Mandibular canal and the arrangement of the neurovascular bundle exit routes in divergent populations

Authors

  • Agnieszka Tomaszewska Department of Anthropology, Wroclaw University of Environmental and Life Sciences, Poland image/svg+xml
  • Daniel Psonak Department of Human Biology, Department of Biological Sciences, University of Wroclaw, Poland image/svg+xml
  • Joanna Rudzka Department of Human Biology, Department of Biological Sciences, University of Wroclaw, Poland image/svg+xml

DOI:

https://doi.org/10.18778/1898-6773.85.3.01

Keywords:

cranial openings, mental foramen, mandibular foramen, canal mandible

Abstract

Aim: In face anatomy and surgery, variation in the presence, number, location, and size of the mental foramen is discussed. Knowledge of the location of the mental foramen canal, which may led due to the possibility of accidental injury of the neurovascular bundle passing through this canal may lead to anesthesia. This study aimed to present selected anatomical features of human mandibles, focusing on the morphology of the mandibular canal and its neurovascular bundle exit in populations with different socio-economic status.

Material and methods: Selected well preserved and unharmed human skulls (N= 169) (50.3% males, 49.7% females) from two populations (rural and outskirts) from Poland were used. Populations differed in socio­economic statuses.

Results: Obvious dimorphic differences in each analyzed population were stated and inter-population differences were observed as well. In an outskirt population sexual dimorphism was more evident. Those differences should be considered when approaching the mandibular canal during anesthetic, surgical and forensic procedures.

Discussion: The occurrence of the mental foramen is relatively constant, but location is variable, and thus, each individual may exhibit a different arrangement of bundle exits. Both the position and the direction of the exit of the neurovascular bundle were similar to other European population. However, differences in localization between those two investigated populations were observed. This may suggest that not only genetic but also environmental factors, such as living conditions and diet (which affects developmental stability), may influence the morphology of the mandibular features.

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References

Agarwal DR, Gupta SB. 2011. Morphometric Analysis of Mental Foramen in Human Mandibles of South Gujarat. People’s Journal of Scientific Research 4(1):15–18.
View in Google Scholar

Belniak T, Krupiński T, Magnuszewicz M, Rauhut J, Szczotkowa Z. 1961. Cmentarzysko w Gródku nad Bugiem (XIII–XVII w.). Mat. Pr. Antrop. 50.
View in Google Scholar

Bierman F. 2006. Sypniewo. Ein fruhmittelalterlicher Burg-Siedlungskomplex in Nordmasowien. Befunde, funde und kulturhistorische bewertung, teil 1. Archeologia Mazowsza i Podlasia. Studia i materiały. T. 4. Red. serii: W. Szymański. Instytut Archeologii i Etnologii PAN, Warszawa.
View in Google Scholar

Cutright B, Quillopa N, Schubert W. 2003. An anthropometric analysis of the key foramina for maxillofacial surgery. Journal of Oral and Maxillofacial Surgery 61(3):354–357.
View in Google Scholar DOI: https://doi.org/10.1053/joms.2003.50070

Dario LJ. 2002. Implant placement above a bifurcated man-dibular canal: A case report. Implant. Dent. 11:258–261.
View in Google Scholar DOI: https://doi.org/10.1097/00008505-200207000-00010

Drake RL, Vogl AW, Mitchell AWM. 2010. Gray’s Anatomy for Students. Churchill Livingstone 1142–1144.
View in Google Scholar

Ennes JP, Monteiro de Medeiros R. 2009. Localization of Mandibular Foramen and Clinical Implications. Int. J. Morphol. 27(4):1305–1311.
View in Google Scholar DOI: https://doi.org/10.4067/S0717-95022009000400053

Fabian FM, Mpembeni R. 2002. Sexual dimorphism in the mandibles of homogenius black population of Tanzania. Tanzania Journal of Science. 28(2):47–54.
View in Google Scholar DOI: https://doi.org/10.4314/tjs.v28i2.18353

Field A. 2006. Discovering statistics using SPSS. 3rd edition, Sage Publications Ltd., London.
View in Google Scholar

Galdames ICS, Matamala DAZ, Smith RL. 2008. Evaluating Accuracy and Precision in Morphologic Traits for Sexual Dimorphism in Malnutrition Human Skull: a Comparative Study. Int. J. Morphol. 26(4): 877–881.
View in Google Scholar DOI: https://doi.org/10.4067/S0717-95022008000400015

Gilligan I, Bulbeck D. 2007. Environment and morphology in Australian Aborigines: a re – analysis of the Birdsell database. Am. J. Phys. Anthropol. 134:75–91.
View in Google Scholar DOI: https://doi.org/10.1002/ajpa.20640

