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1 polycarbonate, poly(methylmethacrylate), and polypropylene).
2 r end of a 1000 muL micropipette tip made of polypropylene.
3 laboratory and household plasticware made of polypropylene.
4 rface structure that produces only isotactic polypropylene.
5 rtion (38%), followed by polyamide (22%) and polypropylene (16%).
6        The most common plastic polymers were polypropylene (40.0%) and polyethylene (33.3%).
7            The reaction vessel is a standard polypropylene 96-well plate with a hole drilled in the b
8 from new active packaging materials based on polypropylene added with catechins and green tea.
9      Implantation of GDD, using silicone and polypropylene Ahmed glaucoma valve.
10            In a rabbit model, suprachoroidal polypropylene and gold shunts allow access to a new drai
11 ly(ethylene-co-propylene)-block-syndiotactic polypropylene and isotactic polypropylene-block-regioirr
12 is higher than most woods, and comparable to polypropylene and nylon.
13 ative analysis of column characteristics for polypropylene and poly(ethylene terephthalate) C-CP fibe
14  effective compatibilizer for melt blends of polypropylene and polycaprolactone.
15 ), suture exposure (5.3%) (trans-scleral 9-0 polypropylene), and vitreous strand at inferior paracent
16 py showed a large abundance of polyethylene, polypropylene, and polystyrene, which covered more than
17 ymer dielectrics (such as biaxially oriented polypropylene) are highlighted.
18 lications included broken suture (5.3%) (9-0 polypropylene at CTR eyelet, repaired with CV-8 Gore-Tex
19 reated with 50ppm kinetin and packed in 25mu polypropylene bags showed a shelf life of 21days.
20 itude but can be kept to below 1 min for the polypropylene based ion-selective membranes studied here
21 ed in tubes made of borosilicate glass or in polypropylene-based tubes designed to have low-binding p
22 isotactic polypropylene-block-regioirregular polypropylene-block-isotactic polypropylene pentablock c
23 isotactic polypropylene-block-regioirregular polypropylene-block-isotactic polypropylene triblock cop
24 isotactic polypropylene-block-regioirregular polypropylene-block-isotactic polypropylene-block-regioi
25 rtion polymerization catalysts, syndiotactic polypropylene-block-poly(ethylene-co-propylene)-block-sy
26                                 An isotactic polypropylene-block-regioirregular polypropylene-block-i
27 regioirregular polypropylene-block-isotactic polypropylene-block-regioirregular polypropylene-block-i
28 ock-syndiotactic polypropylene and isotactic polypropylene-block-regioirregular polypropylene-block-i
29 er) were serially suspended in a cylindrical polypropylene bottle filled with diluted iodinated contr
30          The basic trap was a transparent 3L polypropylene box baited with 50 g of fish, with a white
31                                              Polypropylene C-CP fibers incorporated as sorbent materi
32                                Polyethylene, polypropylene, C8, and C18 surfaces all proved effective
33 lectrode: nail polish, epoxy, polyimide, and polypropylene coatings.
34 )F(5))(4)] with propylene/VC mixtures yields polypropylene containing both allylic and vinylidene uns
35 mployed in the synthesis of vinyl-functional polypropylene copolymers and block copolymers with low p
36 r samplers deployed outdoors and indoors and polypropylene deposition plates deployed indoors.
37 strategy was applied to the analysis of four polypropylene/ethylene vinyl alcohol/polypropylene (PP/E
38        Nylon, polyethylene terephthalate and polypropylene fibers (10-28 mum diameter) were aligned,
39   Papaya slices were packed and covered with polypropylene film, stored at 5 degrees C; and evaluated
40 d pH have been studied using silver modified polypropylene filter (PPF) substrates.
41 sses (by gravity or mild vacuum) through the polypropylene filter into a 96-well collection plate.
