1460742194-12145595-8c7b-4bf7-a5dc-192b25bc1e57

1. A method for selectively processing a digital image, said method comprising:
a) performing segmentation on an image thereby dividing said image into content regions;
b) estimating a complexity measure for each of said regions, said complexity measure being based on said regional attributes;
c) performing an image enhancement process on a region only when said complexity measure meets a criterion.
2. A method for selectively processing a digital image, said method comprising:
a) performing segmentation on a non-object-based image data set thereby dividing said image data set into content regions;
b) obtaining process performance data for a process wherein said performance data relates to image complexity;
c) estimating a complexity measure for each of said regions, said complexity measure being related to said process performance data;
d) performing an image enhancement process on a region when said complexity measure for said region meets a criterion.
3. A method as described in claim 2 further comprising performing an alternative image enhancement process on said region when said complexity measure for said region does not meet said criterion.
4. A method as described in claim 2 further comprising performing a global image enhancement process on said image when said complexity measure for said region does not meet said criterion.
5. A method as described in claim 2 further comprising performing an alternative image enhancement process on said region when said complexity measures for a plurality of said regions do not meet said criterion.
6. A method as described in claim 2 further comprising performing an alternative image enhancement process on said region when said complexity measure for said region meets a second criterion.
7. A method for selectively processing a digital image, said method comprising:
a) performing segmentation on an image thereby dividing said image into content regions;
b) estimating a complexity measure for each of said regions, said complexity measure being based on said regional attributes;
c) performing a variable image enhancement process on a region such that a variable aspect of said image enhancement process is performed in proportion to said complexity measure for said region.
8. An apparatus for selectively processing a digital image, said apparatus comprising:
a) a segmenter for performing segmentation on an image thereby dividing said image into content regions;
b) an estimator for estimating a complexity measure for each of said regions, said complexity measure being based on said regional attributes; and
c) a processor for performing an image enhancement process on a region when said complexity measure meets a criterion.
9. An apparatus for selectively processing a digital image, said apparatus comprising:
a) a non-object-based image data set
b) a segmenter for performing segmentation on said image data set thereby dividing said image into content regions;
c) process performance data for a process wherein said performance data relates to image complexity;
d) an estimator for estimating a complexity measure for each of said regions, said complexity measure being related to said process performance data;
e) a processor for performing an image enhancement process on a region when said complexity measure for said region meets a criterion.

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. An orthodontic band seating tool comprising:
a shaft extending in a longitudinal direction, the shaft comprising a shaft member and an adjustment member, the adjustment member moveably coupled to the shaft member for translational movement in the longitudinal direction relative to the shaft member; and
first and second spaced-apart claws extending away from an end of the shaft, each claw having an end portion further comprising an engagement feature having a surface positionable against an edge of the band;
wherein the end portion of the first claw extends toward the second claw and the end portion of the second claw extends toward the first claw; and
wherein one of the first and second claws is coupled to each of the shaft member and the adjustment member such that relative movement between the shaft member and the adjustment member in the longitudinal direction causes corresponding relative movement between the first and second claws in the longitudinal direction.
2. A tool according to claim 1 wherein the first and second claws are concave shaped and the end portion of the first claw curves towards the second claw and the end portion of the second claw curves toward the first claw.
3. A tool according to claim 1 wherein at least one of the claws is pivotally coupled to the shaft via a pivot joint.
4. A tool according to claim 3 wherein the shaft comprises a first stop surface located to abut against a corresponding first surface of the at least one of the claws when the pivot joint reaches a first angular configuration and to thereby prevent further pivotal movement of the pivot joint in a first angular direction.
5. A tool according to claim 4 comprising a biasing mechanism for applying a bias force to the at least one of the claws, the bias force tending to maintain the pivot joint in the first angular configuration.
6. A tool according to claim 5 wherein the shaft comprises a second stop surface located to abut against a corresponding second surface of the at least one of the claws when the pivot joint reaches a second angular configuration and to thereby prevent further pivotal movement of the pivot joint in a second angular direction.
