3D Orthobiologic Solutions (3DOS) Logo - medical devices

3D Orthobiologic Solutions (3DOS)

medical devices
China's Best One-Stop Medical Equipment Provider
About

In dental and oral surgery, clinicians treating segmental bone defects seek to repair and regenerate bone. Bone defects in the jaw are usually associated with cancer, trauma, or, most commonly, the long-term effects of poor oral hygiene. Rebuilding this bone, in all cases, is critical to return the patients to natural aesthetics and to allow for the placement of dental implants, essential for preserving the rest of the mouth and allowing for normal eating and talking. Current options include autografts, allografts, and synthetic materials with rigid metal fixation. But these options are expensive, take extra operating room time, need multiple procedures, can have high pain morbidity, and may require revisions. We offer a solution that reduces cost by up to 50%; limits the need for autografts, allografts, and synthetic materials with rigid metal fixation; lowers operating room time by almost half; reduces the number of procedures; precisely matches the defect geometry, and lowers recovery duration to six months or less from as much as a year. 3DOS is developing a customizable, 3D-printed scaffold for repairing and regenerating bone in oral surgery. Biocompatible materials and structures are optimized to efficiently and maximally enhance bone regrowth while being compatible with existing, low-cost 3D printing machines. We provide an easy-to-use and biodegradable scaffold superior to existing products in speed, quality, and cost, providing a high throughput option for oral surgeons.

Technologies
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Keywords
medical device biomaterials orthopedics oral surgery 3d printing b2b custom 3d printed implants regenerative medicine medical equipment and supplies manufacturing biomaterial surface optimization medical devices bone repair customizable scaffolds biotechnology biodegradable polymers patient-specific regenerative devices cell culture scaffolds medical device patents tissue regeneration bone grafting technology medical device development biocompatible materials biodegradable materials healthcare technology medical device innovation high-speed bone regeneration biocompatible polymers clinical applications biomaterial patenting drug discovery models
Company Information
  • Employees 5
  • Founded 2019
Location

Virginia, Minnesota, United States

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