurück zum Zitat Abed S, Shams PN, Shen S, Adds PJ, Uddin JM (2011) Morphometric and geometric anatomy of the caucasian orbital floor. Orbit 30(5):214–220CrossRefPubMed Abed S, Shams PN, Shen S, Adds PJ, Uddin JM (2011) Morphometric and geometric anatomy of the caucasian orbital floor. Orbit 30(5):214–220CrossRefPubMed
2.
Zurück zum Zitat Aziz SR, Marchena JM, Puran A (2000) Anatomic characteristics of the infraorbital foramen: a cadaver study. J Oral Maxillofac Surg 58(9):992–996CrossRefPubMed Aziz SR, Marchena JM, Puran A (2000) Anatomic characteristics of the infraorbital foramen: a cadaver study. J Oral Maxillofac Surg 58(9):992–996CrossRefPubMed
3.
Zurück zum Zitat Bailey K, Ng JD, Hwang PH, Saulny SM, Holck DE, Rubin PA (2007) Infraorbital nerve surgical decompression for chronic infraorbital nerve hyperesthesia. Ophthal Plast Reconstr Surg 23(1):49–51CrossRefPubMed Bailey K, Ng JD, Hwang PH, Saulny SM, Holck DE, Rubin PA (2007) Infraorbital nerve surgical decompression for chronic infraorbital nerve hyperesthesia. Ophthal Plast Reconstr Surg 23(1):49–51CrossRefPubMed
4.
Zurück zum Zitat Bell RB, Markiewicz MR (2009) Computer-assisted planning, stereolithographic modeling, and intraoperative navigation for complex orbital reconstruction: a descriptive study in a preliminary cohort. J Oral Maxillofac Surg 67(12):2559–2570CrossRefPubMed Bell RB, Markiewicz MR (2009) Computer-assisted planning, stereolithographic modeling, and intraoperative navigation for complex orbital reconstruction: a descriptive study in a preliminary cohort. J Oral Maxillofac Surg 67(12):2559–2570CrossRefPubMed
5.
Zurück zum Zitat Celik S, Ozer MA, Kazak Z, Govsa F (2014) Computer-assisted analysis of anatomical relationships of the ethmoidal foramina and optic canal along the medial orbital wall. Eur Arch Otorhinolaryngol (Epub ahead of print) Celik S, Ozer MA, Kazak Z, Govsa F (2014) Computer-assisted analysis of anatomical relationships of the ethmoidal foramina and optic canal along the medial orbital wall. Eur Arch Otorhinolaryngol (Epub ahead of print)
6.
Zurück zum Zitat Cheng AC, Lucas PW, Yuen HK, Lam DS, So KF (2008) Surgical anatomy of the Chinese orbit. Ophthal Plast Reconstr Surg 24(2):134–141CrossRef Cheng AC, Lucas PW, Yuen HK, Lam DS, So KF (2008) Surgical anatomy of the Chinese orbit. Ophthal Plast Reconstr Surg 24(2):134–141CrossRef
7.
Zurück zum Zitat Dai J, Yu H, Wu J, Yu D, Shen SG, Xu B, Zhang S (2014) Le Fort I osteotomy combined with endoscopic assistance for treatment of compound fracture of maxilla, zygoma, and orbital floor. J Craniofac Surg 25(2):495–498CrossRefPubMed Dai J, Yu H, Wu J, Yu D, Shen SG, Xu B, Zhang S (2014) Le Fort I osteotomy combined with endoscopic assistance for treatment of compound fracture of maxilla, zygoma, and orbital floor. J Craniofac Surg 25(2):495–498CrossRefPubMed
8.
Zurück zum Zitat De Battista JC, Zimmer LA, Theodosopoulos PV, Froelich SC, Keller JT (2012) Anatomy of the inferior orbital fissure: implications for endoscopic cranial base surgery. J Neurol Surg B Skull Base 73(2):132–138CrossRefPubMedPubMedCentral De Battista JC, Zimmer LA, Theodosopoulos PV, Froelich SC, Keller JT (2012) Anatomy of the inferior orbital fissure: implications for endoscopic cranial base surgery. J Neurol Surg B Skull Base 73(2):132–138CrossRefPubMedPubMedCentral
9.