7. An orthodontic band seating tool comprising:
a shaft;
first and second spaced-apart claws extending away from an end of the shaft, each claw having an end portion further comprising an engagement feature having a surface positionable against an edge of the band; and
a bite-receiving member having a bite-receiving surface for receiving force applied to the tool by one or more opposing teeth of the patient and a trunk portion for transferring the force received on the bite-receiving surface to the claws and their corresponding engagement features;
wherein the end portion of the first claw extends toward the second claw and the end portion of the second claw extends toward the first claw and wherein at least one of the claws is pivotally coupled to the shaft via a pivot joint.
8. A tool according to claim 7 wherein the bite-receiving member comprises a safety portion which extends from the trunk portion, through the shaft assembly and between the pair of claws.
9. A tool according to claim 3, wherein each engagement feature comprises a notch having a catch ledge for engaging the edge of the band and a guide surface for engaging an outer surface of the band.
10. (canceled)
11. A tool according to claim 1 wherein the claw coupled to the adjustment member is integrally formed with the adjustment member.
12. An orthodontic band seating tool comprising:
a shaft; and
first and second spaced-apart claws extending away from an end of the shaft, each claw having an end portion further comprising an engagement feature having a surface positionable against an edge of the band;
wherein the end portion of the first claw extends toward the second claw and the end portion of the second claw extends toward the first claw;
wherein the shaft comprises a shaft member and an adjustment member moveably coupled to the shaft member and wherein one of the first and second claws is coupled to each of the shaft member and the adjustment member such that relative movement between the shaft member and the adjustment member causes corresponding relative movement between the first and second claws; and
wherein the shaft comprises a ratchet mechanism for locking a position of the adjustment member relative to the shaft member.
13. An orthodontic band seating tool comprising:
a shaft; and
first and second spaced-apart claws extending away from an end of the shaft, each claw having an end portion further comprising an engagement feature having a surface positionable against an edge of the band;
wherein the end portion of the first claw extends toward the second claw and the end portion of the second claw extends toward the first claw;
wherein the shaft comprises a shaft member and an adjustment member moveably coupled to the shaft member and wherein one of the first and second claws is coupled to each of the shaft member and the adjustment member such that relative movement between the shaft member and the adjustment member causes corresponding relative movement between the first and second claws; and
wherein the shaft member comprises one or more adjustment features for selectively engaging one or more corresponding adjustment features of the adjustment member and thereby locking a position of the adjustment member relative to the shaft member.
14. A tool according to claim 13 wherein the adjustment features on the shaft member and the corresponding adjustment features on the adjustment member are saw-tooth shaped.
15. A tool according to claim 13 wherein the shaft comprises an engagement mechanism having a first configuration wherein the one or more adjustment features of the shaft member engage the one or more corresponding adjustment features of the adjustment member and a second configuration wherein the one or more adjustment features of the shaft member are disengaged from the one or more corresponding adjustment features of the adjustment member.
16. An orthodontic band seating tool comprising:
a shaft; and
first and second spaced-apart claws extending away from an end of the shaft, each claw having an end portion further comprising an engagement feature having a surface positionable against an edge of the band;
wherein the end portion of the first claw extends toward the second claw and the end portion of the second claw extends toward the first claw;
wherein the shaft comprises a shaft member and an adjustment member moveably coupled to the shaft member and wherein one of the first and second claws is coupled to each of the shaft member and the adjustment member such that relative movement between the shaft member and the adjustment member causes corresponding relative movement between the-first and second claws; and
wherein the adjustment member comprises a hand actuatable tab coupled to a pivotal joint, the tab comprising one or more adjustment features for selectively engaging one or more corresponding adjustment features of the shaft member and thereby locking a position of the adjustment member relative to the shaft member.
17. A tool according to claim 16 wherein the adjustment features on the tab and the corresponding adjustment features on the shaft member are saw-tooth shaped.
18. A tool according to claim 16 wherein the tab comprises a lever portion for adjusting the pivotal joint between the tab and the shaft member between a first configuration wherein the one or more adjustment features of the tab engage the one or more corresponding adjustment features of the shaft member and a second configuration wherein the one or more adjustment features of the tab are disengaged from the one or more corresponding adjustment features of the shaft member.
