Anatomic characteristics of supraorbital and supratrochlear nerves relevant to their use in corneal neurotization.
Journal
Eye (London, England)
ISSN: 1476-5454
Titre abrégé: Eye (Lond)
Pays: England
ID NLM: 8703986
Informations de publication
Date de publication:
03 2019
03 2019
Historique:
received:
24
06
2018
accepted:
27
08
2018
pubmed:
29
9
2018
medline:
23
8
2019
entrez:
29
9
2018
Statut:
ppublish
Résumé
Corneal denervation can lead to opacification and blindness. A new treatment technique, surgical corneal neurotization, transfers healthy donor nerve, (most commonly contralateral supratrochlear or supraorbital) to the affected limbus to prevent corneal destruction and improve healing potential of the cornea following insult. We examine gross and histomorphometric anatomy of the supratrochlear and supraorbital nerves relevant to their use in corneal neurotization. For each of nine adult cadaver heads, bilateral supraorbital and supratrochlear nerves were dissected from the supraorbital rim to the anterior hairline. The following data were recorded for each nerve: exit from the orbit through a notch versus foramen; horizontal distance from midline at the supraorbital rim; and distance from orbital exit to first branching point. Samples of all left supraorbital and supratrochlear nerves were obtained at the level of the supraorbital rim and at points 3 cm and 6 cm distally for histomorphometric analysis. Myelinated axon counts were determined for each sample. Four supraorbital foramina, 14 supraorbital notches, two supratrochlear foramina, and 15 supratrochlear notches were identified. Average supraorbital and supratrochlear distances to midline were 26.5 mm and 21 mm respectively. Average myelinated axon counts for both nerves were greater at the orbital rim (supraorbital: 6018, supratrochlear: 2533) than at 6 cm distally (supraorbital: 1621, supratrochlear: 1112). Anatomic dissection shows relative close approximation of the supraorbital and supratrochlear nerves, with a high proportion of both nerves exiting the orbit through foramina. The supraorbital nerve at the orbital rim contains the greatest number of myelinated axons.
Sections du résumé
BACKGROUND
Corneal denervation can lead to opacification and blindness. A new treatment technique, surgical corneal neurotization, transfers healthy donor nerve, (most commonly contralateral supratrochlear or supraorbital) to the affected limbus to prevent corneal destruction and improve healing potential of the cornea following insult. We examine gross and histomorphometric anatomy of the supratrochlear and supraorbital nerves relevant to their use in corneal neurotization.
METHODS
For each of nine adult cadaver heads, bilateral supraorbital and supratrochlear nerves were dissected from the supraorbital rim to the anterior hairline. The following data were recorded for each nerve: exit from the orbit through a notch versus foramen; horizontal distance from midline at the supraorbital rim; and distance from orbital exit to first branching point. Samples of all left supraorbital and supratrochlear nerves were obtained at the level of the supraorbital rim and at points 3 cm and 6 cm distally for histomorphometric analysis. Myelinated axon counts were determined for each sample.
RESULTS
Four supraorbital foramina, 14 supraorbital notches, two supratrochlear foramina, and 15 supratrochlear notches were identified. Average supraorbital and supratrochlear distances to midline were 26.5 mm and 21 mm respectively. Average myelinated axon counts for both nerves were greater at the orbital rim (supraorbital: 6018, supratrochlear: 2533) than at 6 cm distally (supraorbital: 1621, supratrochlear: 1112).
CONCLUSIONS
Anatomic dissection shows relative close approximation of the supraorbital and supratrochlear nerves, with a high proportion of both nerves exiting the orbit through foramina. The supraorbital nerve at the orbital rim contains the greatest number of myelinated axons.
Identifiants
pubmed: 30262895
doi: 10.1038/s41433-018-0222-0
pii: 10.1038/s41433-018-0222-0
pmc: PMC6460700
doi:
Types de publication
Journal Article
Langues
eng
Pagination
398-403Subventions
Organisme : NINDS NIH HHS
ID : K08 NS096232
Pays : United States
Références
Plast Reconstr Surg. 2000 Mar;105(3):1120-7; discussion 1128
pubmed: 10724274
Invest Ophthalmol Vis Sci. 2002 Dec;43(12):3660-4
pubmed: 12454033
Exp Eye Res. 2003 May;76(5):521-42
pubmed: 12697417
J Electromyogr Kinesiol. 2004 Feb;14(1):71-5
pubmed: 14759752
Invest Ophthalmol Vis Sci. 2004 Nov;45(11):3991-6
pubmed: 15505047
Plast Reconstr Surg. 2008 Jan;121(1):233-40
pubmed: 18176226
Plast Reconstr Surg. 2009 Jan;123(1):112-20
pubmed: 19116544
J Hand Surg Am. 2010 Feb;35(2):332-41
pubmed: 20141906
Plast Reconstr Surg. 2012 Dec;130(6):1227-33
pubmed: 23190806
Plast Reconstr Surg. 2013 Apr;131(4):743-50
pubmed: 23249981
Ophthalmic Plast Reconstr Surg. 2013 Sep-Oct;29(5):403-8
pubmed: 23928468
BMC Surg. 2013 Sep 24;13:39
pubmed: 24063721
Clin Ophthalmol. 2014 Mar 19;8:571-9
pubmed: 24672223
Exp Eye Res. 2014 Aug;125:53-61
pubmed: 24880142
JAMA Ophthalmol. 2014 Nov;132(11):1289-95
pubmed: 25010775
Ophthalmology. 2015 Apr;122(4):662-8
pubmed: 25542519
Plast Reconstr Surg. 2015 Feb;135(2):397e-400e
pubmed: 25626824
Eye Contact Lens. 2015 Sep;41(5):314-7
pubmed: 25828513
Neuropathol Appl Neurobiol. 1986 Nov-Dec;12(6):547-65
pubmed: 3561691
Plast Reconstr Surg. 1995 Sep;96(3):564-9
pubmed: 7638280