1. A tool box assembly, comprising a first case, and a second case pivotally mounted on the first case, wherein:
the first case has a side having a first end provided with a pivot member and a second end provided with a pivot seat; and
the second case has a side having a first end provided with a pivot member pivotally mounted on the pivot seat of the first case and a second end provided with a pivot seat on which the pivot member of the first case is pivotally mounted.
2. The tool box assembly in accordance with claim 1, wherein:
the pivot seat of the second case is formed on and protruded outward from the second case and has an inside formed with a clamping recess; and
the pivot member of the first case includes a protruding rib having a first end formed on and protruded outward from the first case, and a pivot shaft integrally formed on a second end of the protruding rib and pivotally mounted in the clamping recess of the pivot seat of the second case.
3. The tool box assembly in accordance with claim 2, wherein the protruding rib of the pivot member of the first case is substantially wedge-shaped.
4. The tool box assembly in accordance with claim 2, wherein the pivot shaft of the pivot member of the first case is parallel with the side of the first case.
5. The tool box assembly in accordance with claim 2, wherein the protruding rib of the pivot member of the first case is located at a mediate portion of the pivot shaft.
6. The tool box assembly in accordance with claim 2, wherein the clamping recess of the pivot seat of the second case is substantially arcuate shaped.
7. The tool box assembly in accordance with claim 2, wherein the clamping recess of the pivot seat of the second case has an opening facing outward.
8. The tool box assembly in accordance with claim 2, wherein the clamping recess of the pivot seat of the second case encompasses the pivot shaft of the pivot member of the first case to an extent exceeding half of a diameter of the pivot shaft of the pivot member of the first case.
9. The tool box assembly in accordance with claim 2, wherein the pivot seat of the second case has a mediate portion formed with a cutout extended through the mediate portion of the pivot seat of the second case.
10. The tool box assembly in accordance with claim 9, wherein the protruding rib of the pivot member of the first case is aligning with the cutout of the pivot seat of the second case.
11. The tool box assembly in accordance with claim 1, wherein the second case has a structure the same as that of the first case.
12. The tool box assembly in accordance with claim 1, wherein the pivot seat of the first case is formed on and protruded outward from the first case and has an inside formed with a clamping recess; and
the pivot member of the second case includes a protruding rib having a first end formed on and protruded outward from the second case, and a pivot shaft integrally formed on a second end of the protruding rib and pivotally mounted in the clamping recess of the pivot seat of the first case.
13. The tool box assembly in accordance with claim 12, wherein the protruding rib of the pivot member of the second case is substantially wedge-shaped.
14. The tool box assembly in accordance with claim 12, wherein the pivot shaft of the pivot member of the second case is parallel with the side of the second case.
15. The tool box assembly in accordance with claim 12, wherein the protruding rib of the pivot member of the second case is located at a mediate portion of the pivot shaft.
16. The tool box assembly in accordance with claim 12, wherein the clamping recess of the pivot seat of the first case is substantially arcuate shaped.
17. The tool box assembly in accordance with claim 12, wherein the clamping recess of the pivot seat of the first case has an opening facing outward.
18. The tool box assembly in accordance with claim 12, wherein the clamping recess of the pivot seat of the first case encompasses the pivot shaft of the pivot member of the second case to an extent exceeding half of a diameter of the pivot shaft of the pivot member of the second case.
19. The tool box assembly in accordance with claim 12, wherein the pivot seat of the first case has a mediate portion formed with a cutout extended through the mediate portion of the pivot seat of the first case.
20. The tool box assembly in accordance with claim 19, wherein the protruding rib of the pivot member of the second case is aligning with the cutout of the pivot seat of the first case.
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 system, comprising:
an image estimator that generates estimated native image data from data acquired when a K-edge material is present in a scanned region during data acquisition, wherein the estimated native image data is indicative of native image data generated from data acquired when the K-edge material is not present in the scanned region during the data acquisition, and the estimated native image data is generated based on a concentration of the K-edge material that displaces a replaceable material native to the subject during the data acquisition and an effective attenuation of the replaceable material native to the subject.
2. The system of claim 1, wherein the image estimator generates the estimated native image data based on an effective attenuation of the K-edge material.
3. The system of claim 1, wherein the K-edge material is a contrast agent, including one or more contrast materials.
4. The system of claim 2, further including a reconstructor that generates foreign image data, which is indicative of image data generated from the data acquired when the K-edge material is present in the scanned region during the data acquisition but excluding the attenuation of the K-edge material, and wherein the image estimator generates the estimated native image data based on the foreign image data.
5. The system of claim 4, wherein the image estimator includes:
a correction factor determiner that generates a correction factor for the foreign image data; and
an image generator that generates the estimated native image data based on the foreign image data and the correction factor.
6. The system of claim 5, wherein the image generator applies the correction factor to the foreign image data on a pixel-by-pixel or voxel-by-voxel basis to generate the estimated image data.
7. The system of claim 6, wherein the correction factor is a function of the concentration of the K-edge material that displaces the replaceable material native to the subject and an effective attenuation of the replaceable material.
8. The system of claim 7, wherein the replaceable material is one or more of blood, intercellular fluid, cerebral fluid, and spinal fluid.
9. The system of claim 6, wherein the concentration of the K-edge material is a function of the effective attenuation of K-edge material.
10. The system of claim 6, wherein the attenuation of the replaceable material is measured or estimated.
11. The system of claim 1, further including:
a modeller that generates a mathematical model for generating the estimated native image data, wherein the image estimator generates the estimated native image data based on the mathematical model.
12. A method, comprising:
generating first image data, which is indicative of image data generated from data acquired during a first imaging procedure performed without contrast, from image data acquired during a second imaging procedure performed with contrast, wherein the contrast displaces a material that would be present in the absence of the contrast, and further including determining an effective attenuation of the displaced material, wherein the act of generating the first image data includes generating the first image data based at least on the effective attenuation of the displaced material.
13. The method of claim 12, wherein the first image data and the image data generated from data acquired during the first imaging procedure performed without contrast have a common attenuation.
14. The method of claim 12, wherein the contrast includes a K-edge material, and further including determining an effective attenuation of the K-edge material, wherein the act of generating the first image data includes generating the first image data based at least on the effective attenuation of the K-edge material.
15. A method, comprising:
performing a contrast based spectral imaging procedure on a region of a subject or object, wherein the procedure includes using a contrast agent including at least one contrast material with a known K-edge energy;
generating image data based on image data generated from the spectral imaging procedure;
generating a correction factor for the image data, wherein the correction factor takes into account an effective attenuation of radiation absorbing material native to the subject or object that has been displaced by the contrast agent during the spectral imaging procedure and concentration of contrast agent displacing the radiation absorbing material; and
generating estimated native image data based on the image data and the correction factor.
16. The method of claim 15, wherein the estimated native image data is indicative of image data generated from an imaging procedure in which the contrast agent is not present in the scanned region of the subject or object.
17. The method of claim 15, wherein the contrast agent includes a K-edge material and the is a concentration of K-edge material that displaces the replaceable material native to the subject or object.
18. The method of claim 17, further including determining the concentration of the K-edge material based on an effective attenuation of K-edge material.
19. The method of claim 17, further including estimating the effective attenuation of the replaceable material.