On the precise battlefield of minimally invasive surgery, every second of image synchronization and every instance of energy control directly impact the treatment outcome and patient safety. In traditional ablation procedures, doctors often have to repeatedly switch between imaging and ablation equipment, coordinating data - this not only slows down the surgical pace but also inadvertently increases the complexity and risk of the procedure.
1. How to make treatment smoother, imaging more intelligent, and surgery more reassuring?
A well-known medical device manufacturer in China has given a clear answer: to integrate image navigation and ablation therapy to create a new generation of intelligent ablation machine.

2. Why do we need an "ablation machine"?
Under traditional split-type equipment, surgery faces numerous practical challenges:
①. Complex equipment coordination: The imaging and ablation systems are independent, with separate operation interfaces, affecting the continuity of surgery;
②. Data desynchronization: There is a delay between image guidance and treatment execution, affecting the positioning accuracy;
③. Large space occupation: Multiple devices and numerous cables occupy space in the operating room, affecting the flow of medical staff;
④. Difficulty in system integration: The interfaces and protocols of devices from different brands are inconsistent, making upgrades and expansions challenging.
The integrated design is precisely aimed at breaking through these bottlenecks and achieving:
①. Real-time imaging guidance, with the treatment process being visible and controllable;
②. The operation interface is unified, enhancing surgical efficiency and providing a user-friendly experience;
③. The system is highly integrated, reducing equipment complexity and maintenance costs.
3. Scheme selection: Seeking the true "power of integration"
①. In the process of advancing the research and development of all-in-one machines, the manufacturer has set stringent requirements for the core control system:
②. It must be highly integrated to reduce internal connections and external interfaces;
③. It possesses real-time computing capabilities, enabling simultaneous image processing and treatment control;
④. Ensure long-term stable operation and adapt to prolonged continuous surgery;
⑤. Retain expansion compatibility and support multiple types of imaging probes and ablation devices.
Among various hardware solutions, they ultimately chose the ECM-C132 core module motherboard as the "smart hub" of the entire machine.
4. Integrated integration: How does ECM-C132 achieve "precision without boundaries"?
Highly integrated design
The core module integrates multiple interfaces and data processing units, significantly simplifying internal wiring and achieving unified scheduling and real-time synchronization of imaging and treatment data.
Strong and stable computing power support
Equipped with a high-performance processor, it easily handles real-time image analysis, path planning, and energy control during surgery, ensuring no system response delay and precise treatment execution.
Medical-grade reliability guarantee
Industrial-grade hardware design and rigorous testing processes ensure the equipment can operate continuously and stably during prolonged surgeries, significantly reducing the risk of malfunctions.
Flexible and scalable architecture
The modular design supports multiple imaging interfaces and treatment protocols, facilitating future functional upgrades and equipment iterations.
5. Implementation effectiveness: From "separate collaboration" to "seamless integration"
The ablation generator equipped with ECM-C132 has demonstrated significant advantages in practical clinical settings:
The surgical process is streamlined, allowing doctors to complete image viewing and ablation operations on the same interface;
②. Improved treatment accuracy, with real-time imaging guidance making the ablation range more controllable and safer;
③. The system is stable and reliable, ensuring uninterrupted long-duration surgeries and efficient operation of the operating room;
④. Deployment is flexible and convenient, with an integrated design that reduces installation and debugging time, enabling rapid clinical deployment.
6. Smart healthcare, integrated into every detail
The "Ablation Integrated System" represents not only the integration of equipment, but also the fusion of clinical thinking and engineering wisdom. It embodies the core direction of modern medical equipment development: being clinically-oriented, designing the system architecture based on real surgical scenarios; achieving synergy between software and hardware, maximizing the expression of software functions through hardware empowerment; providing empowerment throughout the entire process, from research and development to implementation, offering sustainable technical support and upgrade paths.
In today's era where medical equipment is moving towards intelligence, integration, and humanization, the deep integration of every technology is empowering doctors and providing support for patients. Zhi Rui Tong is willing to join hands with more medical equipment partners, using more advanced technology and higher-quality products to provide stronger support for clinical diagnosis and treatment, allowing the light of smart healthcare to illuminate the path to recovery for more patients.