19. A tool according to claim 18 wherein the pivotal joint between the tab and the adjustment member is biased toward the first configuration.
20. A tool according to claim 1 wherein the claw coupled to the shaft member is pivotally coupled.
21. A tool according to claim 1 wherein each engagement feature comprises a notch having a catch ledge for engaging the edge of the band and a guide surface for engaging an outer surface of the band.
22. A tool according to claim 21 wherein an angle between the catch ledge and the guide surface is in a range of 30-90 degrees.
23. A tool according to claim 21 wherein a dimension of the guide surface is in a range of 0.5-3 mm.
24. A tool according to claim 21 wherein a dimension of the catch ledge is in a range of 0.2-1 mm.
25. A tool according to claim 1 wherein each engagement feature comprises at least one of: one or more indents and one or more protrusions.
26. An orthodontic band seating tool comprising:
a shaft;
first and second spaced-apart claws extending away from an end of the shaft, each claw having an end portion further comprising an engagement feature having a surface positionable against an edge of the band; and
a safety member which extends from the shaft and between the first and second claws;
wherein the end portion of the first claw extends toward the second claw and the end portion of the second claw extends toward the first claw.
27. A tool according to claim 26 wherein at least one of the claws is pivotally coupled to the shaft via a pivot joint.
28. A tool according to claim 26 wherein the shaft comprises a shaft member and an adjustment member moveably coupled to the shaft member and wherein one of the pair of claws is coupled to each of the shaft member and the adjustment member such that relative movement between the shaft member and the adjustment member causes corresponding relative movement between the claws.
29. A tool according to claim 28, wherein each engagement feature comprises a notch having a catch ledge for engaging the edge of the band and a guide surface for engaging a outer surface of the band.
30. A tool for seating an orthodontic band on a tooth of a patient, the tool comprising:
an elongated shaft assembly; and
a pair of claws which comprise concave body portions that are spaced apart from one another and which comprise end portions that extend toward one another as the claws extend away from the shaft assembly, the end portion of each claw comprising a corresponding engagement feature for engaging an edge of the band on a corresponding side thereof;
wherein force applied to the tool is transferable to opposite sides of the edge of the band via the corresponding engagement features of the claws; and
wherein the concave body portions of the pair of claws are spaced apart sufficiently far that the concave body portions of the claws do not contact the tooth during application of force to the band.
31. (canceled)
32. A tool according to claim 30 wherein at least one of the claws is pivotally coupled to the shaft assembly via a pivot joint.
33. A tool according to claim 30 wherein the shaft assembly comprises a shaft member and an adjustment assembly moveably coupled to the shaft member and wherein one of the pair of claws is coupled to each of the shaft member and the adjustment assembly, such that relative movement between the shaft member and the adjustment assembly causes corresponding relative movement between the claws.
34. A tool for seating an orthodontic band on a tooth of a patient, the tool comprising:
an elongated shaft assembly;
a pair of claws which are spaced apart from one another and which comprise end portions that extend toward one another as the claws extend away from the shaft assembly the end portion of each claw comprising a corresponding engagement feature for engaging an edge of the band on a corresponding side thereof; and
a ratchet mechanism for locking a position of the adjustment assembly relative to the shaft member;
wherein the shaft assembly comprises a shaft member and a adjustment assembly moveably coupled to the shaft member and wherein one of the fair of claws is coupled to each of the shaft member and the adjustment assembly, such that relative movement between the shaft member and the adjustment assembly causes corresponding relative movement between the claws; and
wherein force applied to the tool is transferable to opposite sides of the edge of the band via the claws and their corresponding engagement features.
35. A tool according to claim 31 wherein each engagement feature comprises a notch having a catch ledge for engaging the edge of the band and a guide surface for engaging an outer surface of the band.
36. A tool according to claim 30 comprising a safety member which extends from the shaft assembly and between the pair of claws.
37. A tool according to claim 35 wherein the guide surface is concave in a direction transverse to a direction which the claws extend away from the shaft assembly.
38. A tool according to claim 9 wherein the guide surface is concave in a direction transverse to a direction which the claws extend away from the shaft assembly.