1460719904-c675f6cf-758f-4711-b7c0-c035a339659f

1. A document-handling method comprising:
determining whether or not a top-level document refers to a second document as a template;
if not, executing a first method specified by said top-level document to yield a final presentation; and
if so,
executing said first method specified by said top-level document to yield a first presentation, and
executing a second method specified by said second document using said first presentation as an argument for said second method.
2. A method as recited in claim 1 further comprising:
determining whether or not said second document refers to a third document as a template; and
if not, executing a second method specified by said second document to yield a final presentation; and
if so, executing said second method to yield an intermediate second presentation.
3. A method as recited in claim 1 further comprising iteratively performing the following series of steps starting with N=2 and incrementing N each iteration until one of said documents is updated:
determining whether or not an Nth document refers to an (N+1)st document as a template; and
if so, executing said Nth method to yield an intermediate Nth presentation, and returning to said determining for the next iteration; and
if not, executing an Nth method specified by said Nth document so that at least one of said documents is updated.
4. A method as recited in claim 1 further comprising iteratively performing the following series of steps starting with N=2 and incrementing N each iteration until a final presentation is obtained:
determining whether or not an Nth document refers to an (N+1)st document as a template; and
if so, executing said Nth method to yield an intermediate Nth presentation, and returning to said determining for the next iteration; and
if not, executing an Nth method specified by said Nth document to yield a final presentation.
5. A method as recited in claim 4 wherein each said intermediate Nth presentations is an argument for an (N+1)st method associated with a respective (N+1)st document.
6. A method as recited in claim 5 wherein said (N+1)st method evaluates a variable present in said Nth presentation.
7. A method as recited in claim 4 further comprising displaying said final presentation but not any intermediate presentation.
8. A method as recited in claim 6 wherein said one of said methods adds or modifies a behavioral element to a presentation input to that method as an argument.
9. A method as recited in claim 6 wherein at least one of said methods conditions an action based on whether or not a presentation serving as an argument to that method includes a specified first behavior element.
10. A method as recited in claim 9 wherein that method generates a presentation that includes a second behavioral element that must be activated before said first behavioral element is activated.
11. A system comprising non-transitory computer-readable media encoded with code, said code defining documents, presentations corresponding to said documents, and a document handler for generating said presentations from said documents, said document handler providing for executing a (N+1)st method specified by an (N+1)st document so as to generate an (N+1)st presentation, wherein said (N+1)st method accepts as an argument an Nth presentation generated by an Nth method specified by an Nth document that refers to said (N+1)st document as a template, where N is an iteration index.
12. A system as recited in claim 11 further comprising one or more processors for executing code associated with said document handler.
13. A system as recited in claim 11 wherein said document handler provides for displaying a presentation generated by a method specified by a document that does not refer to another document as a template.
14. A system as recited in claim 13 wherein said document handler provides for not displaying presentations generated by methods specified by documents that do refer to other documents as templates.
15. A system as recited in claim 13 wherein plural documents refer to the same document as a template.
16. A system as recited in claim 11 wherein one of said methods updates one of said documents.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

What is claimed is:

1. A method of discriminating among similar items, the method comprising the steps of:
a. associating each of the items with a device responsive to a unique stimulus; and
b. exposing the items to a stimulus corresponding to a selected one of the items, the exposure causing the corresponding item, but not the other items, to impart an observable signal.
2. The method of claim 1 wherein each of the devices responds to a differently modulated light beam.
3. The method of claim 2 wherein the light beam is modulated by an AM frequency, each of the devices responding to modulation by a different AM frequency.
4. The method of claim 1 wherein the device comprises a processor that is maintained in a low-power shutdown mode until the unique stimulus is detected.
5. The method of claim 1 wherein the observable signal is a light signal.
6. The method of claim 1 wherein, upon exposure to the stimulus, the device emits the observable signal.
7. The method of claim 1 wherein, upon exposure to the stimulus, the device causes the observable signal to be emitted by the selected item.