Zurück zum Zitat Evans BT, Webb AAC (2007) Post-traumatic orbital reconstruction: anatomical landmarks and the concept of the deep orbit. Br J Oral Maxillofac Surg 45(3):183–189CrossRefPubMed Evans BT, Webb AAC (2007) Post-traumatic orbital reconstruction: anatomical landmarks and the concept of the deep orbit. Br J Oral Maxillofac Surg 45(3):183–189CrossRefPubMed
10.
Zurück zum Zitat Garibaldi DC, Iliff NT, Grant MP, Merbs SL (2007) Use of porous polyethylene with embedded titanium in orbital reconstruction: a review of 106 patients. Ophthal Plast Reconstr Surg 23(6):439–444CrossRefPubMed Garibaldi DC, Iliff NT, Grant MP, Merbs SL (2007) Use of porous polyethylene with embedded titanium in orbital reconstruction: a review of 106 patients. Ophthal Plast Reconstr Surg 23(6):439–444CrossRefPubMed
11.
Zurück zum Zitat Grewal SS, Kurbanov A, Anaizi A, Keller JT, Theodosopoulos PV, Zimmer LA (2014) Endoscopic endonasal approach to the maxillary strut: anatomical review and case series. Laryngoscope 124(8):1739–1743CrossRefPubMed Grewal SS, Kurbanov A, Anaizi A, Keller JT, Theodosopoulos PV, Zimmer LA (2014) Endoscopic endonasal approach to the maxillary strut: anatomical review and case series. Laryngoscope 124(8):1739–1743CrossRefPubMed
12.
Zurück zum Zitat Govsa F, Celik S, Ozer MA (2009) Orbital restoration surgery in the zygomaticotemporal and zygomaticofacial nerves and important anatomic landmarks. J Craniofac Surg 20(2):540–544CrossRefPubMed Govsa F, Celik S, Ozer MA (2009) Orbital restoration surgery in the zygomaticotemporal and zygomaticofacial nerves and important anatomic landmarks. J Craniofac Surg 20(2):540–544CrossRefPubMed
13.
Zurück zum Zitat Gupta T (2008) Localization of important facial foramina encountered in maxillo-facial surgery. Clin Anat 21(7):633–640CrossRefPubMed Gupta T (2008) Localization of important facial foramina encountered in maxillo-facial surgery. Clin Anat 21(7):633–640CrossRefPubMed
14.
Zurück zum Zitat Hakuba A, Liu S, Nishimura S (1986) The orbitozygomatic infratemporal approach: a new surgical technique. Surg Neurol 26(3):271–276CrossRefPubMed Hakuba A, Liu S, Nishimura S (1986) The orbitozygomatic infratemporal approach: a new surgical technique. Surg Neurol 26(3):271–276CrossRefPubMed
15.
Zurück zum Zitat Huanmanop T, Agthong S, Chentanez V (2007) Surgical anatomy of fissures and foramina in the orbits Thai adults. J Med Assoc Thai 90(11):2383–2391PubMed Huanmanop T, Agthong S, Chentanez V (2007) Surgical anatomy of fissures and foramina in the orbits Thai adults. J Med Assoc Thai 90(11):2383–2391PubMed
16.
Zurück zum Zitat Hwang K, Baik SH (1999) Surgical anatomy of the orbit of Korean adults. J Craniofac Surg 10(2):129–134 Hwang K, Baik SH (1999) Surgical anatomy of the orbit of Korean adults. J Craniofac Surg 10(2):129–134
17.
Zurück zum Zitat Kafadar AM, Tanriverdi T, Canbaz B, Kuday C (2006) Trigeminal neuroma with extracranial extension: the 31st case. Minim Invasive Neurosurg 49(4):230–233CrossRefPubMed Kafadar AM, Tanriverdi T, Canbaz B, Kuday C (2006) Trigeminal neuroma with extracranial extension: the 31st case. Minim Invasive Neurosurg 49(4):230–233CrossRefPubMed
18.
