Claims
- 1. An apparatus for selectively inducing a response in one or more targeted cells within a biological specimen, comprising:
an illumination source for illuminating a frame of cells in said biological specimen; an image capture system that captures an image of said frame of cells; first commands for determining the locations of said one or more targeted cells within said image; an energy source that emits an energy beam sufficient to induce a response in at least one of said one or more targeted cells within said frame of cells; and second commands for steering said energy beam to said locations of said one or more targeted cells.
- 2. The apparatus of claim 1, wherein said one or more targeted cells are identified by the presence of, or absence of, a label.
- 3. The apparatus of claim 2, wherein said label is directed at the cell surface.
- 4. The apparatus of claim 3, wherein said label comprises an antibody.
- 5. The apparatus of claim 2, wherein said label comprises a membrane permeable reagent.
- 6. The apparatus of claim 1, wherein said illumination source comprises a diffused laser light.
- 7. The apparatus of claim 1, wherein said illumination source comprises an arc lamp.
- 8. The apparatus of claim 1, wherein said illumination source comprises a light-emitting diode.
- 9. The apparatus of claim 1, wherein said illumination source comprises an incandescent lamp.
- 10. The apparatus of claim 1, wherein said illumination source comprises a fluorescent lamp.
- 11. The apparatus of claim 1, wherein said illumination source only illuminates a sub-population of cells in said biological specimen.
- 12. The apparatus of claim 1, wherein said one or more targeted cells comprises tumor cells.
- 13. The apparatus of claim 1, wherein said one or more targeted cells comprises fibroblasts.
- 14. The apparatus of claim 1, wherein said one or more targeted cells comprises T-cells.
- 15. The apparatus of claim 1, wherein said one or more targeted cells comprises teratoma-forming cells.
- 16. The apparatus of claim 1, wherein said one or more targeted cells comprises nontumor cells.
- 17. The apparatus of claim 1, wherein said image capture system comprises a camera.
- 18. The apparatus of claim 17, wherein said camera comprises a charge-coupled device.
- 19. The apparatus of claim 1, wherein said energy source comprises a laser.
- 20. The method of claim 19, wherein the wavelength of energy emitted from said laser is approximately between 100 nanometers and 30 micrometers.
- 21. The apparatus of claim 1, wherein said first commands comprise commands for determining the two-dimensional locations of said one or more targeted cells within said biological specimen.
- 22. The apparatus of claim 1, wherein said first commands comprise commands for determining the three-dimensional locations of said one or more targeted cells within said biological specimen.
- 23. The apparatus of claim 1, further comprising one or more energy beam steering devices that are controlled by said second commands.
- 24. The apparatus of claim 23, wherein said energy beam steering devices comprise one or more elements that reflect the energy beam.
- 25. The apparatus of claim 23, wherein said energy beam steering devices comprise one or more elements that refract the energy beam.
- 26. The apparatus of claim 23, wherein said energy beam steering devices comprise one or more elements that diffract the energy beam.
- 27. The apparatus of claim 23, wherein said energy beam steering devices comprise one or more elements that diffract in combination with one or more elements that refract or reflect the energy beam.
- 28. The apparatus of claim 23, wherein said energy beam steering devices comprise one or more elements that refract in combination with one or more elements that reflect the energy beam.
- 29. The apparatus of claim 23, wherein said energy beam steering devices comprise one or more elements that refract in combination with one or more elements that reflect and one or more elements that diffract the energy beam.
- 30. The apparatus of claim 23, wherein said energy beam steering devices comprise galvanometeric mirrors.
- 31. The apparatus of claim 23, wherein said energy beam steering devices comprises a piezo-electric tilt platform.
- 32. The apparatus of claim 23, wherein said energy beam steering devices comprise acousto-optical deflectors.
- 33. The apparatus of claim 1, wherein said first commands are executed under the control of a computer.
- 34. The apparatus of claim 1, wherein said second commands are executed under the control of a computer.
- 35. The apparatus of claim 1, wherein said apparatus processes at least 1, 2, 3, 4, 5, 6, 7, or 14 square centimeters of biological specimen area per minute.
- 36. The apparatus of claim 1, wherein said apparatus images at least 0.25, 0.5, 1, 2, 3, 4 or 8 million cells of said biological specimen per minute.