8. The method of claim 1 wherein the signal is emitted by an external source and is blocked from observation by all items except, upon exposure, the selected item.
9. The method of claim 1 wherein the observable signal is a directly observable signal.
10. An identification system, the system comprising:
a transmitter for transmitting an interrogation signal comprising a transmitted identification associated with a selected tag;
a plurality of tags each containing a tag identification uniquely identifying the tag, the tag being responsive to an interrogation signal whose transmitted identification matches the tag identification; and
associated with each of the tags, a transducer, in communication with the tag identification, for imparting an observable signal upon response of the tag identification to the interrogation signal.
11. The identification system of claim 10 wherein the tag comprises a transducer for emitting a different signal if the transmitted identification does not match the tag identification.
12. The identification system of claim 10 wherein the transmitter is integrated within a wireless handheld device.
13. The identification system of claim 12 wherein the handheld device is a personal digital assistant.
14. The identification system of claim 10 wherein the observable signal is directly observable in the vicinity of the tag.
15. The identification system as claimed in claim 10 wherein the transmitted identification is incorporated in a light beam by modulation thereof.
16. The identification system of claim 10 wherein each tag responds to a differently modulated light beam.
17. The identification system of claim 15 wherein the light beam is modulated by an AM frequency, each of the tags responding to modulation by a different AM frequency.
18. The identification system of claim 10 wherein the tags are maintained in a low-power shutdown mode until the interrogation signal is detected.
19. The identification system of claim 10 wherein the observable signal is a light signal.
20. The identification system of claim 10 wherein, upon exposure to the interrogation signal, the tag emits the observable signal.
21. The identification system of claim 10 wherein, upon exposure to the stimulus, the tag causes the observable signal to be emitted by an item.
22. The identification system of claim 21 wherein the item is an electronic storage medium.
23. The identification system of claim 10 wherein the tag comprises a power source that supplies an operating current for the tag.
24. The identification system of claim 23 wherein the tag operates in a sleep mode when not processing the interrogation signal.
25. The identification system of claim 24 wherein the power source supplies an operating current less than or equal to 500 nanoamps when the tag is in the sleep mode.
26. The identification system of claim 10 wherein the observable signal is audible.
27. The identification system of claim 10 wherein the observable signal is visible.
28. An identification tag that identifies a unique object having a generic appearance, the tag comprising:
a receiver for receiving an interrogation signal comprising an object identification;
a memory for storing a tag identification uniquely identifying the tag; and
a device for emitting an observable signal in response to the interrogation signal when the object identification matches the tag identification, wherein the object identification uniquely identifies the object from among a plurality of objects having a similar appearance.
29. The identification tag of claim 28 further comprising a power source that supplies an operating current for the tag.
30. The identification tag of claim 29 wherein the tag operates in a sleep mode when not processing the interrogation signal.
31. The identification tag of claim 30 wherein the power source supplies an operating current less than or equal to 500 nanoamps when the tag is in the sleep mode.
32. The identification tag of claim 28 wherein the tag is configured for integration within a media item, the memory receiving the tag identification when information is transferred to the media item.
33. The identification tag of claim 32 wherein the tag identification is read when data is transferred to the media item.
34. The identification tag of claim 28 wherein the interrogation signal is a modulated light beam.
35. The identification tag of claim 28 wherein the observable signal is audible.
36. The identification tag of claim 28 wherein the observable signal is visible.

1460719893-1563a30c-30b3-4658-886e-ba923d3525c9

We claim:

1. A method for inducing an immune response in a human or animal wherein said human or animal has a deficiency in CD4 T cells, said method comprising the step of administering to a human or animal deficient in T cells an immunogenic composition comprising a sialic acid binding component and at least one antigen of a target cell or target virus, whereby a humoral immune response specific for at least one antigen of the target cell or target virus is induced.
