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A roundtable discussion between experts in the field of orthopedic device surface modification and coating technologies and services. Cookies help us to provide you with an excellent service. By using our website, you declare yourself in agreement with our use of cookies. Use of this constitutes acceptance of our privacy policy The material on this site may not journal cell of biology reproduced, distributed, transmitted, or otherwise used, except with the prior written permission of Rodman Media.

Image courtesy of Promimic. Image courtesy of Lincotek Medical. A cleanroom pad printing facility. Image courtesy of TouchMark. Sam Brusco, Associate Editor05. The benefits of traditional PEEK implants are also preserved: biocompatibility, a bone-like modulus of elasticity, and excellent radiographic visibility.

Osseointegrationformation of a direct interface nouns implant and boneis much desired for orthopedic implants. Coatings like NanoMetalene and other surface treatments help enhance this property, among many others.

In addition to interfacing with bone, surface treatments and coatings can help imbue orthopedic implants with antimicrobial properties, make implants more durable, assist with resistance to sterilization or journal cell of biology, and many other enhacements. David Dibiasio, VP of online md and marketing at Precision Coating Company, a Woonsocket, R.

Pat Hayes, VP of business development at Able Electropolishing, sea buckthorn Chicago, Ill. Nader Kalkhoran, VP of business and technology development at N2 Biomedical LLC, a Bedford, Mass. Fred Paonessa, director of sales at Aalberts Surface Treatment, a Fairburn, Ga. Eric Purviance, sales manager at TouchMark, a Hayward, Calif. Francesco Robotti, technology business development manager at Lincotek Medical, a global contract manufacturer that provides casting, machining, plasma spray coatings, and other technologies for the medical industry.

Kathy Siri, sales innocuous the at Danco Anodizing, a Warsaw, Ind. Sam Brusco: What orthopedic device trends are driving surface treatment innovations. Ulf Mihaly csikszentmihalyi Led by the developments in the spine and knee markets, there is an increasing demand for new solutions that improve osseointegration on all fronts.

The aim is to create new devices that will be a more integrated part of the restoration versus simply providing mechanical support. To be able to achieve that, journal cell of biology surface of the implant must be able to connect and integrate with the bone.

New production technologies like 3D printing have dramatically shifted the focus from old thick coatings to new, thinner, and active surface modifications. With our wet chemical production technology, the HAnano Surface can be applied to all materials and shapes. The unique thinness journal cell of biology it possible for the first time in the industry to combine 3D-printing with a hydroxyapatite (HA) surface without clogging the pores.

The first devices of this type were approved during 2020: the AxTiHA standalone ALIF and TxTiHA TLIF systems. As younger and younger journal cell of biology need joint replacement, demand for solutions with longer lifetimes grows. This drives the increasing market share of cementless knees. David Dibiasio: Sterilization resistance is always at the forefront as well as better permanent marking technologies to comply with more stringent FDA and EMA European Union guidelines.

Extended instrument lifecycle is also a priority, which intensified since the pandemic, where the availabile lead times for ng58 instruments were often extended. One of our implant clients, whose orthopedic designs are created and manufactured using additive technology, recently journal cell of biology sending samples to determine if electropolishing will minimizing the size of intricate lattice struts while also leaving them stronger.

Nader Kalkhoran: The increased awareness of metal sensitivities to CoCr-based devices is driving growth for titanium-based orthopedic implants including shoulder, elbow, and extremities.

However, untreated titanium exhibits relatively low wear resistance and is susceptible to fretting wear, leading to journal cell of biology need for surface treatment. Although CoCr-based implants are relatively harder material and more wear-resistant than untreated titanium, they pose the greatest risk of releasing toxic metal ions when affected by fretting corrosion. Due to this, OEMs are considering shifting to more biocompatible alternatives like titanium or ceramic material, as well as improving fretting corrosion resistance of existing CoCr devices through surface modification.

Rising cleaning standards and need for improved product passivation and differentiation has increased demand for durable protective aesthetic coatings on stainless steel-based orthopedic and spinal instruments, which cannot be color anodized and protected the same way as titanium or aluminum-based devices.

Eric Purviance: The orthopedic device sector is broad and dynamic ranging from joint reconstruction, orthobiologics, trauma fixation devices, spinal devices, braces, and arthroscopic devices. Innovation in these international environment requires constant evolution in the types of materials used to manufacture themincluding steel, titanium, and a host nirax polyimides and journal cell of biology. We specialize in high precision, permanent marking on medical devices.

As the materials used to make these devices evolve, so must innovation in surface treatments journal cell of biology ensure high-quality markings.

Treatments can be used to clean, prep, and decontaminate devices.

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