42 s the use of Ansys Captiva 96-well 20-microm polypropylene filter plates to collect, store frozen, an
43                Parallel synthesis in 96-well polypropylene filter plates with microwave irradiation i
44 he possibility of nonspecific binding to the polypropylene filter, a variety of drug candidates from
45          Rhodium-catalyzed borylation of the polypropylenes, followed by oxidation of the boron-conta
46                        End-group analysis of polypropylene formed using the phenoxyimine-based titani
47  gold and cobalt oxide nanoparticle embedded Polypropylene-g-Polyethylene glycol was used for a compa
48  = 0.34; 95% CI, 0.14 to 0.86; P = .02), and polypropylene GDDs (risk ratio = 0.39; 95% CI, 0.23 to 0
49  series of mass spectra of ammonium-adducted polypropylene glycol (PPG) with an average molecular wei
50 emonstrated with test aerosols consisting of polypropylene glycol (PPG), angiotensin II, bovine serum
51 the LAR, saponin, polyanetholesulfonate, and polypropylene glycol (PPG), to triplicate sets of BACTEC
52 of histones H3 and H4, and one form bound to polypropylene glycol (PPG), which resembles the apoenzym
53 ) diblock copolymer (NuBCP-9/PLA-PEG) or PEG-polypropylene glycol-PEG-modified PLA-tetrablock copolym
54 identified were polyethylene glycols (PEGs), polypropylene glycols (PPG), linear alkyl-ethoxylates, a
55 (AEOs), nonylphenol ethoxylates (NPEOs), and polypropylene glycols (PPGs)) that function as weatheriz
56 ncluding alcohol polyethoxylates (LAEOs) and polypropylene glycols (PPGs), as the major components of
57 erization of epsilon-caprolactone to prepare polypropylene-graft-polycaprolactone.
58 be molecule to the active sites that produce polypropylenes having different tacticities.
59                       On the basis of a thin polypropylene hollow fiber (50 mum of wall-thickness and
60  The CNTs were immobilized in the pores of a polypropylene hollow fiber and led to nearly 250% enrich
61                           A bundle of porous polypropylene hollow fiber membranes is used to bring th
62          The scleral fixation suture was 9-0 polypropylene in 16 eyes and CV-8 Gore-Tex (expanded pol
63 ing multiwall nanotube (MWNT) dispersions in polypropylene indicate that these materials exhibit extr
64 on of linear polyethylene (PE) and isotactic polypropylene (iPP) are greatly influenced by the type o
65              Polyethylene (PE) and isotactic polypropylene (iPP) constitute nearly two-thirds of the
66 ecificites, regiospecificites, and isotactic polypropylene (IPP) Mw.
67 roduction of polyethylene (PE) and isotactic polypropylene (iPP).
68 80 degrees C, generate high molecular weight polypropylene (M(n) = 130,000-360,000 g/mol) with isotac
69      Ion-selective membranes based on porous polypropylene membranes doped with an ionophore and a li
70 einforcement was performed with a large-pore polypropylene mesh (Ultrapro, width 7.5 cm).
71 ominal wall with a retromuscular lightweight polypropylene mesh at the ostomy site significantly redu
72 -absorbable membranes agreed to have sterile polypropylene mesh capsules placed adjacent to the prima
73 f cadaveric fascia lata as an alternative to polypropylene mesh for sacrocolpopexy in patients who we
74                                              Polypropylene mesh has come under scrutiny by the US Foo
75                            Before undergoing polypropylene mesh herniorrhaphy, men, especially of you
76 guinal vasal obstruction related to previous polypropylene mesh herniorrhaphy.
77 (PSHs) after end-colostomy formation using a polypropylene mesh in a randomized controlled trial vers
78 or the implantation of an overlay large-pore polypropylene mesh in the study group.
79    The addition of a prophylactic large-pore polypropylene mesh on the overlay position decreases the
80  is known about the long-term effects of the polypropylene mesh on the vas deferens, especially with
81 : primary repair (PR, n = 8) or tension-free polypropylene mesh repair (MR, n = 8) hernia repair on p
82 ia operations involve placement of a knitted polypropylene mesh to form a "tension-free" herniorrhaph
83 minal wall with a retro-muscular lightweight polypropylene mesh was compared with the traditional for
84 dense fibroblastic response encompassing the polypropylene mesh with either trapped or obliterated va
85 f complement in the inflammatory response to polypropylene meshes commonly used for hernia repair.
86 5-600 microm diameter) to the inner walls of polypropylene microcentrifuge tubes.
87                                          The polypropylene microfibers were physically altered by the
88                                        These polypropylene microstructural parameters, and also M(w),
89 n, we report ELISA technique on an activated polypropylene microtest plate (APPmicroTP) as an illustr
90 s are deposited into six 96-well (576 total) polypropylene microtiter plates via a fraction collector
91 ric loss in metal oxide core/Al(2)O(3) shell polypropylene nanocomposites scales with the particle su
92  different microplastic types (polyethylene, polypropylene, nylon-6, polyvinyl chloride, polystyrene)
93 nctionalization of both model and commercial polypropylenes of varying tacticity has been conducted b
94 of reaction vessels, which are often made of polypropylene or polystyrene-based plastics.
95  describes the use of polyethylene oxide(99)-polypropylene oxide(67)-polyethylene oxide(99) triblock
96 regioirregular polypropylene-block-isotactic polypropylene pentablock copolymer was synthesized that
97 were synthesized as overlapping heptamers on polypropylene pins, six RF-reactive epitopes within solv
98 med with the large diameter Pt and sealed in polypropylene pipet tips were employed for end-column de
99 ), 100% polyester (privacy drapes), and 100% polypropylene plastic (splash aprons).
