Anatomic Study of Endoscopic Transnasal Approach to Petrous Apex

With the development of Neurosurgery technology, there has been a qualitative leap forward with the appearance of microanatomy, which makes the deep brain tumors which were hard to be achieved in the past, and effectively reduces the mortality of patients. Petrous apex is a cone-shaped part of the a...

Full description

Bibliographic Details
Main Authors: He Wenyuan, Qin Qingying, Wang Guxian
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/78/e3sconf_iseese2020_03016.pdf
id doaj-4e8b1770a1ef4928b4bae5feb5fda414
record_format Article
spelling doaj-4e8b1770a1ef4928b4bae5feb5fda4142021-04-02T20:46:50ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012180301610.1051/e3sconf/202021803016e3sconf_iseese2020_03016Anatomic Study of Endoscopic Transnasal Approach to Petrous ApexHe Wenyuan0Qin Qingying1Wang Guxian2QUJING MEDICAL COLLEGEQUJING MEDICAL COLLEGEQUJING MEDICAL COLLEGEWith the development of Neurosurgery technology, there has been a qualitative leap forward with the appearance of microanatomy, which makes the deep brain tumors which were hard to be achieved in the past, and effectively reduces the mortality of patients. Petrous apex is a cone-shaped part of the anteromedial part of the temporal bone, which is deep. It has been a challenging area for surgical anatomy for a long time. In this paper, fresh adult perfused cadaveric head specimens and dry adult cadaveric head specimens were taken as the experimental objects. The anterior wall of sphenoid sinus and the internal septum of sphenoid sinus were excised under neuroendoscope. The structures of the lateral wall of sphenoid sinus were identified and dissected. The lateral wall of sphenoid sinus and the bone of skull base were opened with micro drill, The meninges were exposed and cut open, and the related structures were dissected, observed and photographed. The experimental results show that it is relatively safe to operate in the range of less than 8mm, and the rock tip can be found accurately. The measurement of the bony structure of the skull base is helpful for the surgeon to judge the course of the internal carotid artery and its adjacent structure.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/78/e3sconf_iseese2020_03016.pdf
collection DOAJ
language English
format Article
sources DOAJ
author He Wenyuan
Qin Qingying
Wang Guxian
spellingShingle He Wenyuan
Qin Qingying
Wang Guxian
Anatomic Study of Endoscopic Transnasal Approach to Petrous Apex
E3S Web of Conferences
author_facet He Wenyuan
Qin Qingying
Wang Guxian
author_sort He Wenyuan
title Anatomic Study of Endoscopic Transnasal Approach to Petrous Apex
title_short Anatomic Study of Endoscopic Transnasal Approach to Petrous Apex
title_full Anatomic Study of Endoscopic Transnasal Approach to Petrous Apex
title_fullStr Anatomic Study of Endoscopic Transnasal Approach to Petrous Apex
title_full_unstemmed Anatomic Study of Endoscopic Transnasal Approach to Petrous Apex
title_sort anatomic study of endoscopic transnasal approach to petrous apex
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description With the development of Neurosurgery technology, there has been a qualitative leap forward with the appearance of microanatomy, which makes the deep brain tumors which were hard to be achieved in the past, and effectively reduces the mortality of patients. Petrous apex is a cone-shaped part of the anteromedial part of the temporal bone, which is deep. It has been a challenging area for surgical anatomy for a long time. In this paper, fresh adult perfused cadaveric head specimens and dry adult cadaveric head specimens were taken as the experimental objects. The anterior wall of sphenoid sinus and the internal septum of sphenoid sinus were excised under neuroendoscope. The structures of the lateral wall of sphenoid sinus were identified and dissected. The lateral wall of sphenoid sinus and the bone of skull base were opened with micro drill, The meninges were exposed and cut open, and the related structures were dissected, observed and photographed. The experimental results show that it is relatively safe to operate in the range of less than 8mm, and the rock tip can be found accurately. The measurement of the bony structure of the skull base is helpful for the surgeon to judge the course of the internal carotid artery and its adjacent structure.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/78/e3sconf_iseese2020_03016.pdf
work_keys_str_mv AT hewenyuan anatomicstudyofendoscopictransnasalapproachtopetrousapex
AT qinqingying anatomicstudyofendoscopictransnasalapproachtopetrousapex
AT wangguxian anatomicstudyofendoscopictransnasalapproachtopetrousapex
_version_ 1721546484577468416