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Anatomical Landmarks for Transverse-Sigmoid Sinus Junction: A Cadaveric Study
Jonas Jurgaitis1, Šarūnas Jukna1, Gunaras Terbetas2
1Neurosurgery, Faculty of Medicine, Vilnius University, Vilnius, LTU.
Cureus
|May 30, 2024
Summary
This study identifies the top of the mastoid notch (TMN) as a reliable external landmark for locating the transverse-sigmoid sinus junction (TSSJ). Findings aid surgeons in identifying posterior fossa structures, especially without navigation systems.
Area of Science:
- Neurosurgery
- Anatomy
- Surgical Navigation
Background:
- Accurate identification of posterior cranial fossa structures is vital for minimizing surgical complications.
- Superficial landmarks are crucial for guiding surgical approaches to deep cranial anatomy.
- The transverse sinus (TS) and transverse-sigmoid sinus junction (TSSJ) are critical structures in the posterior cranial fossa.
Purpose of the Study:
- To establish the top of the mastoid notch (TMN) as a reliable external landmark for locating the TSSJ.
- To predict the anatomical course of the transverse sinus (TS) using superficial cranial landmarks.
- To provide anatomical data that can assist surgeons in planning posterior fossa procedures.
Main Methods:
- Anatomical dissections were performed on 10 adult cadaveric skulls (20 sides).
- A coordinate system was established using the Frankfurt line and a vertical line through the TMN.
- Intracranial drilling from the internal cranial surface was used to identify and map the TS and TSSJ.
Main Results:
- The inferomedial point of the TSSJ was located dorsally and cranially from the TMN.
- Distances of the TS edges from the Frankfurt horizontal plane were measured at specific points.
- The right transverse sinus diameter was significantly larger than the left, and the confluens sinuum was consistently located to the right of the inion.
Conclusions:
- The TMN serves as a reliable landmark for locating the TSSJ.
- The study provides a method for delineating the TS trajectory using external landmarks.
- These findings can aid surgeons in identifying intracranial structures in the posterior fossa, particularly when advanced navigation is unavailable.
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