👨🎓 A valuable read for anyone working in [Micro Citation Topics]: The Influence of the Steam Sterilization Process on Selected Properties of Polymer Samples Produced in MEX and JMT Processes. 📝The study showed that steam sterilization temperature affected the flexural strength and surface roughness of medical polymer materials (PEEK by MEX and MED610 by JMT). 🔗 Link: https://lnkd.in/g4XDPQtW #OpenAccess #MaterialsScience #3Dprinting #additivemanufacturing
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In high-content screening, even the best imaging plate cannot compensate for cells that fail to attach, grow, or behave physiologically. Surface chemistry is therefore essential for obtaining consistent, biologically relevant HCS results. ✅ Standard cell lines generally thrive on conventional tissue-culture–treated surfaces, ensuring reliable attachment and growth. ✅ In contrast, sensitive or advanced models such as neurons or hepatocytes benefit from biologically coated surfaces that mimic extracellular-matrix signals to enhance function and data quality. ✅ For 3D cultures like spheroids and organoids, ultra-low attachment surfaces are essential to minimize adhesion and support stable, uniform 3D structures. The attached overview illustrates how different surface coatings influence cell attachment behavior. 💡 Because in HCS, surface choice is not a technical detail. It is a key factor for biological performance. Download your free checklist and learn how to improve your imaging in HCS: https://lnkd.in/eQ8WMM4z #BioScience #HCS #Coating #GreinerBioOne
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Stop cutting mechanical retention into your flexible partials. 🛑 For decades, making flexible RPDs meant relying on undercuts because conventional materials just won’t chemically bond. The Rodin printable resin system changes the game. Because Titan teeth, the flexible BioArch base, and N₂-Free glaze share the same base polymer, a single post-cure fuses them into a true, continuous monolith. No mechanical retention required. Join Minh Tran, RDT, for a live, one-hour webinar as he walks through the complete digital RPD workflow and demonstrates “the 20-Minute Finish” live! What you'll learn: True Chemical Fusion: Eliminating mechanical shortcuts for stronger RPDs. The Monolithic Bond: Why preserving the oxygen-inhibited layer is the secret to strength. The 20-Minute Finish: Live bonding, Palette 2.0 characterization, and glazing in a single pass. ⏱️ Ready to upgrade your workflow? 👉 Click the link in our bio to register! #DigitalDentistry #DentalLab #RPD #RodinResin #DentalTechnician #DentalWebinar
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Proud to present our latest publication Phase-pure MAPbBr3 thin films via room-temperature aerosol deposition In our latest study, we demonstrate that Powder Aerosol Deposition (PAD) enables the fabrication of phase-pure MAPbBr₃ films with thicknesses reaching several tens of micrometers - surpassing the limits of conventional solution processing while avoiding cracking and material degradation. 🔹 Preserved bandgap (~2.3 eV) and crystal structure 🔹 Nanocrystalline films with low microstrain 🔹 First systematic study of ionic transport in PAD manufactured perovskite films These results provide new insight into ion migration and interfacial polarization in halide perovskites. This work originates from another great collaboration with Anna Köhler’s group (Optoelectronics of Soft Matter) in the framework of the "DFG CRC1585 MultiTrans: Structured functional materials for multiple transport in nanoscale confinements" Tianshan Xu, Markus Griesbach, Till Scholz, Daniel Paulus, Martin Hämmerle, Anna Köhler, and Ralf Moos #PAD #PowderAerosolDeposition #MateriasScience #ThinFilms #Perovskite ℹ️ https://lnkd.in/exfnPvhc
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A sterilization change can become a catheter redesign. As more programs move away from EtO, many teams are learning that e-beam and gamma are not simple drop-in replacements. Radiation can change polymer behavior, bonding, flexibility, and long-term performance—sometimes only after shelf aging. Sterilization isn't just a manufacturing decision. It's a material and design decision. At DynaFlex, we evaluate sterilization compatibility during material selection and shaft design, because the real question isn't: “Can this material be sterilized?” It's: "Will the complete catheter construction still perform throughout its intended shelf life?" When is sterilization compatibility considered in your development process? #CatheterEngineering #Sterilization #MaterialsScience #MedicalDevices
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UV-vis Spectrophotometer BZUS-501 operates across a 190 to 1100nm wavelength range with a 2nm spectral bandwidth, automatic wavelength calibration, and a quasi-double beam, double-optical-path design. July marks UV Safety Month, a timely reminder of how UV-Vis instrumentation supports UV-related research and quality verification, including: Sunscreen and cosmetic SPF/UVA-UVB absorbance testing UV-blocking fabric, film, and eyewear material analysis Environmental monitoring of UV exposure effects on materials and compounds Built for laboratories across life science, environmental science, food science, metrology, and chemical industries running photometric measurement, kinetics, and DNA/protein testing. 🔬 info@labzee.com Learn more: https://lnkd.in/dGpiHy7B #Labzee #UVVisSpectrophotometer #LabEquipment #Spectroscopy #ResearchLab #QualityControl #UVSafetyMonth #Metrology
