Literature DB >> 27267448

Incidence of optic canal fracture in the traumatic optic neuropathy and its effect on the visual outcome.

Wentao Yan1, Yingbai Chen2, Zhenbin Qian1, Dinesh Selva3, Daniel Pelaez4, Yunhai Tu1, Wencan Wu5.   

Abstract

OBJECTIVE: To correlate the intraoperative endoscopic findings with high-resolution CT (HRCT) for the diagnosis of optic canal fractures (OCF). To compare the visual outcome of patients with different types of OCF and without.
DESIGN: A retrospective, comparative case series. PARTICIPANTS: 1275 consecutive patients (1275 eyes) with indirect traumatic optic neuropathy (TON).
METHODS: Altogether, 1275 patients who underwent endoscopic transethmoid optic canal decompression (ETOCD) for unilateral indirect TON were reviewed from 1 October 2006 to 30 September 2014. HRCT performed prior to surgery were compared with findings during surgery. The visual outcomes before and after surgery were also compared. MAIN OUTCOME MEASURES: The presence and type of OCF detected by HRCT and during surgery; visual acuity prior to surgery and at 3 months after surgery.
RESULTS: A total of 1275 patients (1275 eyes) were included, with 708 patients that had OCF visible on HRCT image. During surgery, an additional 187 (20.9%) patients with OCF were noticed. Among these, 136 had undisplaced fractures, most of which were linear intracanalicular fractures. The initial visual acuity of patients with OCF was worse than that of patients without OCF (p<0.01). However, no statistical difference existed in the final visual acuity at 3 months after surgery (>0.05). Significant statistical difference of surgical efficacy existed between all the patients with OCF and without OCF (p<0.001).
CONCLUSIONS: Among patients with OCF, 20.9% were not detected by HRCT. Patients with OCF had a worse initial visual acuity than those without OCF. There was no significant difference in final visual acuity after ETOCD. Published by the BMJ Publishing Group Limited. For permission to use (where not already granted under a licence) please go to http://www.bmj.com/company/products-services/rights-and-licensing/.

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Mesh:

Year:  2016        PMID: 27267448     DOI: 10.1136/bjophthalmol-2015-308043

Source DB:  PubMed          Journal:  Br J Ophthalmol        ISSN: 0007-1161            Impact factor:   4.638


  13 in total

1.  Combination analysis on the impact of the initial vision and surgical time for the prognosis of indirect traumatic optic neuropathy after endoscopic transnasal optic canal decompression.

Authors:  Wei Yan; Jingquan Lin; Wanglu Hu; Qun Wu; Jianmin Zhang
Journal:  Neurosurg Rev       Date:  2020-02-25       Impact factor: 3.042

Review 2.  Traumatic optic neuropathy: a review of current studies.

Authors:  Bin Chen; Hengsen Zhang; Qing Zhai; Huaipeng Li; Chunxia Wang; Yong Wang
Journal:  Neurosurg Rev       Date:  2022-01-16       Impact factor: 3.042

3.  Mitochondrial targeted therapy with elamipretide (MTP-131) as an adjunct to tumor necrosis factor inhibition for traumatic optic neuropathy in the acute setting.

Authors:  Brian C Tse; Galina Dvoriantchikova; Wensi Tao; Ryan A Gallo; John Y Lee; Dmitry Ivanov; David T Tse; Daniel Pelaez
Journal:  Exp Eye Res       Date:  2020-08-03       Impact factor: 3.467

Review 4.  An evolving perspective of endoscopic transnasal optic canal decompression for traumatic optic neuropathy in clinic.

Authors:  Jingquan Lin; Wanglu Hu; Qun Wu; Jianmin Zhang; Wei Yan
Journal:  Neurosurg Rev       Date:  2019-11-22       Impact factor: 3.042

5.  Prognostic factors of trans-ethmosphenoid optic canal decompression for indirect traumatic optic neuropathy.

Authors:  Ying-Jie Ma; Bo Yu; Yun-Hai Tu; Bang-Xun Mao; Xin-Yi Yu; Wen-Can Wu
Journal:  Int J Ophthalmol       Date:  2018-07-18       Impact factor: 1.779

6.  Reactive Fibroblasts in Response to Optic Nerve Crush Injury.

Authors:  Xiangxiang Liu; Yuan Liu; Huiyi Jin; Mohamed M Khodeiry; Weizheng Kong; Ningli Wang; Jae K Lee; Richard K Lee
Journal:  Mol Neurobiol       Date:  2020-11-12       Impact factor: 5.590

7.  Cold protection allows local cryotherapy in a clinical-relevant model of traumatic optic neuropathy.

Authors:  Mengyun Li; Bo Yu; Shengjian Lu; Lujie Zhang; Senmiao Zhu; Zhonghao Yu; Tian Xia; Yikui Zhang; Haoliang Huang; WenHao Jiang; Si Zhang; Lanfang Sun; Qian Ye; Jiaying Sun; Hui Zhu; Pingping Huang; Huifeng Hong; Shuaishuai Yu; Wenjie Li; Danni Ai; Jingfan Fan; Wentao Li; Hong Song; Lei Xu; Xiwen Chen; Tongke Chen; Meng Zhou; Jingxing Ou; Jian Yang; Wei Li; Yang Hu; Wencan Wu
Journal:  Elife       Date:  2022-03-30       Impact factor: 8.713

8.  Navigation-guided optic canal decompression for traumatic optic neuropathy: Two case reports.

Authors:  Kasturi Bhattacharjee; Samir Serasiya; Deepika Kapoor; Harsha Bhattacharjee
Journal:  Indian J Ophthalmol       Date:  2018-06       Impact factor: 1.848

9.  Tumor Necrosis Factor Inhibition in the Acute Management of Traumatic Optic Neuropathy.

Authors:  Brian C Tse; Galina Dvoriantchikova; Wensi Tao; Ryan A Gallo; John Y Lee; Steven Pappas; Roberta Brambilla; Dmitry Ivanov; David T Tse; Daniel Pelaez
Journal:  Invest Ophthalmol Vis Sci       Date:  2018-06-01       Impact factor: 4.799

Review 10.  Computer-assisted navigation in orbitofacial surgery.

Authors:  Priti Udhay; Kasturi Bhattacharjee; P Ananthnarayanan; Gangadhar Sundar
Journal:  Indian J Ophthalmol       Date:  2019-07       Impact factor: 1.848

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