2. The method of claim 1 wherein the immune response is a humoral immune response.
3. The method of claim 1 wherein said sialic acid binding component is a hemagglutinin.
4. The method of claim 2 wherein said hemagglutinin is a viral hemagglutinin.
5. The method of claim 4 wherein said viral hemagglutinin is from an orthomyxovirus.
6. The method of claim 5 wherein said viral hemagglutinin is from influenza virus.
7. The method of claim 4 wherein said viral hemagglutinin is from a paramyxovirus.
8. The method of claim 4 wherein said viral hemagglutinin is comprised in an attenuated virus preparation.
9. The method of claim 4 wherein said viral hemagglutinin is comprised within an inactivated virus preparation.
10. The method of claim 8 wherein the virus preparation is inactivated with formalin or propiolactone.
11. The method of claim 4 wherein the at least one antigen of a target cell is from a bacterial pathogen cell.
12. The method of claim 11 wherein the bacterial pathogen cell has a sialic acid capsule and wherein said capsule in present in said immunogenic composition.
13. The method of claim 12 wherein said bacterial pathogen is Neisseria meningitidis.
14. The method of claim 12 wherein said bacterial pathogen is Eseherichia coli.
15. The method of claim 2 herein said target cell is a tumor cell.
16. The method of claim 2 wherein said target virus is an enveloped virus.
17. The method of claim 16 wherein said enveloped virus is simian immunodeficiency virus, human immunodeficiency virus, feline immunodeficiency virus, or bovine immunodeficiency virus, rabies virus, measles virus, vesicular stomatitis virus, flavivirus, alphavirus or herpes virus.
18. The method of claim 17 wherein said alphavirus is Sindbis virus, Semliki forest virus, Venezuelan equine encephalitis virus, eastern equine encephalitis virus, western equine encephalitis virus, Ross River virus, Mayaro virus, O’nyong-nyong virus or chikungunya virus.
19. The method of claim 17 wherein the flavivirus is Dengue virus, yellow fever virus, St. Louis encephalitis virus, Japanese encephalitis virus, Murray Valley encephalitis virus, West Nile virus, Rocio virus, tick-bome encephalitis virus, Omsk hemorrhagic fever virus, Kyasanur Forest disease virus, or Powassan virus.
20. The method of claim 9 wherein the immunogenic composition comprises an inactivated virus comprising a hemagglutinin or inactivated target cell or target virus and a carrier.
21. An immunogenic composition comprising a sialic acid binding component and an inactivated or attenuated target cell or an inactivated or attenuated target virus.
22. The immunogenic composition of claim 21 wherein said sialic acid binding component is a hemagglutinin of an orthomyxovirus or a paramyxovirus.
23. The immunogenic composition of claim 21 wherein said sialic acid binding component is comprised in an inactivated or attenuated preparation of an orthomyxovirus or paramyxovirus.
24. The immunogenic composition of claim 22 further comprising a virus like particle or an inactivated or attenuated sialic acid containing virus preparation.
25. The immunogenic composition of claim 24 wherein said virus preparation is an enveloped virus preparation.
26. The immunogenic composition of claim 25 wherein said is an inactivated tumor cell. virus preparation is a preparation of simian immunodeficiency virus, human immunodeficiency virus, feline immunodeficiency virus, or bovine immunodeficiency virus, rabies virus, measles virus, vesicular stomatitis virus, flavivirus, alphavirus or herpes virus.
27. The immunogenic composition of claim 26 wherein said alphavirus is Sindbis virus, Semliki forest virus, Venezuelan equine encephalitis virus, eastern equine encephalitis virus, western equine encephalitis virus, Ross River virus, Mayaro virus, O’nyong-nyong virus or chikungunya virus.
28. The immunogenic composition of claim 26 wherein the flavivirus is Dengue virus, yellow fever virus, St. Louis encephalitis virus, Japanese encephalitis virus, Murray Valley encephalitis virus, West Nile virus, Rocio virus, tick-borne encephalitis virus, Omsk hemorrhagic fever virus, Kyasanur Forest disease virus, or Powassan virus.
