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3D Mobile C-Arm for Intraoperative 2D And 3D Imaging

The MCI0423 3D Mobile C-Arm Imaging System combines real-time 2D fluoroscopy with 3D imaging in a mobile intraoperative platform. It features 30-second 3D acquisition, multi-planar image reconstruction, a large field of view, radiation dose management, and compatibility with navigation or robotic systems.
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  • MCI0423

  • MECANMED

Product Overview

 

A 3D mobile C-arm imaging system is designed to provide intraoperative imaging directly in the surgical environment. Compared with conventional 2D C-arms, 3D imaging provides more comprehensive spatial information. Clinicians can view anatomical structures from different directions instead of relying only on a single projection image.

 

The MCI0423 3D Mobile C-Arm Imaging System is designed for intraoperative 2D fluoroscopy and 3D imaging. Its mobile design supports positioning around the operating table, while acquired images can be reconstructed and reviewed directly through the imaging system.

 

Clinical Applications

 

The MCI0423 is suitable for surgical procedures that require real-time fluoroscopy, intraoperative 3D imaging, or multi-planar image review.

 

Clinical Application

Typical Use

Spinal Surgery

Provides intraoperative imaging of spinal anatomy and supports the assessment of implant positioning.

Orthopedic Surgery

Supports visualization of bone structures and implants during orthopedic procedures.

Thoracic & Pulmonary Procedures

Provides intraoperative 3D imaging for pulmonary and thoracic anatomical assessment.

Navigation-Assisted Surgery

3D image data can be transmitted to compatible surgical navigation or robotic systems for image-guided procedures.

 

Core Features

 

1. Integrated 2D & 3D Imaging

 

The MCI0423 brings real-time 2D fluoroscopy and 3D imaging onto one mobile platform. Surgical teams can use fluoroscopy for real-time guidance during procedures. When more detailed anatomical evaluation is needed, 3D imaging provides additional spatial views.

 

2. 30-Second 3D Image Acquisition

 

The system completes 3D image acquisition in approximately 30 seconds. Volumetric image data can therefore be obtained directly during the procedure.

 

3. Multi-Planar & 3D Image Visualization

 

Acquired 3D data can be displayed in axial, coronal, sagittal, and 3D reconstructed views. These views provide multiple perspectives of the same anatomical region for more detailed image review.



Cervical vertebrae shown in axial, sagittal, coronal, and 3D reconstructed views from the MCI0423 C-arm.



4. Large Field of View for Broader Anatomical Coverage

 

The large field of view provides broader anatomical coverage during 3D acquisition. This allows more anatomical structures to be included in the 3D image.



Sacroiliac joints and bilateral sacroiliac screw fixation displayed in a single 3D image from the MCI0423 C-arm.

Sacroiliac Joints

Multiple lumbar vertebrae displayed within a single 3D image using the large field of view of the MCI0423 C-arm.

Lumbar Vertebrae



5. Easy Positioning Around the Operating Table

 

The mobile C-arm is designed for flexible positioning around the operating table. Its mobile structure allows convenient adjustment during intraoperative imaging.

 

6. Comprehensive Radiation Dose Management

 

The MCI0423 combines multiple dose-management functions to help lower radiation exposure during clinical imaging. Its virtual collimator lets operators adjust and preview the field of view without X-ray exposure. At the same time, the DAP monitoring system records the dose for each examination.

 

Additional dose-control functions include Low Dose Mode, additional filtration, automatic dose parameter adjustment by body part, a removable grid for dose-sensitive patients, and intelligent pulse fluoroscopy. Together, these functions help reduce unnecessary radiation exposure during clinical imaging.

 

7. Integration with Navigation & Robotic Systems

 

Images can be transmitted to compatible surgical navigation or robotic systems. The acquired 3D image data can then be used for supported image-guided procedures.


Compatibility depends on the specific third-party navigation or robotic platform and should be confirmed before system configuration.



3D mobile C-arm integrated with surgical navigation and robotic systems for image-guided procedures.



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