100 more informed decisions regarding the use of polypropylene plastics.
101                           NCA addition makes polypropylene plasticware more aesthetically pleasing to
102 ottom of each well of a conventional 96-well polypropylene plate with an adherent polymer film (a mix
103 ember of the Pluronic family of polyethylene-polypropylene-polyethylene tri-block copolymers, protect
104 that plastic fragments were polyethylene and polypropylene polymers.
105 in the quantification of small polyethylene, polypropylene, polystyrene, and nylon-6 particles, which
106 on on medically relevant surfaces, including polypropylene, polystyrene, and titanium.
107 d as an extraction solvent was placed into a polypropylene porous hollow fiber segment supported by c
108 on two types of polymer-clay nanocomposites: polypropylene (PP) and polyamide 6 (PA6) with O-MMT.
109  protocol describes the printing of an inert polypropylene (PP) architecture with the concurrent prin
110 ) by grafting acrylic acid (AA) monomer from polypropylene (PP) film surface, and demonstrated its po
111                 This approach was applied to polypropylene (PP) films prepared with a selection of ad
112                                              Polypropylene (PP) is a widely used plastic with consume
113                        Polyethylene (PE) and polypropylene (PP) represent approximately 92% of total
114                     The thermal stability of polypropylene (PP) was significantly enhanced by adding
115                        Polyolefin, including polypropylene (PP), constitutes an important class of ma
116   Common plastics such as polyethylene (PE), polypropylene (PP), polystyrene (PS), and polyethylene t
117  (PVC), low-density polyethylene (LDPE), and polypropylene (PP).
118  (PVC), low-density polyethylene (LDPE), and polypropylene (PP)], PS sorbed greater concentrations th
119 of four polypropylene/ethylene vinyl alcohol/polypropylene (PP/EVOH/PP) multilayer trays and one PP/A
120  is the most active metallocene catalyst for polypropylene reported to date.
121          This study investigated the fate of polypropylene rope microfibers (1-5 mm in length) ingest
122                                              Polypropylene samples produced using C1-symmetric precat
123 mber of block copolymers featuring isotactic polypropylene semicrystalline blocks and poly(ethylene-c
124 ither a gold shunt (GS, GMSplus+, SOLX) or a polypropylene shunt (PS, Aquashunt, OPKO).
125                      This peptide-conjugated polypropylene sulfide nanoparticle formulation did not a
126 ccine using HIV-1 p24 Gag peptide-conjugated polypropylene sulfide nanoparticles to induce immunity a
127 by condensation onto an amine-functionalised polypropylene support.
128                   The membrane consists of a polypropylene-supported liquid membrane doped with a hyd
129             Desorption from polyethylene and polypropylene surfaces generates consistently reproducib
130 l energy when desorbed from polyethylene and polypropylene surfaces than from stainless steel.
131 ler matrix crystals form on polyethylene and polypropylene surfaces than on stainless steel, C8, or C
132      Another five eyes received conventional polypropylene suture with a modified Seipser slip knot.
133 tomoses were performed with a continuous 3-0 polypropylene suture.
134 e, styrene-ethylene/propylene copolymer, and polypropylene that have overlapping spectral peaks.
135                                         Both polypropylene tips and the steel tips of drafting pens w
136 ized glass and PMMA, respectively, using the polypropylene tips for spotting.
137                 NCAs are frequently added to polypropylene to improve optical clarity, increase perfo
138 t necessary in the semicrystalline isotactic polypropylenes to achieve good mechanical performance, u
139 se study (nanoparticulate organic pigment in polypropylene) to show exemplarily the procedures used t
140 regioirregular polypropylene-block-isotactic polypropylene triblock copolymers were synthesized.
141 apidly recovered, dissected, and frozen in a polypropylene tube in an acetone/dry ice bath.
142 turation in the presence of certain types of polypropylene tube surfaces.
143 e animals were restrained in well ventilated polypropylene tubes for 12 h each day (one cycle).
144 lood from volunteers was serially diluted in polypropylene tubes with various resuscitation fluids.
145 es as compared to larger volume reactions in polypropylene tubes.
146 tyrene-based composite fiber reinforced with polypropylene was formulated in discs and used to evalua
147 lated derivative of the commercial isotactic polypropylene was used as macroinitiator for the aluminu
148 ow-density polymers such as polyethylene and polypropylene were the most abundant compounds, followed
149 ts and molecular weight distributions of the polypropylenes were essentially unchanged after the cata
150 s (a bed rail, a stainless steel sheet, or a polypropylene work surface).

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