Method of diagnosing optical inhomogeneity of a volume scattering object and a dental tool
A method of diagnosing optical inhomogeneity of a volume scattering object is provided. The method includes the steps of providing a substance coated with phosphorous materials, adapting the substrate to a surface of a volume scattering object to be diagnosed, and trans-illuminating the volume scattering object with radiation. A dental tool including a substrate is also provided. The substrate includes a transparent flexible film or metallic foil with an applied coating of upconversion phosphors, afterglow particles or both.
1. A dental tool comprising:
a substrate comprising a transparent flexible film or metallic foil; and
a coating applied on the substrate, the coating comprising upconversion phosphors.
2. The dental tool of claim 1 , further comprising an opposing second transparent flexible film on an opposite side of the coating.
3. The dental tool of claim 1 , wherein the upconversion phosphors comprise an inorganic host lattice doped with a rare earth ion.
4. The dental tool of claim 3 , wherein the inorganic host is selected from the group consisting of lanthanide fluorides, oxysulfides, fluorides, oxide hosts, NaYF 4 , NaYbF 4 , Na 5 Y 9 F 32 , Na 5 Yb 9 F 32 , lutetium oxide, and yttrium oxide.
5. The dental tool of claim 3 , wherein the inorganic host lattice is doped or co-doped with one or more trivalent rare earth ions.
6. The dental tool of claim 5 , wherein the trivalent rare earth ions are selected from the group consisting of ytterbium (Yb 3+ ), lutetium (Lu 3+ ), thulium (Tm 3+ ), terbium (Tb 3+ ), erbium (Er 3+ ), praseodymium (Pr 3+ ), scandium (Sc 3+ ), yttrium (Y 3+ ) and combinations thereof.
7. The dental tool of claim 3 , wherein the upconversion phosphors emit radiation having a wavelength in the range of 320 nm to 495 nm.
8. The dental tool of claim 1 , wherein the coating further comprises particles of afterglow phosphor.
9. The dental tool of claim 8 , wherein the particles of afterglow phosphor are selected from the group consisting of Eu 2+ doped SrAl 2 O 4 , Eu 2+ doped Sr 4 Al 14 O 25 , Ce 3+ doped BaAl 2 O 4 , Ce 3+ doped CaAl 2 O 4 , Dy 3+ doped SrAl 2 O 4 , Dy 3+ doped SrMgSi 2 O 6 , alkali earth metal silicates, ZnS, and calcium sulfide.