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OPERATES
B1ONE
The most powerful of the smallest.
B1ONE is the smallest and most resistant two-stage implant ever created* and features the first intracoronal connection in the world composed of a torx anti-rotational system combined with a conometry for screw-retained and cemented prostheses.
*In accordance with the manufacturer's clinical indications.
Concave cervical neck
Versatile connection
Spirals drawn by the morphology of the bone
Patented connection and coils
Strengths
Minimally invasive
More space for tissue thanks to the minimally invasive neck
Prosthetic performance
The best for precision and prosthetic stability
Bone deficiency
Simplifies the treatment of bone atrophy
The first implant designed from bone
B1ONE is the first implant designed not only according to the experience of clinicians, researchers, and engineers, but also directly from the tissue that will accommodate it: the bone.
Concave cervical neck
Versatile connection
Spirals drawn by the morphology of the bone
Patented connection and coils
Minimum crestal bulk for preservation of bone tissue
The concave neck is not interrupted by the junction with the abutment: it remains at a higher level and promotes optimal stabilization of the soft tissues, determining the formation of a peri-implant ring that acts as a seal with respect to the underlying tissues.
The result of clinical experience and research, B1ONE features three thread morphologies suitable for different bone types: the concave neck and the prosthetic connection allow for minimal invasiveness, promoting the stability of the peri-implant tissues.
— Dr. Salvatore Longoni & Dr. Matteo SartoriThey collaborated on the creation of B1ONE
The advantages of a monophasic, combined with the versatility of a biphasic.
B1ONE is the result of research and attention to the latest clinical and biological concepts in implantology, combined with a careful consideration of prosthetic issues. The areas considered critical in implant-prosthetic rehabilitation have become the strengths of the B1ONE system.