Golusik K, Sarul M, Rzeszut Ł, Matthews-Brzozowska T. 2005. Żuchwa ludzka w procesie ewolucji. Dent. Med. Probl. 42(1):103–109.
View in Google Scholar

Goudot P. 1999. The mandibular canal of a Neanderthal: the La Chapelle-aux-Saints man anatomical-radiological study. J. Craniomaxillofac Surg. 27:134–139.
View in Google Scholar DOI: https://doi.org/10.1016/S1010-5182(99)80027-4

Goudot P. 2002. The mandibular canal of the “Old Man” of Cro-Magnon: anatomical-radiological study. J. Craniomaxillofac Surg. 30:213–218.
View in Google Scholar DOI: https://doi.org/10.1054/jcms.2002.0282

Gray H. 1985. Anatomy of the Human Body. Philadelphia : Lea & Febiger, United States 106–109.
View in Google Scholar

Green RM. 1987. The position of the mental foramen: a comparison between the southern (Hong Kong) Chinese and other ethnic and racial groups. Oral. Surg. Oral Med. Oral Pathol. 63:281–290.
View in Google Scholar DOI: https://doi.org/10.1016/0030-4220(87)90191-5

Harvati K, Weaver TD. 2006. Human cranial anatomy and the differential preservation of population history and climate signatures. Anat. Rec., Part A Discov. Mol. Cell. Evol. Biol. 288 A (12):1225–1233.
View in Google Scholar DOI: https://doi.org/10.1002/ar.a.20395

Hasan T. 2012. Mental Foramen Morphology: a must know in clinical dentistry. Journal of the Pakistan Dental Association 21(3):168–173.
View in Google Scholar

Hoque M, Ara S, Begum S, Kamal M, Momen M. 2013. Study of Number, Shape, Size and Position of Mental Foramen in Bangladeshi Dry Adult Human Mandible. Bangladesh Journal of Anatomy 11(1):7–10.
View in Google Scholar DOI: https://doi.org/10.3329/bja.v11i1.20501

Igbigbi PS, Lebona S. 2005. The position and dimensions of the mental foramen in adult Malawian mandibles. WAJM 24(3):184–189.
View in Google Scholar DOI: https://doi.org/10.4314/wajm.v24i3.28195

Ilayperuma I, Nanayakkara G, Palahepitiya N. 2009. Morphometric Analysis of the Mental Foramen in Adult Sri Lankan Mandibles. International Journal of Morphology 27(4):1019–1024.
View in Google Scholar DOI: https://doi.org/10.4067/S0717-95022009000400010

Iwanaga J, Watanabe K, Saga T, Tabira Y, Kitashima S, Kusukawa J, Yamaki K. 2016. Accessory mental foramina and nerves: Application to periodontal, periapical, and implant surgery. Clinical Anatomy 29(4):493–501. https://doi.org/10.1002/ca.22635
View in Google Scholar DOI: https://doi.org/10.1002/ca.22635

Jacobs R, Mraiwa N, Van Steenberghe D, Sanderink G, Quirynen M. 2004. Appearance of the mandibular incisivecanal on panoramic radiographs. Surg Radiol Anat 26:329–333.
View in Google Scholar DOI: https://doi.org/10.1007/s00276-004-0242-2

Junior ROM, Santos Saud AD, Rodrigues Fonseca D, De-Ary-Pires B, Ary Pires-Neto M, De Ary-Pires R. 2010. Morphometrical analysis of the human mandibular canal: a CT investigation. Surgical and Radiologic Anatomy 33:345–352.
View in Google Scholar DOI: https://doi.org/10.1007/s00276-010-0708-3

Łasiński W. 1993. Anatomia głowy dla stomatologów. Państwowy Zakład Wydawnictw Lekarskich, Warszawa 26–30.
View in Google Scholar

Martin R, Saller F, Knussman R. 1988. Antropologie In: Handbuch der vergleichenden Biologie des Menschen, Gustav Fischer Verlag, Stuttgart, New York.
View in Google Scholar

Mays S. 2014. Mandibular morphology in two archaeologicalhuman skeletal samples from northwest Europewith different masticatory regimes. HOMO – Journal of Comparative Human Biology 25378:1–13.
View in Google Scholar

Miličević A, Salarić I, Đanić P, Miličević H, Macan K, Orihovac Ž, Zajc I, Brajdić D, Macan D. 2021. Anatomical Variations of the Bifid Mandibular Canal on Panoramic Radiographs in Citizens from Zagreb, Croatia. Acta Stomatologica Croatica 55(3):248–255. https://doi.org/10.15644/asc55/3/2
View in Google Scholar DOI: https://doi.org/10.15644/asc55/3/2