Zurück zum Zitat Karakas P, Bozkir MG, Oguz O (2003) Morphometric measurements from various reference points in the orbit of male Caucasians. Surg Radiol Anat 24(6):358–362PubMed Karakas P, Bozkir MG, Oguz O (2003) Morphometric measurements from various reference points in the orbit of male Caucasians. Surg Radiol Anat 24(6):358–362PubMed
19.
Zurück zum Zitat Kazkayasi M, Ergin A, Ersoy M, Bengi O, Tekdemir I, Elhan A (2002) Certain anatomical relations and the precise morphometry of the intraorbital foramen-canal and groove: an anatomical and cephalometric study. Ophthal Plast Reconstr Surg 18(5):355–364CrossRef Kazkayasi M, Ergin A, Ersoy M, Bengi O, Tekdemir I, Elhan A (2002) Certain anatomical relations and the precise morphometry of the intraorbital foramen-canal and groove: an anatomical and cephalometric study. Ophthal Plast Reconstr Surg 18(5):355–364CrossRef
20.
Zurück zum Zitat Kim JW, Goldberg RA, Shorr N (2002) The inferomedial orbital strut: an anatomic and radiographic study. Ophthal Plast Reconstr Surg 18(5):355–364CrossRefPubMed Kim JW, Goldberg RA, Shorr N (2002) The inferomedial orbital strut: an anatomic and radiographic study. Ophthal Plast Reconstr Surg 18(5):355–364CrossRefPubMed
21.
Zurück zum Zitat Kim HE, Jang SY, Yoon JS (2014) Combined orbital floor wedge implant and fornix reconstruction for post-enucleation sunken socket syndrome. Plast Reconstr Surg 133(6):1469–1475CrossRefPubMed Kim HE, Jang SY, Yoon JS (2014) Combined orbital floor wedge implant and fornix reconstruction for post-enucleation sunken socket syndrome. Plast Reconstr Surg 133(6):1469–1475CrossRefPubMed
22.
Zurück zum Zitat Lee KY, Ang BT, Ng I, Looi A (2009) Stereotaxy for surgical navigation in orbital surgery. Ophthal Plast Reconstr Surg 25(4):300–302CrossRefPubMed Lee KY, Ang BT, Ng I, Looi A (2009) Stereotaxy for surgical navigation in orbital surgery. Ophthal Plast Reconstr Surg 25(4):300–302CrossRefPubMed
23.
Zurück zum Zitat Lee T, Lee H, Baek S (2012) A three-dimensional computed tomographic measurement of the location of infraorbital foramen in East Asians. J Craniofac Surg 23(3):1169–1173CrossRefPubMed Lee T, Lee H, Baek S (2012) A three-dimensional computed tomographic measurement of the location of infraorbital foramen in East Asians. J Craniofac Surg 23(3):1169–1173CrossRefPubMed
24.
Zurück zum Zitat Markiewicz MR, Dierks EJ, Bell RB (2012) Does intraoperative navigation restore orbital dimensions in traumatic and post-ablative defects? J Craniomaxillofac Surg 40(2):142–148CrossRefPubMed Markiewicz MR, Dierks EJ, Bell RB (2012) Does intraoperative navigation restore orbital dimensions in traumatic and post-ablative defects? J Craniomaxillofac Surg 40(2):142–148CrossRefPubMed
25.
Zurück zum Zitat Markiewicz MR, Dierks EJ, Potter BE, Bell RB (2011) Reliability of intraoperative navigation in restoring normal orbital dimensions. J Oral Maxillofac Surg 69(11):2833–2840CrossRefPubMed Markiewicz MR, Dierks EJ, Potter BE, Bell RB (2011) Reliability of intraoperative navigation in restoring normal orbital dimensions. J Oral Maxillofac Surg 69(11):2833–2840CrossRefPubMed
26.
Zurück zum Zitat Nyachhyon P, Kim PC (2011) Intraoperative stereotactic navigation for reconstruction in zygomatic-orbital trauma. JNMA 51(181):37–40 Nyachhyon P, Kim PC (2011) Intraoperative stereotactic navigation for reconstruction in zygomatic-orbital trauma. JNMA 51(181):37–40
27.
