Surgify Halo™

A new bone cutting technology with built in safety mechanism for effective, stable and precise bone procedures

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Confidence:
Assured.

Discover Surgify Halo™ – a new rotary surgical burr incorporating the HaloSense™ technology.

Surgify Halo™ is designed to support integration into existing surgical workflows and compatibility with high-speed drill systems commonly used in neurosurgical, spinal, ENT, and general surgical procedures.

The device incorporates a self-centering dual-position ring mechanism located in the burr head.

  • In one position, the ring retracts to allow engagement with hard tissue.
  • In another, it can extend beyond the cutting edges to shield the tip from engaging with soft or elastic tissue*

This engineered design supports controlled bone cutting and is intended to help minimize chattering during use*

*Disclaimer: Testing performed under laboratory conditions. Clinical performance has not been established. Data on file.

Safety, Precision, and Speed

Surgify Halo™ incorporates a self-centering ring mechanism in the burr head. The ring can move between two positions:

  • In one position, it protrudes to prevent the cutting edges from engaging with the material.
  • In another, it extends beyond the cutting edge to shield it, helping minimize accidental contact with surrounding tissue*

Safety
The HaloSense™ mechanism includes this dual-position, pressure-controlled ring designed to support controlled operation. The ring mechanism can limit engagement of the cutting edges and can help minimize accidental contact with soft tissues.Surgify Halo™ provides enhanced protection against incidental soft tissue damage in surgical procedures⁽¹⁾ – allowing you great flexibility in bone resections close to vital soft tissues.

Precision
The Surgify Halo™ is designed with a self-centering ring mechanism that helps minimize chattering during use. In surgeon testing, the device has demonstrated smoother cutting performance compared with conventional burr designs.Surgify Halo™ has shown superior levels of control and precision when compared to conventional bone drills⁽²⁾ – providing the highest level of accuracy and stability during bone removal and shaping.

Speed
The effective bone-cutting properties of Surgify HaloTM combined with the HaloSense safety mechanism provides confidence in performing fast and controlled bone resection.

*Disclaimer: Testing performed under laboratory conditions. Clinical performance has not been established. Data on file.

Surgify Halo™ and the HaloSense technology

The pressure-controlled tip of Surgify Halo™ is designed to support controlled operation in combination with the HaloSense™ mechanism.

The HaloSense™ mechanism consists of a pressure-controlled ring, slightly larger in diameter than the drill tip, that changes position during use.

When contacting hard tissue (bone), the ring retracts, allowing Surgify Halo™ to cut and shape bone.

When contacting soft or elastic tissue, the ring protrudes to a level higher than the cutting edges and shield the drill tip.


Please consult the instructions for use (IFU) carefully prior to clinical use.

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Surgify Halo™ is an FDA-cleared (510(k)) Class II medical device in the United States and a CE-marked medical device in the EU (Notified Body no. 0537).
Patent protected: EP3525691, US 11324519, JP2019531140A, ZL 201780063112.3, CA3038233A1.

Latest News

Testimonials

Juha E. Jääskeläinen

Professor, Chairman of Neurosurgery, NeuroCenter, Kuopio University Hospital

"In elderly patients the intracranian dura, often tightly attached to the overlaying skull bone, requires meticulous dissection not to be torn during craniotomy."

Mika Niemelä

Professor, Head of Neurosurgery, Helsinki University Central Hospital

"Surgify’s device appears to push the soft tissue out of the way. This is a major advantage, as a typical surgical drill that spins tens of thousands of times in a minute can be very dangerous if it touches soft tissue.
I see a lot of promise in Surgify!"

John Koivukangas

Professor Emeritus, Neurosurgeon, Oulu University Hospital

"Preventing dural tears rather than fixing them afterwards would be much more helpful, efficient and cost saving, and of course helps the patient recover."

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