- 37. The apparatus of claim 1, wherein said apparatus can induce a response in at least 50, 100, 150, 200, 250, 300, 350, 400, or 800 targeted cells per second.
- 38. The apparatus of claim 1, wherein said response induced in said one or more targeted cells is cell death.
- 39. The apparatus of claim 1, wherein said response is non lethal.
- 40. The apparatus of claim 1, wherein said response induced in said one or more targeted cells comprises activation of a photosensitive agent.
- 41. The apparatus of claim 1, wherein said response induced in said one or more targeted cells comprises optoporation to allow entry of a substance.
- 42. The apparatus of claim 41, wherein said substance is genetic material.
- 43. The apparatus of claim 1, wherein said response induced in said one or more targeted cells comprises inactivation of a cell component.
- 44. The apparatus of claim 1, wherein said response induced in said one or more targeted cells comprises controlled movement of said one or more targeted cells.
- 45. The apparatus of claim 1, wherein said response is excitation of fluorescent dye within said one or more targeted cells.
- 46. The apparatus of claim 1, further comprising an energy absorbing dye in contact with said one or more targeted cells.
- 47. The apparatus of claim 1, wherein said response is photobleaching recovery.
- 48. The apparatus of claim 1, wherein said response is to the effects of internal molecular uncaging.
- 49. The apparatus of claim 1, further comprising third commands that control an autofocus mechanism linked to said image capture system.
- 50. The apparatus of claim 49, wherein said third commands are executed under the control of a computer.
- 51. An apparatus for selectively inducing a response in one or more targeted cells within a biological specimen, comprising:
a scanning lens which focuses on a field-of-view within said biological specimen, said field-of-view comprising a plurality of frames of cells; an illumination source that illuminates one or more frames of cells; an image capture system that captures an image of a first frame of cells in said field-of-view; first commands for determining the locations of said one or more targeted cells in said first frame of cells; an energy source that emits an energy beam sufficient to induce a response in at least one of said one or more targeted cells; and second commands for steering said energy beam to said locations of said one or more targeted cells within said first frame of cells.
- 52. The apparatus of claim 51, further comprising:
means for directing the output of said illumination source to a second frame of cells in said field-of-view; means for capturing an image of said second frame of cells; third commands for determining the locations of said one or more targeted cells in said second frame of cells; and fourth commands for steering said energy beam to said locations of said one or more targeted cells within said second frame of cells.
- 53. The apparatus of claim 52, wherein said means for directing said illumination source is one or more reflective elements.
- 54. The apparatus of claim 52, wherein said means for directing said illumination source is one or more refractive elements.
- 55. The apparatus of claim 51, further comprising means for moving the position of said biological specimen with respect to said scanning lens.
- 56. The apparatus of claim 51, wherein said scanning lens comprises one or more refractive elements.
- 57. The apparatus of claim 51, wherein said scanning lens is of F-theta design with a diameter of at least 8, 10, 12, 14, 16, or 18 mm.
- 58. The apparatus of claim 51, wherein said scanning lens comprises one or more reflective elements.
- 59. The apparatus of claim 51, wherein said scanning lens comprises one or more diffractive elements.
- 60. The apparatus of claim 51, wherein said scanning lens comprises one or more refractive elements in combination with one or more reflective elements.
- 61. The apparatus of claim 51, wherein said scanning lens comprises one or more diffractive elements in combination with one or more refractive or reflective elements.
- 62. The apparatus of claim 51, wherein said scanning lens comprises one or more refractive elements in combination with one or more reflective elements and one or more diffractive elements.
- 63. The apparatus of claim 51, further comprising a proximeter to adjust the focus of the scanning lens.
- 64. The apparatus of claim 63, wherein the proximeter is a laser proximeter.
- 65. The apparatus of claim 51, wherein said response is selected from the group consisting of cell death, optoporation, activation of photosensitive agent, inactivation of a cell component, controlled movement, excitation of a fluorescent reagent, photobleaching and internal molecular uncaging.
- 66. The apparatus of claim 51, wherein said response is non-lethal.
- 67. The apparatus of claim 66, wherein said response is selected from the group consisting of optoporation, activation of photosensitive agent, inactivation of a cell component, controlled movement, excitation of a fluorescent reagent, photobleaching and internal molecular uncaging.
