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Managing the Anomalous Vertebral Artery in C1-C2 Stabilization for Congenital Atlantoaxial Instability
Roopesh Kumar Vadivel Rathakrishnan1, Sunil Kapilavayi Raghavendra1
1Institute of Neurosciences, Sri Ramaswamy Memorial Institutes for Medical Sciences, Chennai, Tamil Nadu, India.
Insights
This study presents a surgical technique for managing vertebral artery anomalies in congenital atlantoaxial instability, ensuring artery safety during stabilization procedures. The method prioritizes preventing stroke by protecting the vertebral artery during surgery.
Area of Science:
- Neurosurgery
- Orthopedic Surgery
- Vascular Surgery
Background:
- Congenital atlantoaxial instability presents challenges due to variable vertebral artery anatomy.
- Protecting the vertebral artery is crucial during atlantoaxial stabilization to prevent stroke.
Purpose of the Study:
- To demonstrate a surgical technique for handling anomalous vertebral arteries in congenital atlantoaxial instability.
- To ensure vertebral artery patency and safety during atlantoaxial joint stabilization.
Main Methods:
- Preoperative computed tomography (CT) angiography to map vertebral artery course.
- Surgical mobilization of the vertebral artery to prevent compression during Goel-Harms stabilization.
- Deroofing bony ridges of the axis to prevent post-instrumentation artery compression.
Main Results:
- Successful demonstration of a technique to manage medially coursing vertebral arteries.
- Safe atlantoaxial stabilization achieved with preservation of vertebral artery patency.
- Prevention of vertebral artery compression through meticulous surgical technique.
Conclusions:
- The described technique effectively addresses vertebral artery anomalies during atlantoaxial instability surgery.
- Careful identification and mobilization of the vertebral artery are essential for safe surgical outcomes.
- Minimally invasive, vision-guided approaches are preferred over blind procedures.
Abstract:
Objectives This study aimed to demonstrate the technique of handling the anomalous vertebral artery in congenital atlantoaxial instability. The vertebral artery course can be variable in congenital atlantoaxial instability, especially if there is assimilation of atlas. The surgical technique to stabilize the atlantoaxial joint should ensure the patency and safety of the vertebral artery and prevents devastating stroke. Computed tomography (CT) angiography of the vertebral artery is mandatory in planning the surgical strategies. The vertebral artery can be injured during dissection of soft tissues between atlas and axis and can be compromised during distraction and instrumentation. The vertebral artery needs to be mobilized based on the tortuosity in the course during instrumentation and prevents compression of the artery against bony structures or screw heads. The vertebral artery has to be identified earlier in the course of dissection and should protect it. It is also imperative to choose the surgical approach that can be performed under vision using operative microscope rather than adapting blind procedures like transarticular screw. Here, in our present case, we demonstrate the technique of mobilizing the vertebral artery which was coursing medially preventing the access for the instrumentation and perform stabilization of atlantoaxial joint using Goel-Harms technique, and prevent its compression after placement of screw by deroofing the bony ridges of axis ( Figs. 1 and 2 ). We also emphasize the various technical nuances during the stabilization with distraction of joint space of atlas and axis. The link to the video can be found at: https://youtu.be/pgURpF_jACc .
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