Global Market for Single Use Technologies Biologic Market to Offer Lucrative Growth Prospects for Manufacturers | Stainless Steel Sintered Filter Disc

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VSWR is the ratio between the peak amplitude and the minimum amplitude of the standing wave that arises from any mismatching condition at the antenna input, which causes input power to be reflected back. A VSWR equal to 1 means that there is no standing wave (S11 = −infinity) and that the antenna is ideally matched (3, 26). As shown in Fig. 2C, the VSWR is less than 2 for MXene antennas with various thicknesses despite the fact that the surface resistance increases significantly with thicknesses below 100 nm. As a reference, a VSWR equal to 2 means that 11% of the power is reflected.

Ohkoshi, S. et al. A Millimeter-Wave Absorber Based on Gallium-Substituted ε-Iron Oxide Nanomagnets. Angew. Chem. Int. Ed. 46, 8392–8395 (2007).

Laser sintered implants were manufactured and polished or treated by blasting and acid etching to produce smooth and rough surfaces for calvarial implantation in rats. Laser confocal microscopy confirmed reduced surface roughness and peak to valley heights (A) of smooth surfaces (A top right) in comparison to rough surfaces (A bottom right). MicroCT image analysis (B) was conducted of calvarial implants after 10 weeks to assess bone-to-implant contact (C) and bone ingrowth in holes (D). SEM micrographs after pull-out testing of the implant ((E–G) top, with inset optical images) and calvaria ((E–G) bottom, with inset optical images) showed bone growth and attachment to implants. Pull out testing revealed force at failure (H) and modulus (I) 10 weeks after implantation. Force at failure for pull out testing (J) and modulus (K) was also compared at 5 and 10 weeks for the DBX treated group. One-way ANOVA with Bonferroni correction, p < 0.05, * vs. smooth or week 5, ^ vs. rough.

EPR measurements were performed in a quasi in situ model using a bespoke U-shape reaction tube connected to a quartz EPR tube equipped with a greaseless high-vacuum stopcock. Samples were loaded into the U-shape reaction tube and exposed to various pretreatments. After pretreatment, samples were transferred to the EPR tube without air exposure. The EPR tube was subsequently connected to a vacuum system and evacuated at room temperature to pressures <10−4 torr. The EPR tube was then sealed and transferred for measurements at 100 K.

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Greenwald, A. S. et al. Bone-graft substitutes: Facts, fictions, and applications. J. Bone Jt. Surg. Am. Vol.83A, 98–103 (2001).

PDAC [molecular weight (Mw) = 200,000 to 350,000 g/mol, 20 wt % in water], linear poly(ethyleneimine) (Mw = 50,000 g/mol), hydrochloric acid [HCl; ACS reagent; 37% (w/w)], and dimethyl sulfoxide (DMSO; ReagentPlus; >99.5%) were purchased from Sigma-Aldrich. Ti (44-μm average particle size, 99.5% purity), Al (44-μm average particle size, 99.5% purity), TiC powders (2- to 3-μm average particle size, 99.5% purity), and lithium fluoride (LiF, 98+% purity) were purchased from Alfa Aesar. Substrates for LbL deposition included slide glass (VWR International), ITO-coated glass (R < 20 ohm per square; Delta Technologies), In2O3/Au/Ag coated PET (R < 10 ohm per square; Delta Technologies), nylon fiber (Artiste), PDMS (Sylgard 184, Dow Corning), and PET (Melinex ST505, Tekra).

Although bone grafts and bone graft substitutes are commonly used in ridge augmentation, cases that require substantial vertical regeneration of bone are not predictably successful. These patients require multiple procedures and the regeneration strategy and treatment plan vary considerably from case to case36. Our results, achieved through iterative in vitro and in vivo studies, suggest that additive manufacturing can be used successfully to produce implants that meet the demands of precision medicine by tailoring the shape to the individual patient’s needs. The use of DBX had an osteoinductive effect, enhancing osseointegration of the roughened surface in the rat calvaria. Based on these results, we continued to use DBX with human implantation, and suggest this as a best practice for future clinical use. The combination of surface topography modification of laser sintered Ti-6Al-4 V at the microscale and nanoscale with clinical best practices can lead to osteogenesis and ultimately osseointegration of implants, even for patients with limited bone, enabling restoration of form and function. Though this study only indicates one clinical application of additive manufacturing for dentistry, we hope that others will apply our findings to bone regeneration in facial reconstruction after trauma, cancer or in other compromised cases.

Pyrazolo[3,4-d]pyrimidine compounds (1–4), were previously synthesized and characterized by our research group25,26,27. 1,2-Dipalmitoyl-sn-glycero-3-phosphocholine semisynthetic, ≥99% (DPPC), N-(carbonyl methoxypolyethylenglycol 2000)-1,2-dipalmitoyl-sn-glycero-3-phosphoethanolamine sodium salt (MPEG-2000-DPPE Na), 1,2-dioleoyl-sn-glycero-3-phosphoethanolamine,7-nitrobenzofurazan-labeled (NBD-DOPE), 4′,6-diamidino-2-phenylindole (DAPI), cholesterol (Chol), human serum albumin (HSA) (lyophilized, 97%), dialysis tubing cellulose membrane (cut-off 14 kDa), L-cysteine and and D,L-glyceraldehyde and all the solvents were purchased from Sigma Aldrich. Nylon syringe filters with pores of 0.2 μm (Acrodisc 13 mm Syringe Filter) and PTFE syringe filters with pores of 0.2 μm (Acrodisc 13 mm Syringe Filter) were from purchased VWR. High purity deionised water was obtained from milli-Q (Millipore, Milford, MA, USA). Wheat germ agglutinin, Alexa Fluor 647 Conjugate (WGA) was purchased from Life Technologies. Fetal Bovine Serum (FBS), Dulbecco’s Modified Eagle Medium: Nutrient Mixture F-12 (DMEM/F12), L-glutamine (L-Glu) and Penicillin-Streptomycin (Pen/Strep) were purchased from Euroclone.

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Diamond abrasive grains, both natural and synthetic, are used in a group of abrasive tools known as dressers. These tools are used in the preparation of grinding wheels. These tools are used to re-establish the abrasive conditions of a grinding wheel (dressing), remove the clogged debris from its abrasive surface (cleaning), and restore the required profile (truing).

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Chen, C.-M. et al. Non-volatile organic field-effect transistor memory comprising sequestered metal nanoparticles in a diblock copolymer film. J. Mater. Chem. 22, 454–461 (2012).


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