- 68. An apparatus for identifying the cells of a first population of labeled cells within a mixture of said first population and a second population of non-labeled cells, comprising:
an illumination source for illuminating a frame of cells in said mixture; an image capture system that captures an image of said frame of cells; and first commands for determining the locations of at least one cell in said first population of labeled cells by reference to said image.
- 69. The apparatus of claim 68, further comprising a memory for storing said locations of said at least one cell in said first population of labeled cells.
- 70. The apparatus of claim 68, further comprising a memory for storing the quantity of cells in said first population of labeled cells.
- 71. The apparatus of claim 68, further comprising an energy source that emits an energy beam sufficient to induce a response in at least one cell in said first population of labeled cells.
- 72. An apparatus for determining a morphological or physiological characteristic of individual cells in a biological specimen, comprising:
an illumination source for illuminating a frame of cells in said biological specimen; an image capture system that captures an image of said frame of cells; first commands for determining the location of a first individual cell in said biological specimen by reference to said image; an energy source that emits an energy beam sufficient to induce a response in at least one of said one or more individual cells; second commands for intersecting said first individual cell with an energy beam sufficient to interrogate said first individual cell for the presence of a morphological or physiological characteristic; and a detector for measuring the response of said first individual cell to said interrogation.
- 73. The apparatus of claim 72, wherein said first individual cell is identified by the presence or absence of a first label.
- 74. The apparatus of claim 73, wherein said first label is a fluorescently-tagged antibody.
- 75. The apparatus of claim 73, wherein said first individual cell is labeled with a second label, wherein the first label is activated by said illumination source and the second label is activated by said energy beam.
- 76. The apparatus of claim 72, wherein said morphological or physiological characteristic is calcium flux.
- 77. The apparatus of claim 72, wherein said morphological or physiological characteristic is cell cycle status.
- 78. The apparatus of claim 72, wherein said morphological or physiological characteristic is cell mitotic history.
- 79. The apparatus of claim 72, wherein said morphological or physiological characteristic is viability.
- 80. The apparatus of claim 72, wherein said morphological or physiological characteristic is membrane integrity.
- 81. The apparatus of claim 72, wherein said morphological or physiological characteristic is intracellular pH.
- 82. The apparatus of claim 72, wherein said morphological or physiological characteristic is transmembrane potential.
- 83. The apparatus of claim 72, wherein said morphological or physiological characteristic is glutathione reductive stage.
- 84. The apparatus of claim 72, wherein said morphological or physiological characteristic is thiol activity.
- 85. The apparatus of claim 72, wherein said morphological or physiological characteristic is expression of a gene.
- 86. The apparatus of claim 72, wherein said morphological or physiological characteristic is photobleaching recovery.
- 87. The apparatus of claim 72, wherein said morphological or physiological characteristic is the response to internal molecular uncaging.
- 88. The apparatus of claim 72, wherein said response is non-lethal.
- 89. An apparatus for selectively inducing a response in one or more targeted cells within a biological specimen, comprising:
an illumination source for illuminating a frame of cells in said biological specimen; an image capture system that captures an image of said frame of cells; first commands for determining the locations of said one or more targeted cells within said image; an energy source that emits an energy beam sufficient to induce a response in at least one of said one or more targeted cells within said frame of cells; and a sensor that detects the amount of energy emitted by said energy source.
- 90. The method of claim 89, wherein said response is selected from the group consisting of cell death, optoporation, activation of a photosensitive agent, inactivation of a cell component, controlled movement, excitation of a fluorescent reagent, photobleaching and internal molecular uncaging.
- 91. The apparatus of claim 89, wherein said response is non-lethal.
- 92. The apparatus of claim 91, wherein said response is selected from the group consisting of optoporation, activation of a photosensitive agent, inactivation of a cell component, controlled movement, excitation of a fluorescent reagent, photobleaching and internal molecular uncaging.
- 93. A method for selectively inducing a response in one or more targeted cells within a biological specimen, comprising:
illuminating a frame of cells in said biological specimen; capturing an image of said frame of cells; determining the locations of said one or more targeted cells within said image; and steering an energy beam to the locations of said one or more targeted cells, wherein said energy beam is sufficient to induce a response in at least one of said one or more targeted cells.
- 94. The method of claim 93, wherein determining the locations of said one or more targeted cells comprises determining the presence of, or absence of, a label attached to said one or more targeted cells.
