Claims
- 1. An activatable film for activated use in capture microdissection where a source emits electromagnetic energy outside of a range of human vision, the activatable film comprising:
a film having a normal non-adherence to a biological sample; the film optically transparent in the range of human vision for permitting the biological sample to be viewed through the film; the film activatable upon heating for becoming adhesive at an activated region for adhering to a biological sample at the activated region; and, a dye on the film which is optically transparent, the dye coupling to and transducing the electromagnetic energy outside of the range of human vision to heat and activate the film to become adhesive at the activated region.
- 2. An activatable film for activated use in capture microdissection according to claim 1 and wherein:
the film includes a region for indicia.
- 3. An activatable film for activated use in capture microdissection according to claim 1 and wherein:
the film is coated with a release agent to avoid bonding to a biological sample.
- 4. An activatable film for activated use in capture microdissection according to claim 1 and wherein:
the film includes a support substrate; and, an activation substrate.
- 5. An activatable film for activated use in capture microdissection according to claim 4 and wherein:
the activation substrate is chosen from a group consisting of an emulsion layer, a coated film, a separate impregnated web, thermal sensitive adhesives and waxes, hot glues and sealants, ultraviolet sensitive adhesives, ultraviolet sensitive waxes, ultraviolet sensitive curing optical adhesives, and thermal emulsions.
- 6. An activatable film for activated use in capture microdissection according to claim 1 and wherein:
the transfer film can be made from a film selected from the group consisting of ethylene vinyl acetate (EVA), polyurethanes, polyvinyl acetates, thermal sensitive adhesives, thermal sensitive waxes, thermally-activated hot glues, thermally-activated sealants, ultraviolet sensitive curing optical adhesives, thermal emulsions, high mesh powdered reconstituted lelt fixit emulsion, acetal, acrylic, alloys, allyl, bismaleimides, cellulosics, epoxy, fluoroplastics, ketone-based resins, liquid crystal polymers, melamine-formaldehyde, nitrile, nylon, phenolic, polyamide, polyacrylate, polybenzimidazole, polybutylene, polycarbonate, thermoplastic polyester, liquid crystal polymers, polybutylene terephthalate (PBT), polycyclohexvlenedimethylene terephthalate (PCT), engineering grade polyethylene terephthalate (PET), standard grade polyethylene terephthalate (PET), thermoset polyetherimide polyethylene polyester, branched polyethylene, ethylene acid copolymer, ethylene-ethyl acrylate (EEA), ethylene-methyl acrylate (EMAC), ethylene-vinyl alcohol copolymers (EVOH), high-density polyethylene, HMW-high-density polyethylene, Ionomer, linear low-density polyethylene, linear polyethylene, low-density polyethylene, UHMW polyethylene, very low-density polyethylene, thermoplastic polyimide, thermoset polyimide, polymethylpentene, modified Polyphenylene oxide, polyphenylene sulfide, blow molding PPS, polyphthalamide, polypropylene, polypropylene homopolymer, polypropylene impact copolymers, polypropylene random copolymers, silicones styrenic resins, ABS, ACS, acrylic-styrene-acrylonitrile, expandable polystyrene, general purpose polystyrene, impact polystyrene, olefin-modified SAN, polystyrene, styrene-acrylonitrile (SAN) and styrene-butadiene copolymers.
- 7. An activatable film for activated use in capture microdissection according to claim 4 and wherein:
the support substrate is transparent.
- 8. An activatable film for activated use in capture microdissection according to claim 1 and wherein:
the support substrate is chosen from the group consisting of a transparent polymer and transparent glass.
- 9. An activatable film for activated use in capture microdissection according to claim 1 and wherein:
the dye couples to and transduces energy in an infrared range.
- 10. An activatable film for activated use in capture microdissection according to claim 1 and wherein:
the dye is selected from a group consisting of pytalocyanine dyes, indocyanine dyes, and, naphthanlocyanine dyes.
- 11. An activatable film for activated use in capture microdissection according to claim 1 and further including:
the film is a thermoplastic film.
- 12. An activatable film for activated use in capture microdissection according to claim 1 and further including:
a marker added to the film for indicating activation.
