We offer evidence-based solutions for different concepts and requirements.

What we do
We combine strategy, design, and technology into a framework. That means actionable plans and teams equipped to deliver.
Conelog
Prosthetic excellence
CONELOG PROGRESSIVE-LINE implants facilitate the implementation of modern treatment concepts such as immediate restorations or immediate loading. The apical macro conical design of the CONELOG PROGRESSIVE-LINE implant, with extended flank height and many other features, facilitates the achievement of high primary stability – regardless of bone quality.

The neck thread provides additional support in cases of limited bone height, while the apical thread is ideal for immediate loading. The CONELOG PROGRESSIVE-LINE thus expands the therapeutic treatment options in low-density bone and post-extraction sockets.
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Benefits
Minimal movement and superior positional stability compared to other tapered connections
Integrated platform switching
Accurate fingerprint capture without vertical offset, "vertical matching function"
Extended range of indications with 7 mm CONELOG implant and small diameter implants (3.3 mm)
High precision conical connection
CONELOG PROGRESSIVE-LINE implants were developed to facilitate immediate treatment concepts from implant placement to restoration and to provide confidence in all bone types.

The deep conical connection with integrated platform switching provides superior positional stability for precise abutment placement.
Camlog
iSy® - two concepts for efficient treatment
The iSy Implant System showcases its features in a number of situations. Designed for maximum efficiency, it covers a broad range of indications. iSy Implants are slightly conical, self-tapping screw implants. They enable easy insertion through self-centering and achieve solid primary stability, while the proven Promote surface ensures rapid osseointegration and long-term stable bone apposition.

The surgical procedure for the iSy Implant System is highly efficient with its lean drilling protocol and single patient form drill. The new, snap-in insertion post now also simplifies submerged healing. This makes iSy the ideal second system - regardless of the user's preference regarding the healing method.
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iSy Implant with pre-mounted implant base
For transgingival healing, iSy is easy to use and time-saving as iSy comes with everything you need. Next to the implants with pre-mounted implant base, the sets contain a single-patient form drill, a healing cap, and multifunctional caps. Both the healing cap as well as the multifunctional cap and the temporary restoration are clicked into place directly onto the implant base in a rotation-proof manner.
New: iSy Implant, snap-in, with snap-in insertion post
Submerged healing is indispensable in some clinical situations. With a snap-in insertion post, a titanium cover screw and a single-patient form drill in one package, iSy remains true to its concept for submerged healing in terms of efficiency. Thanks to the snap-in insertion post, there is also no need to loosen a screw following implant insertion.
Intra-Lock
A unique combination of features
Fusion implants by Intra-Lock offer a unique combination of features that have been carefully designed to deliver successful dental implant treatment. The macro-scale form of the implant is designed for stability with Blossom cutting flutes and aggressive buttress threads. With the Ossean nano-scale surface, the biological function of the implant is to promote tissue attachment for long term performance and stability.
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Redefined Form
The Blossom cutting design allows for Intra-Lock implants to continually cut through bone with efficiency and minimal force. This minimizes trauma to the tissue, and evenly distributes the cutting force along the full body of the implant. Learn more about Blossom Self-tapping Technology.
Biological Function
The bio-active structure of the Ossean surface is developed by impregnating calcium phosphate into the implant surface, developing a fractal structure that mirrors its design at all levels of magnification. The resulting surface can facilitate fibril attachment, platelet deposition and osteoblast development.  These functions can favorably alter the genetic expression of localized cells and induce faster healing of the implants.