- 95. The method of claim 93, wherein capturing an image of said frame of cells comprises capturing an image of labeled cells.
- 96. The method of claim 93, wherein illuminating said frame of cells comprises illuminating said frame of cells with an excitation laser light source.
- 97. The method of claim 93, wherein said response is selected from the group consisting of cell death, optoporation, activation of a photosensitive agent, inactivation of a cell component, controlled movement, excitation of a fluorescent reagent, photobleaching and internal molecular uncaging.
- 98. The method of claim 93, wherein said response is non-lethal.
- 99. The method of claim 98, wherein said response is selected from the group consisting of optoporation, activation of a photosensitive agent, inactivation of a cell component, controlled movement, and excitation of a fluorescent reagent, photobleaching and internal molecular uncaging.
- 100. A method for rapidly inducing a response in individual cells within a cell population, said cell population being held in a container, comprising:
illuminating a first frame of cells in a first field-of-view in said cell population; capturing an image of said first frame of cells within said first field-of-view; determining the locations of first individual cells within said first frame of cells by reference to said image; and steering an energy beam to the locations of said first individual cells, wherein said energy beam is sufficient to induce a response in at least one of said first individual cells.
- 101. The method of claim 100, further comprising:
capturing an image of a second frame of cells within said first field-of-view; determining the locations of second individual cells within said second frame of cells by reference to said image; and steering an energy beam to the locations of said second individual cells within said second frame of cells, wherein said energy beam is sufficient to induce a response in at least one of said second individual cells.
- 102. The method of claim 100, further comprising:
illuminating a first frame of cells in a second field-of-view in said cell population; capturing an image of said first frame of cells within said second field-of-view; determining the locations of third individual cells within said first frame of cells within said second field-of-view by reference to said image; and steering an energy beam to the locations of said third individual cells, wherein said energy beam is sufficient to induce a response in at least one of said third individual cells.
- 103. The method of claim 102, wherein illuminating said first frame of cells in said second field-of-view comprises moving said container and illuminating said first frame of cells.
- 104. The method of claim 102, wherein said response is selected from the group consisting of cell death, optoporation, activation of a photosensitive agent, inactivation of a cell component, controlled movement, excitation of a fluorescent reagent, photobleaching and internal molecular uncaging.
- 105. The method of claim 102, wherein said response is non-lethal.
- 106. The method of claim 105, wherein said response is selected from the group consisting of optoporation, activation of a photosensitive agent, inactivation of a cell component, controlled movement, excitation of a fluorescent reagent, photobleaching and internal molecular uncaging.
- 107. A method for selectively inducing a response in one or more targeted cells within a biological specimen, comprising:
focusing a scanning lens on a field-of-view within said biological specimen, said field-of-view comprising a plurality of frames of cells; illuminating one or more frames of cells within said field-of-view; capturing an image of a first frame of cells in said field-of-view; determining the locations of said one or more targeted cells in said first frame of cells; emitting an energy beam sufficient to induce a response in at least one of said one or more targeted cells; and steering said energy beam to the locations of said one or more targeted cells within said first frame of cells.
- 108. The method of claim 107, wherein said response is selected from the group consisting of cell death, optoporation, activation of a photosensitive agent, inactivation of a cell component, controlled movement, and excitation of a fluorescent reagent.
- 109. The method of claim 107, wherein said response is non-lethal.
- 110. The method of claim 109, wherein said response is selected from the group consisting of optoporation, activation of a photosensitive agent, inactivation of a cell component, controlled movement, excitation of a fluorescent reagent, photobleaching and internal molecular uncaging.
- 111. The method of claim 107, wherein capturing an image of said first frame of cells comprises capturing an image of labeled cells.
- 112. The method of claim 107, wherein said illuminating one or more frames of cells comprises illuminating said one or more frames of cells with an excitation laser light source.
- 113. A method for inducing a response in one or more targeted cells within a cell population, comprising:
illuminating cells in said cell population; capturing an image of the illuminated cells; determining the locations of said one or more targeted cells within said image; emitting an energy beam sufficient to induce a response in at least one of said one or more targeted cells; and measuring the amount of energy contained in said energy beam; and steering said energy beam to the locations of said one or more targeted cells.
- 114. The method of claim 113, comprising measuring the amount of energy contained in said energy beam prior to steering said energy beam.