- 13. In combination:
a biological sample; a microscope for viewing the biological sample at a selected portion; a light source for illuminating the biological sample in a range of human vision for view in the microscope; an improvement to the combination comprising:
a film having a normal non-adherence to the biological sample; the film optically transparent in the range of human vision for permitting the biological sample to be viewed by the microscope through the film; the film activatable upon heating for becoming adhesive at an activated region for adhering to a biological sample at the activated region; and, a dye on the film which is optically transparent, the dye coupling to and transducing electromagnetic energy outside of the range of human vision to heat and activate the film to become adhesive at the activated region; and, a source of electromagnetic energy outside of the range of human vision for being locally directed on the dye on the film overlying the selected portion of the biological sample to couple to the dye, heat the film, and activate the film to become adhesive for adhering to the selected portion of the biological sample; means for moving the film into apposition with biological sample; and, means for directing the source of electromagnetic energy to the film in apposition whereby selected cellular material from the biological sample is adhered to the film.
- 14. The combination according to claim 13 and further including:
the dye couples to and transduces energy in an infrared range.
- 15. The combination according to claim 13 and further including:
the film is a thermoplastic film.
- 16. The combination according to claim 13 and further including:
a marker added to the film for indicating activation.
- 17. A method of direct extraction of cellular material from a tissue sample which comprises:
providing a tissue sample; providing a transfer surface which only upon activation at selected regions has a property to provide the selected regions thereof with adhesive characteristics to the tissue sample; juxtaposing the tissue sample with the transfer surface; identifying at least one portion of the tissue sample which is to be extracted; activating a region on the transfer surface with pulsed radiation so that the selected region of the transfer surface adheres to the at least one portion of the tissue sample while preserving focal tissue morphology; separating the transfer surface from the tissue sample while maintaining adhesion between the selected region of the transfer surface and the at least one portion of the tissue sample so that the at least on portion of the tissue sample is extracted from a remaining portion of the tissue sample.
- 18. A method of direct extraction of cellular material from a tissue sample according to claim 17 which comprises:
observing the tissue sample during the separating step.
- 19. A method of direct extraction of cellular material from a tissue sample which comprises:
providing a tissue sample; providing a slide for mounting of the tissue sample having a first adhesive attraction to the tissue sample; mounting the tissue sample to the slide; providing a transfer surface which only upon activation at selected regions has a property to provide the selected regions thereof with adhesive characteristics with a second and greater adhesive attraction to the tissue sample; juxtaposing the tissue sample with the transfer surface; identifying at least one portion of the tissue sample which is to be extracted; activating a region on the transfer surface with radiation so that the selected region of the transfer surface adheres to the at least one portion of the tissue sample while preserving focal tissue morphology; separating the transfer surface from the tissue sample while maintaining adhesion between the selected region of the transfer surface and the at least one portion of the tissue sample so that the at least one portion of the tissue sample is extracted from a remaining portion of the tissue sample.
- 20. A method of direct extraction of cellular material from a tissue sample according to claim 19 which comprises:
dipping the provided slide in an aqueous glycerol solution; and, drying the slide before the placing of the tissue sample on the slide.
- 21. A method of direct extraction of cellular material from a tissue sample according to claim 19 which comprises:
providing an enclosing material having a high bonding strength to the transfer surface; enclosing the tissue sample in the provided material before placing the tissue sample on the slide.
- 22. A method of direct extraction of cellular material from a tissue sample which comprises:
providing a tissue sample; providing a transfer surface which only upon activation at selected regions has a property to provide the selected regions thereof with adhesive characteristics to the tissue sample, the transfer surface including material chosen from a group consisting of thermoplastic materials, polymerizable substances, thermal selective adhesives and waxes, thermally activated hot glues and sealants, ultraviolet sensitive and curing optical adhesives, and thermal and optical emulsions; juxtaposing the tissue sample with the transfer surface; identifying at least one portion of the tissue sample which is to be extracted; activating a region on the transfer surface with laser radiation so that the selected region of the transfer surface adheres to the at least one portion of the tissue sample while preserving focal tissue morphology; separating the transfer surface from the tissue sample while maintaining adhesion between the selected region of the transfer surface and the at least one portion of the tissue sample so that the at least on portion of the tissue sample is extracted from a remaining portion of the tissue sample.
