TY - JOUR
T1 - High resolution computed tomography atlas of the porcine temporal bone and skull base
T2 - Anatomical correlates for traumatic brain injury research
AU - Knoll, Renata M.
AU - Reinshagen, Katherine L.
AU - Barber, Samuel R.
AU - Ghanad, Iman
AU - Swanson, Randel
AU - Smith, Douglas H.
AU - Abdullah, Kalil G.
AU - Jung, David H.
AU - Remenschneider, Aaron K.
AU - Kozin, Elliott D.
N1 - Publisher Copyright:
© 2019 Mary Ann Liebert, Inc., publishers.
PY - 2019/4
Y1 - 2019/4
N2 - Brain injuries are a significant cause of morbidity and mortality worldwide. Auditory and vestibular dysfunction may occur following trauma to the temporal bone (TB), including the lateral skull base. The porcine model is a commonly used large animal model for investigating brain injury. Reports detailing porcine TB anatomy based on high resolution computed tomography (HRCT) imaging, however, are limited. Herein, we employ HRCT to evaluate and describe the bony anatomy of the porcine TB and lateral skull base. High-resolution multi-detector and cone beam CT were used to image porcine TBs (n = 16). TBs were analyzed for major anatomical structures and compared to human species. Porcine temporal bone anatomy was readily identifiable by HRCT. Although some variability exists, the ossicular chain, vestibule, cochlea, course of the facial nerve, and skull base are similar to those of humans. Major differences included position of the external auditory canal and mastoid, as well as presence of the petrous carotid canal. Study findings may serve as an atlas to evaluate the porcine middle and inner ear, as well as lateral skull base injuries for future porcine brain injury models or other studies that require CT-based analysis.
AB - Brain injuries are a significant cause of morbidity and mortality worldwide. Auditory and vestibular dysfunction may occur following trauma to the temporal bone (TB), including the lateral skull base. The porcine model is a commonly used large animal model for investigating brain injury. Reports detailing porcine TB anatomy based on high resolution computed tomography (HRCT) imaging, however, are limited. Herein, we employ HRCT to evaluate and describe the bony anatomy of the porcine TB and lateral skull base. High-resolution multi-detector and cone beam CT were used to image porcine TBs (n = 16). TBs were analyzed for major anatomical structures and compared to human species. Porcine temporal bone anatomy was readily identifiable by HRCT. Although some variability exists, the ossicular chain, vestibule, cochlea, course of the facial nerve, and skull base are similar to those of humans. Major differences included position of the external auditory canal and mastoid, as well as presence of the petrous carotid canal. Study findings may serve as an atlas to evaluate the porcine middle and inner ear, as well as lateral skull base injuries for future porcine brain injury models or other studies that require CT-based analysis.
KW - CT
KW - brain injury
KW - cone beam CT
KW - porcine TB
KW - traumatic brain injury
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U2 - 10.1089/neu.2018.5808
DO - 10.1089/neu.2018.5808
M3 - Article
C2 - 29969939
AN - SCOPUS:85063255819
SN - 0897-7151
VL - 36
SP - 1029
EP - 1039
JO - Central Nervous System Trauma
JF - Central Nervous System Trauma
IS - 7
ER -