Mochen Dental Recording System: Neurosurgery Success | 3DOVA

Mochen Dental Recording System LED-10 used for intracranial tumor removal surgery at Shenzhen Baoan People's Hospital.

Crossing Boundaries: How Shenzhen Baoan People’s Hospital Utilizes the Mochen LED-10 System in Intracranial Tumor Surgery

The Mochen Dental Recording System has officially crossed over from dentistry into high-stakes neurosurgery. At 3DOVA, we constantly look for top clinics nearby. Patients always look for institutions that invest in the latest digital intelligence. Recently, a remarkable milestone unfolded at Shenzhen Baoan People’s Hospital . The medical team successfully deployed this dental technology inside a major operating room.


The Challenge of Neurosurgery and the Mochen Dental Recording System

During an intracranial tumor removal, precision is everything. Surgeons must separate microscopic tumor margins from healthy brain tissue. Therefore, they demand exceptional visibility. Traditionally, hospitals had to purchase independent surgical lights ,expensive microscopes and and independent camera setups.

However, this setup sometimes created massive workflow clutter. To solve this issue, the hospital team turned to a digital dental solution. They deployed the mochen recording device. As a result, they proved that dental imaging translates effortlessly into complex surgical fields.

 Close-up of the Mochen Dental Recording System LED-10 featuring shadowless surgical light and high-magnification HD camera.
The integrated 3-in-1 design of the Mochen LED-10 eliminates the need for separate surgical lights, microscopes, and video cameras.

Why the Mochen LED-10 Succeeded in the Operating Room

The LED-10 Dental Recording system is widely celebrated in modern dental implants for giving clinicians microscope-level imaging without altering their standard habits. In the neurosurgical theater, these exact features delivered exceptional results:

  • Shadowless Medical Illumination: The LED-10 light system outputs consistent, bright, shadowless illumination directly onto the surgical site. This enabled the neurosurgeons to clearly see fine tissue structures and subtle color changes.
  • High-Magnification Optical Zoom: With high-resolution imaging sensors and up to 30X optical zoom capabilities, the system provided macro-lens level tracking. This allowed the surgeons to examine tissue boundaries closely .
  • Zero-Latency Real-Time Streaming: Equipped with an HD-SDI and HDMI output, the device cast a crystal-clear, real-time video feed onto multiple auxiliary surgical monitors. This allowed the primary operator, assistants, and students to coordinate simultaneously.
  • Integrated Streaming and Documentation: By utilizing its built-in RTSP network streaming media protocols, the surgical team could seamlessly stream, record, and securely save the procedure for quality assurance, training, and remote medical consultation.


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