Aert Medical Aert Medical

Hospital Use Neurosurgical Operation System Neurosurgery Medical Equipment

Customization: Available
Type: Neurosurgical Stereotactic System
Certification: CE

Product Description

Basic Specifications

ModelNeurosurgical Stereotactic System 16 (Excelim-04)
PositioningSub-Millimeter Precise Positioning
Intraoperative NavigationMR-DTI Available
Surgical AdaptabilityPuncture Biopsy, Cerebral Hemorrhage, Ventricular Drainage, Intracranial Tumors, Functional Area Lesions
OriginChina

Product Description

Excelim-04 Neurosurgical Stereotactic System
As a pioneer in digital medicine and computer-assisted surgery, the Excelim-04 is an advanced integrated platform designed to elevate neurosurgical precision, minimize invasiveness, and enhance clinical outcomes.

Merging cutting-edge optical positioning technology, AI-driven image processing, and multimodal data integration, this system empowers surgeons with real-time, 3D-guided navigation across a spectrum of complex neurosurgical procedures.

Clinical Applications

Neurosurgical Operation System
  • Frameless Puncture Biopsy: Precise sampling with instrument adapters aligning with navigation.
  • Brain Tumor Resection: Real-time monitoring of lesion boundaries and critical structures.
  • Cerebral Hemorrhage Drainage: Automatic volume calculation and optimal trajectory suggestion.
  • Endoscope Integration: Dynamic endoscopic footage fused with static navigation.
  • Functional Neurosurgery: MR-DTI mapping to preserve vital pathways.

Core Advantages

High-Accuracy Optical Positioning Sub-millimeter positional accuracy ensures real-time alignment of surgical instruments with pre-operative imaging.
Multimodal Image Fusion Integrates CT, MRI, DTI, MRA, fMRI, CTA, and DSA into a unified 3D visualization for clarified anatomical relationships.
Versatile Navigation Modes Supports multiple registration methods and navigation modes tailored from biopsy to complex tumor resections.
Intelligent 3D Reconstruction Transforms 2D images into intricate 3D models with automated lesion segmentation and volume calculation.