- 23. A method of direct extraction of cellular material from a tissue sample according to claim 22 which comprises:
the provided transfer surface includes a support substrate substantially transparent at a visible wavelength and an activation wave length; and, an activation substrate for activation at the activation wave length.
- 24. A method of direct extraction of material from a sample which comprises:
providing a sample; providing a transfer surface which only upon activation at selected regions has a property to provide the selected regions thereof with adhesive characteristics to the sample; juxtaposing the sample with the transfer surface; identifying at least one portion of the sample which is to be extracted; activating a region on the transfer surface with radiation so that the selected region of the transfer surface adheres to the at least one portion of the sample; separating the transfer surface from the sample while maintaining adhesion between the selected region of the transfer surface and the at least one portion of the sample so that the at least one portion of the sample is extracted from a remaining portion of the sample.
- 25. A method of direct extraction of material from a sample according to claim 24 which comprises:
identifying the at least one portion of the sample from a first direction relative to the sample; and, activating a region on the transfer surface from a second and opposite direction relative to the sample.
- 26. A method of direct extraction of material from a sample according to claim 24 which comprises:
identifying the at least one portion of the sample from first direction; and, activating a region on the transfer surface with radiation from the first direction.
- 27. A method of direct extraction of material from a sample according to claim 24 which comprises:
providing a sample includes providing a non-biological sample.
- 28. A method of direct extraction of material from a sample according to claim 24 which comprises:
providing a sample chosen from the group consisting of a cell section, a microtome section, and a cell smear.
- 29. A method of direct extraction of material from a sample according to claim F1 which comprises:
the microtome section is chosen from the group consisting of paraffin embedded and formalin-fixed tissue samples.
- 30. A method of direct extraction of material from a sample according to claim 24 and wherein the step of juxtaposing the sample with the transfer surface includes:
fixing the transfer material to the sample.
- 31. A method of direct extraction of material from a sample according to claim F2 wherein the step of fixing the transfer material to the sample is chosen from at least one of the following group consisting of clips, guides, tape, and standard adhesives.
- 32. A method of direct extraction of material from a sample according to claim 24 which comprises:
providing a transfer surface which is activated by exposure to activation processing selected from the group consisting of electromagnetic energy, a heat source, electrically heated radiant probes, flashbulb generated energy, and focused xenon lamps.
- 33. A method of direct extraction of material from a sample according to claim 24 which comprises:
activating a region on the transfer surface with radiation so that the activated region of the transfer surface adheres to the at least one portion of the sample, the radiation produced by a laser chosen from the group consisting of CO2 laser, laser diodes, tuneable frequency lasers, sapphire lasers, diode-pumped NdYAG lasers, and lasers having tunable output from infrared to ultraviolet.
Parent Case Info
[0001] This patent application is related to Provisional Patent Application Ser. No. 60/036,927, filed Feb. 7, 1997, Patent Cooperation Treaty Application Ser. No. PCT/US96/16517, filed Oct. 9, 1996 and now pending, which is a continuation-in-part of U.S. patent application Ser. No. 08/544,388, filed Oct. 10, 1995 and now pending, which is a continuation-in-part of Patent Cooperation Treaty Application Ser. No. WO 95/23960 (PCT/US95/02432), filed Mar. 1, 1995 and now pending, which is continuation of U.S. patent application Ser. No. 08/203,780, filed Mar. 1, 1994 and now pending, the disclosures of which are hereby incorporated by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60036927 |
Feb 1997 |
US |
Divisions (2)
|
Number |
Date |
Country |
Parent |
09364617 |
Jul 1999 |
US |
Child |
09780234 |
Feb 2001 |
US |
Parent |
09018596 |
Feb 1998 |
US |
Child |
09364617 |
Jul 1999 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/US95/02432 |
Mar 1995 |
US |
Child |
08544388 |
Oct 1995 |
US |