Mizbah K, Gerlach N, Maal TJ, Bergé SJ, Meijer GJ. 2012. The clinical relevance of bifid and trifid mandibular canals. Oral Maxillofacial Surgery 16(1):147–151. https://doi.org/10.1007/s10006-011-0278-5
View in Google Scholar DOI: https://doi.org/10.1007/s10006-011-0278-5

Moiseiwitsch JRD, Hill C. 1998. Position of the mental foramen in a North American, white population. Oral Surgery, Oral Medicine, Oral Pathology, Oral Radiology 1, 85:457–460.
View in Google Scholar DOI: https://doi.org/10.1016/S1079-2104(98)90074-9

Naitoh M, Hiraiwa Y, Aimiya H, Ariji E. 2009. Observation of bifid mandibular canal using cone-beam computerized tomography. International J Journal of Oral and Maxillofacial Implants 24:155–159.
View in Google Scholar

Narayana K, Prashanthi N. 2003. Incidence of large accessory mandibular foramen in human mandibles. European Journal of Anatomy 7(3):139–141
View in Google Scholar

Oguz O, Bozkir MG. 2002. Evaluation of Location of Mandibular and Mental Foramina in Dry, Young, Adult Human. West Indian Medical Journal 51(1):14–16.
View in Google Scholar

Oliveira Junior EM, Araújo ALD, Da Silva CMF, Sousa-Rodrigues CF, Lima FJC. 2009. Morphological and Morphometric Study of the Mental Foramen on the M-CP-18 Jiachenjiang Point. International Journal of Morphology 27(1):231–238, https://doi.org/10.4067/S0717-95022009000100039
View in Google Scholar DOI: https://doi.org/10.4067/S0717-95022009000100039

Ongkana N, Sudwan P. 2009. Gender difference in Thai mandibles using metric analysis. Chiang Mai,Medical Journal 48(2):43–48.
View in Google Scholar

Pearson OM. 2000. Activity, climate, and postcranial robusticity: implications for modern human origins and scenarios of adaptive change. Current Anthropology 41(4):569–607.
View in Google Scholar DOI: https://doi.org/10.1086/317382

Perez SI, Bernal V, Gonzalez PN. 2007. Morphological differentiation of aboriginal human populations from Tierra del Fuego (Patagonia): implications for South American peopling. American Journal of Physical Anthropology 133:1067–1079.
View in Google Scholar DOI: https://doi.org/10.1002/ajpa.20633

Phillips JL, Weller RN, Kulild JC. 1992. The Mental Foramen: Part III. Size and Position on Panoramic Radiographs. Journal of Endodontics 18(8):383–386.
View in Google Scholar DOI: https://doi.org/10.1016/S0099-2399(06)81224-0

Piontek J. 1999. Biologia populacji pradziejowych. Wydawnictwo Naukowe Uniwersytetu im. Adama Mickiewicza w Poznaniu, Poznań.
View in Google Scholar

Prośba-Mackiewicz M, Mackiewicz J, Grzybiak M, Hreczecha J, Skwarek M. 2005. Zastosowanie badań morfometrycznych do oceny ważnych klinicznie parametrów morfologicznych żuchwy. Czasopismo Stomatologiczne LVIII, 2:116–123.
View in Google Scholar

Puisorua M, Fornab N, Fatub AM, Fatub R, Fatua C. 2006. Analysis of mandibular variability in humans of different geographic areas. Annals of Anatomy 188:547–554.
View in Google Scholar DOI: https://doi.org/10.1016/j.aanat.2006.05.015

Purmal K, Alam MK, Moganadass D, Zakariat NN, Cheong NW. 2013. The application and correlation of Pont’s Index to the facial framework of three main ethnic groups in Malaysia. Australian Orthodontic Journal Volume 29(1): 34–42.
View in Google Scholar

Raadsheer MC, Van Eijdet TMGJ, Van Ginkel FC, Prahl-Andersen B. 1999. Contribution of jaw muscle size and craniofacial morphology to human bite force magnitude. Journal of Dental Research 78:31–42.
View in Google Scholar DOI: https://doi.org/10.1177/00220345990780010301

Rai R, Shrestha S, Jha S. 2014. Mental foramen: a morphological and morphometrical study. International Journal of Healthcare and Biomedical Research 2(4):144–150.
View in Google Scholar

Renton T, Adey-Viscuso D, Meechan J. et al. 2010. Trigeminal nerve injuries in relation to the local anaesthesia in mandibular in jections. British Dental Journal 209, E15 https://doi.org/10.1038/sj.bdj.2010.978
View in Google Scholar DOI: https://doi.org/10.1038/sj.bdj.2010.978

