A bone cement composition for the creation of a MRI-signaling

Bone cements based on polymethylmethacrylate (PMMA) are mostly used for the anchorage of artificial joints, as bone substitutes at backbone diseases or after tumour surgeries, for the encouragement of implants (e.g. plates, nails) or as placeholder in infected joints. Most bone cements are produced by the combination of a 2-phase-system, containing a powder (PMMA) and a fluid (MMA). <br><br>

Especially during the insertion of bone cement into fractured vertebral bodies or cleared tumour caves (vertebroplasty) it is necessary to follow the operation process by MR imaging to ensure the right position of the bone cement (“open MRI”). Therefore the researchers developed bone cement with paramagnetic properties to induce a MRT detectable signal. They added sodium chloride solution containing a contrast agent to the MMA and proceeded as done by common bone cement production. In this way they achieved modified bone cement that can induce a MR signal by keeping all conventional properties. <br><br> <b>Benefits:</b><br> <ul> <li>Low technical risk</li> <li>Growing market for implants</li> <li>MRT-controlled surgeries are possible</li> <li>Overcomes the disadvantage of common bone cement not to generate a signal detectable by MR imaging</li> </ul>

Further Information: PDF

ipal GmbH
Phone: +49 (0)30/2125-4820

Contact
Dr. Dirk Dantz

Media Contact

info@technologieallianz.de TechnologieAllianz e.V.

All latest news from the category: Technology Offerings

Back to home

Comments (0)

Write a comment

Newest articles

A universal framework for spatial biology

SpatialData is a freely accessible tool to unify and integrate data from different omics technologies accounting for spatial information, which can provide holistic insights into health and disease. Biological processes…

How complex biological processes arise

A $20 million grant from the U.S. National Science Foundation (NSF) will support the establishment and operation of the National Synthesis Center for Emergence in the Molecular and Cellular Sciences (NCEMS) at…

Airborne single-photon lidar system achieves high-resolution 3D imaging

Compact, low-power system opens doors for photon-efficient drone and satellite-based environmental monitoring and mapping. Researchers have developed a compact and lightweight single-photon airborne lidar system that can acquire high-resolution 3D…

Partners & Sponsors