SUSy Stereotactic Ultralight System

Experience Versatility and Innovation.

The next generation of frame-based stereotaxy. Carbon fibre reinforced PEEK. Under 2 kg. Precision in the ยต range. MRI and CT compatible.

< 2 kg

System Weight

0.1 mm

Vernier Precision

190 mm

Working Length

5 steps

Structured Workflow

Relevant application fields

SUSy - The Complete Stereotactic Workflow

A structured 5-step system covering every phase of stereotactic neurosurgery โ€” from fixation and localisation through review, arc positioning, and clinical application.

Benefits

Ultralight
Under 2 kg for Effortless Handling

The CF-PEEK arc’s weight of less than 2 kg significantly reduces physical burden on the patient and surgical team, and increases handling precision compared to heavier stainless steel systems.

MRI Workflow
Full MRI Compatibility

Non-metallic PEEK and ceramic ring enable intraoperative and immediate postoperative MRI without artefacts. Opens up MRI-guided stereotactic workflows that metal frames cannot support.

Precision
0.1 mm Vernier Accuracy

The Vernier scale enables setting accuracy of 0.1 mm essential for DBS targeting of sub-millimetre brain nuclei and other demanding stereotactic interventions.

Safety
Target Point Simulator

Pre-surgical verification of coordinates and trajectories on the skull โ€” before any instrument enters the patient. Identifies inaccurate instruments and validates patient-specific target points, reducing intraoperative risk.

Versatility
Full Spectrum Coverage

One system for DBS, sEEG, biopsy, brachytherapy, RF thermolesion, and catheter placement. Eliminates the need for multiple stereotactic platforms across a neurosurgery department.

Patient Comfort
Ceramic Open-Face Ring

The ceramic ring’s open face design maintains airway access for intubation and preserves the patient’s field of vision during awake procedures a significant clinical and patient comfort advantage.

Carbon Fibre Reinforced PEEK โ€” Developed for the Highest Demands

Originally developed for space travel applications. Diamond-milled. Combining the structural performance of carbon fibre with the chemical and biological compatibility of PEEK polymer.

Clinical Applications

Versatile in Use. Innovative in Application.

A large portfolio of accessories opens up countless possibilities and universal use in modern stereotaxy across functional, oncological, and diagnostic neurosurgery.

Deep Brain Stimulation (DBS)

Electrodes are implanted in specific brain areas to treat movement disorders with electrical impulses. Target structures are sub-millimetre, requiring the highest precision. The inomed MicroDrive (50 ยตm resolution) and MER system complete the DBS portfolio.

Stereo-EEG (sEEG)

Stereotactically placed depth electrodes record EEG signals for the diagnosis of drug-resistant epilepsy. Lateral trajectories are preferred; the SUSy’s AP mounting capability enables these trajectories unconditionally and safely โ€” even in the posterior cranial fossa.

Stereotactic Biopsy & Brachytherapy

When surgical resection is not safely feasible due to tumour location, stereotactic biopsy provides diagnosis with minimal access. The SUSy’s flexibility also supports stereotactic brachytherapy, with inomed offering a comprehensive range of biopsy instruments.

Every Component Engineered for Precision

The SUSy system is built around five key component groups each designed with rigorous clinical and engineering standards for stereotactic neurosurgery.

Step 1 - Fixation
Stereotactic Ring System

Choice of titanium (CT) or ceramic (MRI) ring. Both offer individual fixing post positioning and high stability. Positioning aid enables single-person mounting with adjustment screws.

Step 2 - Localisation
Localisation Set

Uncompromising design prevents any movement of the localisation plates. Universal for CT and MRI. Intuitive attachment to the stereotactic ring.

Step 3 - Review
Target Point Simulator

Displays the trajectory on the skull prior to surgical intervention โ€” offering maximum safety. Patient-specific target point validation. Autoclavable for repeated sterile use.

Step 4 - Stereotactic Arc
SUSy CF-PEEK Aiming Arc

The centrepiece of the SUSy system. Combines the strengths of previous inomed arcs with innovations based on clinical opinion. Lightweight, precise, intuitive, and MRI-compatible.

  • CF-PEEK diamond-milled, space-grade material
  • Under 2 kg total weight
  • 0.1 mm Vernier precision; 190 mm working length
  • Crosshairs for intraoperative position control
  • Drumstop easy surgical field access
  • Two-point fixation; maintains sterile barrier

Frequently Asked Questions

Answers for neurosurgeons, neurophysiologists, and procurement teams evaluating the SUSy Stereotactic Ultralight System for their practice.

What is the SUSy Stereotactic Ultralight System?

SUSy stands for Stereotactic Ultralight System. It is a frame-based stereotactic neurosurgery system by inomed Medizintechnik GmbH, distributed in India by VCSmed India. The arc is made of carbon fibre reinforced PEEK and weighs less than 2 kg. The full system covers five workflow stages: fixation, localisation, review, arc application, and intervention and supports DBS, sEEG, biopsy, and brachytherapy.

Yes. The SUSy system uses carbon fibre reinforced PEEK, a non-metallic material for the stereotactic arc, making it suitable for the MRI environment. The ceramic ring option provides absolute freedom from MRI artefacts, and CFRP head fixing posts are specifically developed for artefact-free MRI and CT scans. This makes the SUSy ideal for MRI-based stereotactic workflows.

The SUSy arc features a Vernier scale allowing setting accuracy of 0.1 mm described as precision in the micron range. The system uses Cartesian coordinates (a, b, c) and angles (d and e) for trajectory planning, with a working length of 190 mm and four possible mounting positions on the ring for maximum trajectory flexibility.

SUSy supports: Functional Neurosurgery (DBS electrode implantation, microelectrode recording, RF thermolesion, catheter placement); Stereotactic EEG/sEEG (epilepsy diagnostics with depth electrodes, including lateral and posterior fossa trajectories); and Oncological Neurosurgery (stereotactic biopsy and stereotactic brachytherapy).

The titanium ring is a closed ring, the standard choice for CT imaging, and offers maximum flexibility through different mounting positions and four head fixing post lengths. The ceramic ring has an open face design for airway access and patient field of vision during awake procedures, and uses ceramic material which guarantees absolute freedom from MRI artefacts. CFRP head fixing posts are required with the ceramic ring for artefact-free imaging.

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