Samanta PP, Kharb P. 2013. Morphometric analysis of mandibular foramen and incidence of accessory mandibular foramina in adult human mandibles of an Indian Population. Revista Argentina de Anatomia 5(2):60–66.
View in Google Scholar DOI: https://doi.org/10.31051/1852.8023.v5.n2.14059

Sekutowski M. 2002. Wybrane cechy niemetryczne kości kończyny dolnej a przypuszczalny tryb życia średniowiecznych populacji z Sypniewa i Wrocławia (praca magisterska obroniona w Katedra Antropologii. Wrocław: Uniwersytet Wrocławski).
View in Google Scholar

Shenoy V, Vijayalakshmi S, Saraswathi P. 2012. Osteometric Analysis of the Mandibular Foramen in Dry Human Mandibles. Journal of Clinical and Diagnostic Research 6(4):557–560.
View in Google Scholar

Simalcsik A, Groza VM, Simalcsik RD, Miu G. 2012. The Medieval Nectropolis (16th–18th centuries) of ‘Sfantul Nicolae-Ciurchi’ Church from Iasi city (Romania): Anthropologic data. Biologie animală LVIII:183–194.
View in Google Scholar

Singh R, Srivastav AK. 2011. Evaluation of position, shape, size and incidence of mental foramen and accessory mental foramen in Indian adult human skulls. Int. J. Experim. Clinical Anat. 5:23–29.
View in Google Scholar DOI: https://doi.org/10.2399/ana.10.004

Sójka A, Hędzelek W, 2011. Ocena różnych rodzajów asymetrii w narządzie żucia na podstawie badania klinicznego i instrumentalnego. Protet. Stomatol. LXI(1):28–36.
View in Google Scholar

Sonick M, Abrahams J, Faiella R. 1994. A comparison of the accuracy of periapical, panoramic, and computerized tomographic radiographs in locating the mandibular canal. Int. J. Oral. Maxillofac. Implants. 9:455–460.
View in Google Scholar

Stanisz A. 1998. Przystępny kurs statystyki w oparciu o program STATISTICA PL na przykładach z medycyny. Kraków: StatSoft Polska.
View in Google Scholar

Tomaszewska A, Kwiatkowska B, Jankauskas R. 2015. Is the area of the orbital opening in humans related to climate? Am. J. Hum. Biol. 27(6):845–850. https://doi.org/10.1002/ajhb.22735. Epub 2015 May 7.
View in Google Scholar DOI: https://doi.org/10.1002/ajhb.22735

Valente VB, Arita WM, Gonçalves PCG, Campos JADB, de Oliveira Capot TS. 2012. Location of the Mandibular Foramen According to the Amount of Dental Alveoli. Int. J. Morphol. 30(1):77–81.
View in Google Scholar DOI: https://doi.org/10.4067/S0717-95022012000100013

Wells JCK. 2012. Sexual dimorphism in body composition across human populations: associations with climate and proxies for short – and long – term energy supply. Am. J. Hum. Biol. 24(4):411–419.
View in Google Scholar DOI: https://doi.org/10.1002/ajhb.22223

Wiliams FL, Krovitz GE. 2004. Ontogenetic migration of the mental foramen in Neandertals and modern humans. J. Hum. Evol. 47(4):199–219.
View in Google Scholar DOI: https://doi.org/10.1016/j.jhevol.2004.06.006

Workshop of European Anthropologists. 1980. Recommendations for sex and age diagnoses of skeletons. J. Hum. Evol. 9:517–549.
View in Google Scholar DOI: https://doi.org/10.1016/0047-2484(80)90061-5

Wychowański P, Nieckula P, Panek M, Kalinowski E, Borkowska U, Wojtowicz A. 2008. Próba oceny położenia otworu żuchwowego i bródkowego na podstawie analizy cyfrowych zdjęć pantomograficznych. Dent Med. Probl. 45(1):21–28.
View in Google Scholar

Yosue T, Brooks SL. 1989. The appearance of mental foramina on panoramic and periapical radiographs. II. Experimental evaluation. Oral Surg Oral Med Oral Pathol. 68(4):488–492. https://doi.org/10.1016/0030-4220(89)90151-5
View in Google Scholar DOI: https://doi.org/10.1016/0030-4220(89)90151-5

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Published

2022-09-30

How to Cite

Tomaszewska, A., Psonak, D., & Rudzka, J. (2022). Mandibular canal and the arrangement of the neurovascular bundle exit routes in divergent populations. Anthropological Review, 85(3), 1–18. https://doi.org/10.18778/1898-6773.85.3.01

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