29. The immunogenic composition of claim 21 wherein the target cell is a tumor cell.
30. The method of claim 21 wherein the at least one antigen of a target cell is from a bacterial pathogen cell.
31. The method of claim 30 wherein the bacterial pathogen cell has a sialic acid capsule and wherein said capsule in present in said immunogenic composition.
32. The method of claim 31 wherein said bacterial pathogen is Neisseria meningitidis.
33. The method of claim 30 wherein said bacterial pathogen is Escherichia coli.
34. An immunogenic composition comprising a sialic acid binding component and at least one antigen of a target cell or target virus.
35. The immunogenic composition of claim 34 wherein the sialic acid binding component is a hemagglutinin of an orthomyxovirus or a paramyxovirus.
36. The immunogenic composition of claim 35 wherein the composition comprises inactivated or attenuated orthomyxovirus or paramyxovirus.
37. The immunogenic composition of claim 34 wherein the at least one antigen of a target cell or target virus comprises sialic acid or polymerized sialic acid.
38. The immunogenic composition of claim 37 wherein the at least one antigen of a target cell or target virus is comprised within inactivated or attenuated target cell or inactivated or attenuated target virus or virus-like particles of a target virus.
39. The immunogenic composition of claim 38 wherein the target cell is Neisseria meningitidis or Escherichia coli.
40. The immunogenic composition of claim 38 wherein the target virus is simian immunodeficiency virus, human immunodeficiency virus, feline immunodeficiency virus, or bovine immunodeficiency virus, rabies virus, measles virus, vesicular stomatitis virus, flavivirus, alphavirus or herpes virus.
41. The immunogenic composition of claim 40 wherein said alphavirus is Sindbis virus, Semliki forest virus, Venezuelan equine encephalitis virus, eastern equine encephalitis virus, western equine encephalitis virus, Ross River virus, Mayaro virus, O’nyong-nyong virus or chikungunya virus.
42. The immunogenic composition of claim 40 wherein the flavivirus is Dengue virus, yellow fever virus, St. Louis encephalitis virus, Japanese encephalitis virus, Murray Valley encephalitis virus, West Nile virus, Rocio virus, tick-borne encephalitis virus, Omsk hemorrhagic fever virus, Kyasanur Forest disease virus, or Powassan virus.
43. The immunogenic composition of claim wherein the target cell is a tumor cell.
44. A method for inducing an immune response in a human or animal, said method comprising the steps of administering an immunogenic composition comprising a sialic acid binding compo component and at least one antigen of a target cell or target virus, whereby a humoral immune response specific for at least one antigen of the target cell or target virus is induced.
45. The method of claim 44 wherein the immune response is a humoral immune response.
46. The method of claim 45 wherein said sialic acid binding component is a hemagglutinin.
47. The method of claim 46 wherein said hemagglutinin is a viral hemagglutinin.
48. The method of claim 47 wherein said viral hemagglutinin is from an orthomyxovirus or a paramyxovirus.
49. The method of claim 48 wherein said viral hemagglutinin is from influenza virus.
50. The method of claim 47 wherein said viral hemagglutinin is comprised in an attenuated virus preparation.
51. The method of claim 47 wherein said viral hemagglutinin is comprised within an inactivated virus preparation.
52. The method of claim 51 wherein the virus preparation is inactivated with formalin or propiolactone.
53. The method of claim 46 wherein the at least one antigen of a target cell is from a bacterial pathogen cell.
54. The method of claim 53 wherein the bacterial pathogen cell has a sialic acid capsule and wherein said capsule in present in said immunogenic composition.
