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1 e assay for seminal plasma than for cervical wicks.
2 old larger than those generated in synthetic wicks.
3 y, rectum, cervix, and vagina with absorbent wicks.
4 d by the solution movement mediated by paper wicking.
5 luid delivery to the transistor via vertical wicking.
6  measurements by sessile drop and thin layer wicking.
7                                The intrinsic wicking ability of the paper matrix facilitated rapid sa
8 found that using a mydriatic cocktail-soaked wick - an alternative way to achieve intraoperative mydr
9 d least in specimens from endocervical canal wick and most in cervicovaginal lavage samples.
10 for 8 weeks from the endocervical canal with wicks and cytobrushes and from the ectocervix and vagina
11 ydrophilic group-tethered nanotubular porous wicks and enhanced fluidity are the main causes for prom
12 more, these Cu aerosponges exhibit excellent wicking behavior, suggesting their potential for heat-ex
13 but closed rapidly when water was allowed to wick between epidermis and the mesophyll.
14 vantage of their high surface area and fluid wicking capabilities, SiNWs were used to perform chromat
15 FC-72 and water with fundamentally different wicking characteristics.
16                                    Capillary wicking facilitates a gravity-driven flow of buffer solu
17        In particular, 3D paper-based devices wick fluids and distribute microliter volumes of samples
18  for analyte multiplexing using a two-plexed wick for the detection of mouse IgG and ovalbumin.
19 ressure measurements with both the classical wick-in-needle method (to estimate free-fluid pressure)
20                                     The IFP (wick-in-needle technique) and pO(2) (Eppendorf) were mea
21 buffer washes away PCR inhibitors, which get wicked into the absorbent blotter pad.
22 rs: the drying time scale of the liquid film wicking into the surface structures (taud), the heating
23 tration based on surface treatment selective wicking is demonstrated.
24               Replacement of kerosene-fueled wick lamps deserves strong consideration for programs th
25 % of kerosene consumed by widely used simple wick lamps is converted to carbonaceous particulate matt
26                              Kerosene-fueled wick lamps used in millions of developing-country househ
27 plant, and into the air-occurs by a passive, wicking mechanism.
28 t) with an ultrathin microbial nanocellulose wicking membrane (sample handling component).
29    To this end, we first developed a chronic wick method for the direct measurement of oncotic pressu
30       The cuvette is spontaneously filled by wicking of the liquid sample into the micropillar array.
31                                              Wick outflow was analyzed for Eu concentrations, supplem
32 k snowmelt events) caused peaks of Eu in the wick outflow.
33  clearly visible trace of RBCs in the buffer wicking path.
34 the spot, with no visual trace in the buffer wicking path.
35                          Here, we report the wicking performances for porous copper inverse opals hav
36 gement is thus more realistically seen as a "wicked problem" that has no clear-cut solution.
37          Management of invasive plants is a 'wicked problem', and local outcomes to wicked problems h
38 is a 'wicked problem', and local outcomes to wicked problems have both positive and negative conseque
39 eynman diagrams can be used to compute the q-Wick products and usual operator products in terms of ea
40 resulting in large dynamic range), excellent wicking properties (naturally microfluidic), mechanical
41  characterizing the transplanar and in-plane wicking properties of fabrics based on gravimetric and i
42 d to have excellent transplanar and in-plane wicking properties.
43  characterising the transplanar and in-plane wicking property of fabrics.
44  timers and paper-based assays depend on the wicking rate of the sample, the fluidic timers automatic
45 ll having sufficient air permeability, water-wicking rate, and mechanical strength for wearability.
46  to the assay) to account for differences in wicking rates that are caused by variations in humidity.
47                                            A wicking reagent containing immunoliposomes and the test
48        During the capillary migration of the wicking reagent, E. coli, with surface-bound immunolipos
49 d imaginary-frequency point of view based on Wick rotations.
50  colloids (<1%) were detected in the deepest wick sampler (2.14 m depth) 2.5 months after application
51 ds through the sediments was monitored using wick samplers.
52 rmined from 100% of paired cervical swab and wick samples from 20 culture-positive women from Baltimo
53                           Endocervical canal wicks should be considered as an adjunct to cervicovagin
54 g one layer relative to the other, solutions wick simultaneously into a large array of sensing reserv
55 al' phosphate (Pi) supply using a 'pouch and wick' system, and had been screened previously in an aga
56 hat which drives fluid through the synthetic wicks that are key elements in technologies for heat tra
57 pecific time required for a liquid sample to wick through predefined regions in the device.
58 dryout time scale are measured as the liquid wicks through surface structures and evaporates.
59 recise time delays (e.g., +/-6% of the total wicking time).
60 late to create a microfluidic channel with a wicking tip protruding from the end.
61 o transport the aqueous sample via capillary wicking to a 5 mm-long detection area, where the recogni
62 om blood plasma, seminal plasma, or cervical wicks was quantified at baseline and at weeks 48 and 96

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