Zurück zum Zitat Ozer MA, Celik S, Govsa F (2009) A morphometric study of the inferior orbital fissure using three-dimensional anatomical landmarks: application to orbital surgery. Clin Anat 22(6):649–654CrossRefPubMed Ozer MA, Celik S, Govsa F (2009) A morphometric study of the inferior orbital fissure using three-dimensional anatomical landmarks: application to orbital surgery. Clin Anat 22(6):649–654CrossRefPubMed
28.
29.
Zurück zum Zitat Ricketts S, Chew HF, Sunderland IR, Kiss A, Fialkov JA (2014) Transection of inferior orbital fissure contents for improved access and visibility in orbital surgery. J Craniofac Surg 25(2):557–562CrossRefPubMed Ricketts S, Chew HF, Sunderland IR, Kiss A, Fialkov JA (2014) Transection of inferior orbital fissure contents for improved access and visibility in orbital surgery. J Craniofac Surg 25(2):557–562CrossRefPubMed
30.
Zurück zum Zitat Schmelzeisen R, Gellrich NC, Schoen R, Gutwald R, Zizelmann C, Schramm A (2004) Navigation-aided reconstruction of medial orbital wall and floor contour in cranio-maxillofacial reconstruction. Injury 35(10):955–962CrossRefPubMed Schmelzeisen R, Gellrich NC, Schoen R, Gutwald R, Zizelmann C, Schramm A (2004) Navigation-aided reconstruction of medial orbital wall and floor contour in cranio-maxillofacial reconstruction. Injury 35(10):955–962CrossRefPubMed
31.
Zurück zum Zitat Van Rompaey J, Bush C, Solares CA (2014) Anatomic analysis specific for the endoscopic approach to the inferior, medial and lateral orbit. Orbit 33(2):115–123CrossRefPubMed Van Rompaey J, Bush C, Solares CA (2014) Anatomic analysis specific for the endoscopic approach to the inferior, medial and lateral orbit. Orbit 33(2):115–123CrossRefPubMed
32.
Zurück zum Zitat Przygocka A, Szymański J, Jakubczyk E, Jędrzejewski K, Topol M, Polguj M (2013) Variations in the topography of the infraorbital canal/groove complex: a proposal for classification and its potential usefulness in orbital floor surgery. Folia Morphol (Warsz) 72(4):311–317CrossRef Przygocka A, Szymański J, Jakubczyk E, Jędrzejewski K, Topol M, Polguj M (2013) Variations in the topography of the infraorbital canal/groove complex: a proposal for classification and its potential usefulness in orbital floor surgery. Folia Morphol (Warsz) 72(4):311–317CrossRef
33.
Zurück zum Zitat McQuenn CT, DiRuggiero DC, Campell JP, Shockley WW (1995) Orbital osteology. A study of the surgical landmarks. Laryngoscope 105(8):783–788CrossRef McQuenn CT, DiRuggiero DC, Campell JP, Shockley WW (1995) Orbital osteology. A study of the surgical landmarks. Laryngoscope 105(8):783–788CrossRef
34.
35.
Zurück zum Zitat Yu H, Shen G, Wang X, Zhang S (2010) Navigation-guided reduction and orbital floor reconstruction in the treatment of zygomatic-orbital-maxillary complex fractures. J Oral Maxillofac Surg 68(1):28–34CrossRefPubMed Yu H, Shen G, Wang X, Zhang S (2010) Navigation-guided reduction and orbital floor reconstruction in the treatment of zygomatic-orbital-maxillary complex fractures. J Oral Maxillofac Surg 68(1):28–34CrossRefPubMed
Metadaten
Titel
Redesign and treatment planning orbital floor reconstruction using computer analysis anatomical landmarks
verfasst von
Mehmet Asim Ozer
Figen Govsa
Zuhal Kazak
Senem Erdogmus
Servet Celik
Publikationsdatum
05.08.2015
Verlag
Springer Berlin Heidelberg
Erschienen in
European Archives of Oto-Rhino-Laryngology / Ausgabe 8/2016
Print ISSN: 0937-4477
Elektronische ISSN: 1434-4726
DOI
https://doi.org/10.1007/s00405-015-3741-3

Weitere Artikel der Ausgabe 8/2016

European Archives of Oto-Rhino-Laryngology 8/2016 Zur Ausgabe

Update HNO

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert – ganz bequem per eMail.