55. The method of claim 54 wherein said bacterial pathogen is Neisseria meningitidis or Escherichia coli.
56. The method of claim 46 wherein said target cell is a tumor cell.
57. The method of claim 56 wherein said target virus or is an enveloped virus.
58. The method of claim 57 wherein said enveloped virus is simian immunodeficiency virus, human immunodeficiency virus, feline immunodeficiency virus, or bovine immunodeficiency virus, rabies virus, measles virus, vesicular stomatitis virus, flavivirus, alphavirus or herpes virus.
59. The method of claim 58 wherein said alphavirus is Sindbis virus, Semliki forest virus, Venezuelan equine encephalitis virus, eastern equine encephalitis virus, western equine encephalitis virus, Ross River virus, Mayaro virus, O’nyong-nyong virus or chikungunya virus.
60. The method of claim 58 wherein the flavivirus is Dengue virus, yellow fever virus, St. Louis encephalitis virus, Japanese encephalitis virus, Murray Valley encephalitis virus, West Nile virus, Rocio virus, tick-borne encephalitis virus, Omsk hemorrhagic fever virus, Kyasanur Forest disease virus, or Powassan virus.
61. The method of claim 62 wherein the immunogenic composition comprises an inactivated virus comprising a hemagglutinin or inactivated target cell or target virus and a carrier.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A charge detector including an outer housing including an entrance aperture, the detector further including a charge capture element disposed within said outer housing and electrically isolated from said outer housing, wherein said charge capture element includes a plurality of apertures and a conductive surface facing substantially away from said entrance aperture.
2. A charge detector according to claim 1 further including an electrical contact electrically connected to said conductive surface of said charge capture element and extending from said charge capture element through said housing, said electrical contact being electrically isolated from said housing.
3. A charge detector according to claim 2 further including a signal line extending from said electrical contact for conducting a current signal.
4. A charge detector according to claim 3 wherein the signal line includes at least one inner signal line and an outer electrical shield separated from said at least one inner signal line by an insulator.
5. A charge detector according to claim 3 wherein said signal line is further adapted to conduct a voltage to said detector surface.
6. A charge detector according to claim 1 wherein the housing is includes an electrical contact point.
7. A charge detector system including:
a charge detector including an outer housing including an entrance aperture, a charge capture element disposed within said outer housing, an electrical contact electrically connected to said charge capture element and extending from said charge capture element through said housing, said charge capture element and said electrical contact being electrically isolated from said housing, wherein said charge capture element includes a plurality of apertures and a conductive surface facing substantially away from said entrance aperture; said system further including:
a signal line; and
a control circuit;
wherein the signal line extends from said charge detector to said control circuit, wherein the control circuit is adapted to measure a signal in said signal line and to provide an output signal indicative of a charge captured by said charge capture surface.
8. A charge detector system according to claim 7 wherein the control circuit provides the output signal to a visual display.
9. A charge detector system according to claim 7 wherein the output signal indicative of the charge captured by said charge capture element is a current signal.
10. A charge detector system according to claim 7 wherein the control circuit includes an RMS converter for converting a time varying signal to an RMS signal.
11. A charge detector system according to claim 7 wherein the control circuit includes a bias circuit for providing a bias voltage to said charge capture element.
12. A charge detector system according to claim 11 wherein the bias voltage is provided to the charge capture surface through the signal line.
13. A charge detector system according to claim 7 wherein the control circuit includes a signal amplifier for amplifying the signal received from the charge detector.
14. A charge detector system according to claim 7 further including a temperature sensor, the signal line including at least one line for conducting a temperature indicating signal from said temperature sensor to said control circuitry.
15. A charge detector system according to claim 7 wherein the signal line includes a temperature sensor in thermal contact with said charge detector for measuring the temperature of said charge detector.
16. A charge detector system according to claim 15 wherein the signal line includes a thermocouple at an end of said signal line connected to said charge detector.
17. A charge detector system according to claim 16 wherein the control circuitry includes switching circuitry for switching between a charge measuring mode and a temperature measuring mode.
18. A charge detector system according to claim 17 wherein the control circuitry removes a bias voltage from said signal line during said temperature measuring mode.