NeurosurgeryDr. Anil Kumar KansalBrain & Spine Surgery

Vice Chairman and HOD, Neuro Surgery and Neuro Spine, BLK-Max Super Speciality Hospital, New Delhi, India

Part 16 of 17 in Recent Advances in Neurosurgery

Stereotactic Brain Surgery for Deep-Seated Lesions

August 6, 2026

Stereotactic brain surgery uses precise three-dimensional coordinates to reach deep-seated brain lesions that would otherwise be difficult to access safely, and is used both for biopsy and for placing electrodes in conditions such as Parkinson's disease.

How frame-based stereotactic surgery works

In frame-based stereotactic surgery, a stereotactic frame is applied to the patient's head, and X, Y and Z coordinates are used to calculate the exact position of a deep-seated lesion. Small holes can then be made to reach these small, deep lesions precisely, and this technique is also used to place electrodes for conditions such as Parkinson's disease.

Frameless stereotactic surgery

An alternative approach, frameless stereotactic surgery, does not require a rigid frame on the head. Instead, a target is identified and planned using fiducial markers, and a biopsy or other procedure can be carried out with this frameless technique, offering similar targeting accuracy for deep-seated lesions with more patient comfort.

Why precision targeting matters

Reaching deep-seated brain lesions safely depends on accurate three-dimensional planning, whether frame-based or frameless. This precision is what allows neurosurgeons to biopsy or treat lesions that would otherwise carry a much higher risk if approached without stereotactic guidance, making stereotactic technique a foundational tool in modern neurosurgery.

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This article is based on a Jivo Masterclass session conducted by Dr. Anil Kumar Kansal, Vice Chairman and HOD, Neurosurgery and Neuro Spine Department, BLK-Max Super Speciality Hospital, New Delhi. The article has been summarised with the assistance of an AI tool from the original masterclass recording. Watch the full Masterclass recording

This guide is based on a live Jivo Masterclass — Dr. Anil Kumar Kansal taught doctors across Africa on July 13, 2025.

FROM THE LIVE Q&A

JI

Jivo Doctor Partner (name unclear from transcript)

What is the time needed for full recovery, and what are the complications, for trigeminal neuralgia treatment (microvascular decompression)?

AK

Dr. Anil Kumar Kansal

We keep the patient for three or four days; the pain is usually gone right after surgery. We continue medication for one month afterward and then stop it. We mobilise the patient to walk from the next day, and they generally do very well. We do a post-operative CT scan to check for any bleeding or collection, but results are close to perfect.

See all 6 questions from this masterclass →

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Frequently Asked Questions

What is the success rate of the surgery, what are the financial implications, and are the screws inserted in robotic spine surgery absorbable or will they need to be removed post-op?

The screws used in spine surgery are not absorbable — they remain in place lifelong. Financially, robotic-assisted spine surgery costs about $1,000 to $2,000 extra on top of a normal spine surgery of around $7,000, but the advantage is that screw misplacement drops to less than 1%, which is significant because a single misplaced screw can undermine the whole surgery — so while it adds cost, it also adds real value to the outcome.

What are the success rates of these surgical procedures generally, and what are the absolute contraindications to surgery?

Absolute contraindications include cardiac problems, any bleeding or coagulation disorders, or severe infection in the body. If a patient — for example with trigeminal neuralgia — is responding well to medication at a controllable dose, we will not operate; surgery is offered when the patient's pain is not relieved despite medical management.

What complications are expected from trigeminal neuralgia surgery (microvascular decompression)?

There can be anaesthesia-related complications. On the surgical side, we can get a haematoma in the cerebellum, sometimes bleeding, sometimes infection, or damage to the nerves — though our infection rate is very low. One patient developed chemical meningitis leading to hydrocephalus and needed a shunt, but the rest did very well. Initially some patients complained of partial hearing loss from traction on the eighth nerve; now we use minimal traction, so results are good and complications are minimal.

What is the recurrence rate of the tumours (in cases treated with microvascular decompression / related skull-base surgery)?

Only about 5%, not more than that. In our setup we have done more than 100 surgeries and have not had to redo any; some patients may have mild symptoms that can be managed with medicine or reassurance, but otherwise the results are good.

Are there any recent advances in the management of paediatric congenital hydrocephalus?

We do endoscopic third ventriculostomy in paediatric congenital hydrocephalus, but success is slightly lower at a young age — around 70-80%. A programmable shunt has a 95% success rate, but shunt revision and infection are other factors to weigh; endoscopic third ventriculostomy is a better choice when it succeeds, since the chances of recurrence problems afterward are very low.

What is stereotactic brain surgery used for?

It is used to reach deep-seated brain lesions precisely for biopsy or treatment, and to place electrodes for conditions such as Parkinson's disease.

What is the difference between frame-based and frameless stereotactic surgery?

Frame-based surgery applies a rigid frame to the head and calculates X, Y and Z coordinates to a lesion, while frameless stereotactic surgery uses fiducial markers without a frame, offering similar targeting accuracy with more patient comfort.

Why is precision targeting important in brain surgery?

Accurate three-dimensional planning is what allows neurosurgeons to biopsy or treat deep-seated lesions that would otherwise carry a much higher risk if approached without stereotactic guidance.

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