Commentary: Microsurgical and Tractographic Anatomical Study of Transtemporal-Transchoroidal Fissure Approaches to the Ambient Cistern

2020 ◽  
Author(s):  
Costanza M Zattra ◽  
Emanuele La Corte ◽  
Morgan Broggi
Author(s):  
Emrah Egemen ◽  
Pinar Celtikci ◽  
Yücel Dogruel ◽  
Fatih Yakar ◽  
Defne Sahinoglu ◽  
...  

Abstract BACKGROUND Approaching ambient cistern lesions is still a challenge because of deep location and related white matter tracts (WMTs) and neural structures. OBJECTIVE To investigate the white matter anatomy in the course of 3 types of transtemporal-transchoroidal fissure approaches (TTcFA) to ambient cistern by using fiber dissection technique with translumination and magnetic resonance imaging fiber tractography. METHODS Eight formalin-fixed cerebral hemispheres were dissected on surgical corridor from the temporal cortex to the ambient cistern by using Klingler's method. The trans-middle temporal gyrus, trans-inferior temporal sulcus (TITS), and trans-inferior temporal gyrus (TITG) approaches were evaluated. WMTs that were identified during dissection were then reconstructed on the Human Connectome Project 1021 individual template for validation. RESULTS The trans-middle gyrus approach interrupted the U fibers, arcuate fasciculus (AF), the ventral segment of inferior frontoocipital fasciculus (IFOF), the temporal extensions of the anterior commissure (AC) posterior crura, the tapetum (Tp) fibers, and the anterior loop of the optic radiation (OR). The TITS approach interrupted U fibers, inferior longitudinal fasciculus (ILF), IFOF, and OR. The TITG approach interrupted the U fibers, ILF, and OR. The middle longitudinal fasciculus, ILF, and uncinate fasciculus (UF) were not interrupted in the trans-middle gyrus approach and the AF, UF, AC, and Tp fibers were not interrupted in the TITS/gyrus approaches. CONCLUSION Surgical planning of the ambient cistern lesions requires detailed knowledge about WMTs. Fiber dissection and tractography techniques improve the orientation during surgery and may help decrease surgical complications.


2011 ◽  
Vol 115 (1) ◽  
pp. 171-178 ◽  
Author(s):  
Song-tao Qi ◽  
Jun Fan ◽  
Xi-an Zhang ◽  
Jun Pan

Object A precise understanding of the ambient cistern and its associated arachnoid membranes is helpful for accessing perimesencephalic lesions. However, few studies of the arachnoid membranes related to the ambient cistern have been published, and, additionally, some aspects of the ambient cistern also require further examination. The goal of this study was to reinvestigate and expound on the anatomical features of the cistern and membranes. Methods The ambient cisterns and its associated arachnoid membranes were examined in 20 adult cadaveric brains using an operative microscope. Results The perimesencephalic membrane is a set of inner arachnoid membranes surrounding the midbrain at the level of the tentorial incisura. It arises from the outer arachnoidal membranes covering the tentorial edge and the dorsum sellae and can be subdivided into anterior and posterior portions. The anterior membrane is actually the mesencephalic leaf of Liliequist membrane, which is divided into medial and lateral parts by the oculomotor nerve. The posterior membrane can be divided into horizontal and ascending parts. The ambient cistern is located above the perimesencephalic membrane and contains the anterior choroidal arteries, the posterior cerebral arteries, the basal vein, and sometimes the segments of the superior cerebellar arteries. It communicates with the carotid cistern, the interpeduncular cistern, the oculomotor cistern, the cerebellopontine and cerebellomesencephalic cistern, and the quadrigeminal cistern. Conclusions This study updates some information about the ambient cistern and its arachnoid membranes. The perimesencephalic membrane was identified and described in detail. The ambient cistern was verified to be a supratentorial cistern above the perimesencephalic membrane. The borders and contents of this cistern, as well as its relationship with adjacent cisterns, were also redefined.


2014 ◽  
Vol 75 (S 01) ◽  
Author(s):  
Robert Engle ◽  
Mark Toma ◽  
Trace Barrett ◽  
Maria Peris-Celda ◽  
Tyler Kenning ◽  
...  

2015 ◽  
Vol 76 (S 01) ◽  
Author(s):  
Ricardo Dolci ◽  
Ricardo Carrau ◽  
Lamia Buohliqah ◽  
Leo Filho ◽  
Mateo Zoli ◽  
...  

Skull Base ◽  
2007 ◽  
Vol 17 (S 2) ◽  
Author(s):  
Cassius Reis ◽  
Joseph Zabramski ◽  
Sam Safavi-Abassi ◽  
Pushpa Deshmukh ◽  
Robert Spetzler ◽  
...  
Keyword(s):  

Skull Base ◽  
2007 ◽  
Vol 17 (S 1) ◽  
Author(s):  
H. Kunst ◽  
J. Lavieille ◽  
A. Devèze ◽  
K. Graamans ◽  
J. Magnan
Keyword(s):  

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