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EPED Inc.

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About Company

EPED was founded in Kaohsiung, Taiwan in 2007 by the founder Dr. Douglas Huang, a nonconventional dentist that holds a PhD degree in Dental Science and an MBA degree. With a team of 50 people, EPED expanded its business throughout Taiwan, and then to Dongguan, China, and Kuala Lumpur, Malaysia. EPED offers not only educational training systems and clinical solutions to hospitals and clinics but also the most advanced techniques in the field of minimally invasive surgery.

With 34 patents in USA, China, Japan, and Taiwan, EPED possesses strategic advantages both domestically and internationally.

EPED is venturing into two business strategies: profit-sharing and sales of the machine. Under the profit-sharing strategy, EPED expects to lend the machine to target hospitals/government agencies and share the profits of every surgery operated. By selling the machine, EPED will receive the sales proceeds from the machine, the annual maintenance fee after the expiration of the 3-year warranty, and the recurring medical consumables revenue from hospitals.

Product Info

1. RETINA Stereotactic Surgery Navigation System

The RETINA is a stereotactic surgery navigation system for Neurosurgery, Craniofacial, E.N.T., Plastic Surgery, Oral and Maxillofacial Surgery and other types of minimally invasive surgical applications.

The RETINA combines intelligent medical technologies and services which can integrate digital medical imaging for better surgical accuracy. It is compatible with a vast range of instruments already used in the OR, which have become a perfect complement while working during surgery.

The RETINA also reduces unnecessary tissue injuries, to aid in minimally invasive surgeries, improve surgical quality, and reduce the risk of surgical complications, which provide overall better medical service for patients.

2. EPROB Robotic Arm and Navigation System for Brain Surger

The "EPROB Robotic Arm and Navigation System for Brain Surgery" is a three-dimensional positioning assistance system designed for neurosurgery. By combining intelligent medical imaging software with a precise robotic arm, this system enables minimally invasive surgery with smaller incisions and faster recovery. It enhances surgical accuracy, safety, and success rates, achieving the effectiveness of minimally invasive procedures.

This system integrates medical imaging (such as CT and MRI) of the surgical area, allowing surgical instruments to perform precise procedures like clot aspiration, tumor removal, and brain tissue slicing through small incisions. Using this system reduces the probability of human-induced movement errors and avoids contact with critical areas by following pre-planned surgical pathways, minimizing damage to normal tissues. Compared to traditional navigation-assisted surgeries, it also saves treatment time.

The system's software can analyze the probability of intracranial bleeding location and type, providing references for surgeons in preoperative planning of neurosurgical pathways.

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