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𝐏𝐨𝐥𝐲𝐦𝐞𝐫 𝐭𝐨 𝐠𝐥𝐚𝐬𝐬 𝐛𝐨𝐧𝐝𝐢𝐧𝐠 For applications where optical transparency is important, we have the ability to integrate glass layers in microfluidic products. This lab-on-a-chip is a perfect example: a 140 µm thick glass cover is bonded with a COC or PMMA substrate. Bonding is performed using an adhesive specifically designed to remain optically transparent after curing. 𝐖𝐡𝐲 𝐩𝐨𝐥𝐲𝐦𝐞𝐫 𝐚𝐧𝐝 𝐠𝐥𝐚𝐬𝐬 𝐢𝐧 𝐨𝐧𝐞 𝐝𝐞𝐯𝐢𝐜𝐞? • Hybrid bonding of glass to polymers creates optical windows for microscopy or imaging applications; • While glass is chemically inert, flat and has excellent optical characteristics, polymers can be more easily micro-structured and (bio)functionalised; • Glass-glass bonding requires very high temperatures. Bondus can bond glass to polymers at room temperature, keeping production simple and cost-effective. Interested? Reach out to us at info@bondus.nl or connect with us on LinkedIn. #Microfluidics #HybridBonding #GlassToPolymer #PrecisionBonding #Optical
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🧪 SK-D1810-S Intelligent 3D Shaker – Operation Demonstration See how easy it is to operate the DLAB SK-D1810-S Intelligent 3D Shaker for smooth and reliable sample mixing. This video demonstrates: ✅ One-touch switching between speed and timer settings ✅ Adjustable speed from 10–80 rpm ✅ Flexible timer or continuous operation mode ✅ Simple parameter adjustment with intuitive controls ✅ Secure sample fixation using binding straps Designed for gentle 3D motion, the SK-D1810-S delivers consistent mixing while protecting sensitive samples—ideal for daily laboratory workflows. 📩 Contact us to learn more about DLAB laboratory solutions. 🌐 Learn more: https://www.dlabsci.com/ #DLAB #3DShaker #LaboratoryEquipment #SampleMixing #LifeScience #ResearchLab #LabTechnology #Biotechnology #LaboratorySolutions #LabInstruments
SK-D1810-S Intelligent 3D Shaker Operation demonstration
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Reduce carryover. Improve consistency. Simplify dilutions. The Microlab 600 with Disposable Tip Hand Probe (DTHP) helps labs achieve reliable results by eliminating cross-sample contamination with single-use tips. Key benefits: - Eliminate carryover between samples - Improve consistency and reduce variability - Save time and minimize wasted buffer - Lightweight, ergonomic design for ease of use Ideal for sensitive applications like forensics, sterile workflows, and DNA amplification where accuracy is critical. Learn more: https://hubs.li/Q04lD_vC0 #LabAutomation #LifeSciences #AnalyticalChemistry
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As medical devices become more sophisticated, giving engineers greater design flexibility is increasingly important. Meta-Poly® is an exciting example of how conductive functionality can be integrated into polymer components without compromising their performance. Looking forward to seeing how this technology continues to expand what's possible in minimally invasive device design.
That's why ProPlate® developed Meta-Poly®, a proprietary metallization technology that applies metal directly to polymer substrates while preserving their flexibility and performance. ☑️ By eliminating the need for chemical etching or conductive paints, Meta-Poly® enables engineers to integrate electrical conductivity into complex polymer components without compromising design intent. Whether you're developing #catheter-based systems, #electrophysiology devices, or other minimally invasive technologies, Meta-Poly® helps expand what's possible in medical device design. Discover how ProPlate® is advancing polymer metallization with Meta-Poly®. Learn more: www.proplate.com 💡 #MetaPoly #ProPlate #medicaldevices #biomedicalengineering #electroplating #medicaiInnovation #surfaceengineering #selectiveplating #medicalgoldplating #platinumplating
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Adding conductivity to a polymer component usually means adding process. Chemical etching, conductive paints, secondary bonding steps. Each one adds a variable and a place where the part can drift. ProPlate®'s Meta-Poly process applies metal directly to polymer substrates without those intermediate steps, and keeps the flexibility of the base material intact. Worth a look for EP electrodes and catheter subassemblies where conductivity and polymer performance both need to hold.
That's why ProPlate® developed Meta-Poly®, a proprietary metallization technology that applies metal directly to polymer substrates while preserving their flexibility and performance. ☑️ By eliminating the need for chemical etching or conductive paints, Meta-Poly® enables engineers to integrate electrical conductivity into complex polymer components without compromising design intent. Whether you're developing #catheter-based systems, #electrophysiology devices, or other minimally invasive technologies, Meta-Poly® helps expand what's possible in medical device design. Discover how ProPlate® is advancing polymer metallization with Meta-Poly®. Learn more: www.proplate.com 💡 #MetaPoly #ProPlate #medicaldevices #biomedicalengineering #electroplating #medicaiInnovation #surfaceengineering #selectiveplating #medicalgoldplating #platinumplating
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