- 115. The method of claim 113, wherein said response is selected from the group consisting of cell death, optoporation, activation of a photosensitive agent, inactivation of a cell component, controlled movement, excitation of a fluorescent reagent, photobleaching and internal molecular uncaging.
- 116. The method of claim 113, wherein said response is non-lethal.
- 117. The method of claim 116, wherein said response is selected from the group consisting of optoporation, activation of a photosensitive agent, inactivation of a cell component, controlled movement, excitation of a fluorescent reagent, photobleaching and internal molecular uncaging.
- 118. An apparatus for determining a morphological or physiological characteristic of individual cells in a biological specimen, comprising:
an illumination source for illuminating a frame of cells in said biological specimen; an image capture system that captures an image of said frame of cells; first commands for determining the location of an individual cell in said biological specimen by reference to said image; an energy source that emits an energy beam sufficient to induce a response in at least one of the individual cells; second commands for intersecting said first individual cell with an energy beam sufficient to cause a change of a morphological or physiological characteristic of said first individual cell; and a detector for measuring a morphological or physiological characteristic of said first individual cell.
- 119. The apparatus of claim 118, wherein said response is non-lethal.
- 120. The apparatus of claim 119, wherein said response is selected from the group consisting of optoporation, activation of a photosensitive agent, inactivation of a cell component, controlled movement, excitation of a fluorescent reagent, photobleaching and molecular internal molecular uncaging.
- 121. An apparatus for determining a morphological or physiological characteristic of individual cells in a biological specimen comprising:
an illumination source for illuminating a frame of cells in said biological specimen, wherein said specimen contains a quantity of caged compounds; an image capture system that captures an image of said frame of cells; first commands for intersecting one or more of said quantity of caged compounds with an energy beam sufficient to uncage said one or more of said quantity of caged compounds; an energy source that emits an energy beam sufficient to uncage one or more of said quantities of caged compounds; and second commands to monitor the progress of the change in said morphological or physiological characteristic in response to the uncaged compounds of one or more of said quantity of caged compounds.
- 122. An apparatus for determining a morphological or physiological characteristic of individual cells in a biological specimen, comprising:
an illumination source for illuminating a frame of cells in said biological specimen; an image capture system that captures an image of said frame of cells; and first comands for determining the morphological or physiological characteristic of said individual cell in said frame of cells.
- 123. The apparatus of claim 122, wherein said morphological or physiological characteristic is calcium flux.
- 124. The apparatus of claim 122, wherein said morphological or physiological characteristic is cell cycle status.
- 125. The apparatus of claim 122, wherein said morphological or physiological characteristic is cell mitotic history.
- 126. The apparatus of claim 122, wherein said morphological or physiological characteristic is viability.
- 127. The apparatus of claim 122, wherein said morphological or physiological charactristic is membrane integrity.
- 128. The apparatus of claim 122, wherein said morphological or physiological characteristic is intracellular pH.
- 129. The apparatus of claim 122, wherein said morphological or physiological characteristic is transmembrane potential.
- 130. The apparatus of claim 122, wherein said morphological or physiological characteristic is glutathione reductive stage.
- 131. The apparatus of claim 122, wherein said morphological or physiological characteristic is thiol activity.
- 132. The apparatus of claim 122, wherein said morphological or physiological characteristic is expression of a gene.
- 133. The apparatus of claim 122, wherein said morphological or physiological characteristic is photobleaching recovery.
- 134. The apparatus of claim 122, wherein said morphological or physiological characteristic is the response to the internal molecular uncaging.
RELATED APPLICATION
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 09/451,659, filed on Nov. 30, 1999, which is a continuation-in-part of U.S. patent application Ser. No. 09/049,677, filed on Mar. 27, 1998, now U.S. Pat. No. 6,143,535 which is a continuation-in-part of U.S. patent application Ser. No. 08/824,968, filed on Mar. 27, 1997, now U.S. Pat. No. 5,874,266, issued on Feb. 23, 1999.
Continuation in Parts (3)
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Number |
Date |
Country |
Parent |
09451659 |
Nov 1999 |
US |
Child |
09728281 |
Nov 2000 |
US |
Parent |
09049677 |
Mar 1998 |
US |
Child |
09451659 |
Nov 1999 |
US |
Parent |
08824968 |
Mar 1997 |
US |
Child |
09049677 |
Mar 1998 |
US |