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1  through direct or indirect participation of tint.
2 gen load correlated with a sharp drop in the Tint cell population and subsequent loss of the ongoing
3  the cornea and its control with a dark-iris tinted contact lens.
4                                          The tint gene was the first of the latter to be identified.
5                                Surprisingly, tint interacts with T2 but not with T1.
6 required to prove or disprove the ability of tinted intraocular lenses to aid in preventing the progr
7 neration (AMD) have led to the use of yellow tinted IOLs in cataract surgery to filter short waveleng
8 rovements in visual comfort they report when tinted lenses are worn.
9 ge) were recruited who had successfully worn tinted lenses for at least 6 months and were compared wi
10                                              Tinted lenses have been widely publicized as a successfu
11 istent with the absence of any effect of the tinted lenses in the group with MIS.
12 ral phenazine, is responsible for the bluish tint of sputum and pus associated with P. aeruginosa inf
13 ller placentae and lighter foals relative to TinT (P < 0.05).
14 oliferative, antigen-dependent intermediate (Tint) population with a memory-effector hybrid phenotype
15 ation approaches aimed at the development of Tint populations might prove effective against pathogens
16  camera for imaging through smoke, through a tinted screen, whilst performing compressive sampling an
17 stablish eight Thoroughbred-in-Thoroughbred (TinT), seven Pony-in-Pony (PinP), five Thoroughbred-in-P
18 s and placental area at birth were larger in TinT than in PinP pregnancies (P < 0.05).
19 t appeared dull white with a slight brownish tint that failed to sporulate on standard media.
20 s may reflect a tendency to attribute bluish tints to the illuminant rather than the object, consiste
21 and PC, pure blue colours devoid of a violet tint were exclusively observed for the phenolic extracts

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