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1 vinylpyrrolidone film and from a polystyrene/polymethylmethacrylate bilayer, in the former case by us
2 ttage and implantation of allograft chips or polymethylmethacrylate, but some patients were treated w
3 ates that do not satisfy those requirements, polymethylmethacrylate can be used as a surface modifier
4                                 The standard polymethylmethacrylate cement is stiffer than native bon
5 m of organic electro-optic molecules JRD1 in polymethylmethacrylate combines desired merits for activ
6      Thin films of an asymmetric polystyrene-polymethylmethacrylate diblock copolymer, with cylindric
7 g +/- SE; N > 7) beneath contact lenses was: polymethylmethacrylate (Dk/L = 0), tear PO2 = 0.58 +/- 0
8 rylic IOLs or heparin-surface-modified (HSM) polymethylmethacrylate had better visual outcomes than t
9 ent PVDF (polyvinylidene fluoride) and PMMA (polymethylmethacrylate haptics).
10 ) treated, pedicular approach, and amount of polymethylmethacrylate injected per vertebral body.
11         Affected vertebrae were treated with polymethylmethacrylate, introduced percutaneously under
12 d manipulate inside the eye than traditional polymethylmethacrylate lenses and therefore, require spe
13                                              Polymethylmethacrylate matrix has been developed as an a
14 acrylate diblock copolymer, with cylindrical polymethylmethacrylate microdomains, were spin-coated on
15                In this study, the ability of polymethylmethacrylate nanoparticles (PMMA-NPs) to promo
16 visual outcomes than those receiving non-HSM polymethylmethacrylate or silicone IOLs.
17 on exchange nanoparticle to a 16-20 mum bore polymethylmethacrylate (PMMA) capillary.
18  lifetimes measured in the open eye, under a polymethylmethacrylate (PMMA) contact lens, under two ox
19 vides one possible solution for PCO by using polymethylmethacrylate (PMMA) implanted intraocular lens
20 :YAG) capsulotomy rate of a square-edge (SE) polymethylmethacrylate (PMMA) intraocular lens (IOL) mod
21 ion molded flow-field plate constructed from polymethylmethacrylate (PMMA) is developed herein to red
22                                    Suspended polymethylmethacrylate (PMMA) membranes were used as sha
23 oped impact test rig was used to apply dense polymethylmethacrylate (PMMA) microneedles to the skin m
24  room temperature aging of a suspended Au NP/polymethylmethacrylate (PMMA) polymer close packed monol
25 alls made of polytetrafluoroethylene (PTFE), polymethylmethacrylate (PMMA), and borosilicate glass wi
26 t bone debris and implant particles, such as polymethylmethacrylate (PMMA), which are persistently re
27 f vertebroplasty as confluent reservoirs for polymethylmethacrylate (PMMA).
28 epithelial cell adhesion to silicone (n=18), polymethylmethacrylate (PMMA; n=18), and acrylic (n=18)
29  hardening technology and a newly formulated polymethylmethacrylate, polyhydroxyethylmethacrylate, an
30 ls including a composite graft consisting of polymethylmethacrylate, polyhydroxylethylmethacrylate, a
31 ows: harvesting of plant material; amino and polymethylmethacrylate solid-phase purification followed
32         Here, we overcome this limitation in polymethylmethacrylate, the archetype of brittle amorpho
33                                              Polymethylmethacrylate was added to obtain phantom thick
34 roethylene) produced by rubbing with Lucite (polymethylmethacrylate) were directly identified as elec
35 e an intermediate transfer membrane, such as polymethylmethacrylate, which needs to be removed afterw