1460723695-e626e5a2-853f-4abf-bd75-4ce16830e6b4

1. A method of performing blepharoplasty, comprising:
inserting a laser fiber below the skin into at least one fat pad below an eye;
applying laser energy through the laser fiber to remove a percentage of the fat within the fat pad;
guiding the laser fiber with a guide.
2. The method of claim 1, wherein the inner diameter of the guide is equal to the outer diameter of the laser fiber.
3. The method of claim 1, further comprising:
inserting the laser fiber through three fat pads below the eye.
4. The method of claim 3, further comprising:
inserting the laser fiber laterally to the lateral canthus;
moving the fiber is a medial direction; and
pointing the laser fiber toward the skin surface.
5. The method of claim 4, wherein laser energy is first applied to a medial fat pad, secondly applied to a middle fat pad and lastly applied to a lateral fat pad.
6. The method of claim 1, further comprising:
monitoring the temperature of tissue about the fat pad being treated.
7. The method of claim 1, further comprising:
using a laser wavelength between 700 nm and 1470 nm.
8. The method of claim 1, further comprising:
using a continuous laser.
9. The method of claim 1, further comprising:
using a laser wavelength between 700 nm and 980 nm.
10. The method of claim 1, further comprising:
using a laser wavelength of 980 nm.
11. The method of claim 1, further comprising
applying laser energy externally to the lower eye lid
12. The method of claim 1, wherein the guide is at least one of a trocar, needle, endoprobe, cannula and catheter.
13. An apparatus for performing blepharoplasty below an individual’s eye, comprising:
a laser source, the laser source supplying laser energy having a wavelength between 700 nm and 980 nm;
a laser fiber connected to the laser source; and
a guide having an outer diameter for enabling the guide to be inserted below an individual’s eye, said laser fiber being positioned within the guide.
14. The apparatus of claim 12, wherein the guide is at lease one of a trocar, needle, endoprobe, cannula and catheter.
15. The apparatus of claim 12, wherein the laser fiber has an inside diameter between 400 to 1000 microns.
16. The apparatus of claim 12, wherein the laser fiber includes a temperature sensor.
17. The apparatus of claim 12, wherein the guide includes a temperature sensor.
18. The apparatus of claim 12, wherein the guide has an inner diameter substantially equal to the outer diameter of the laser fiber.
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 handbagwallet system for holding a user’s personal items including permitting easy access to a personal wireless telephone comprising, in combination:
(a) a body means, having at least one interior compartment, for carrying handbagwallet contents, said body means comprising an exterior surface, two side portions, and a top portion; and
(b) a substantially-entirely-elastic wireless-telephone holding means, attached to said exterior surface, for removably securing the wireless telephone to said body means.
2. The handbagwallet system of claim 1 further comprising a carrying means for providing hands-free carrying of said body means.
3. The handbagwallet system of claim 2 wherein said carrying means comprises a belt loop attached to said exterior surface.
4. The handbagwallet system of claim 2 wherein said carrying means comprises a cord removably attached to said body means.
5. The handbagwallet system of claim 4 wherein said cord is structured and arranged to provide for user option attachment arrangements to said body means, and said user option attachment arrangements comprising arrangements wherein:
(a) said cord is selectably coupled at substantially opposing ends across said top portion; and
(b) said cord is selectably coupled at substantially opposing ends across one of said side portions.
6. The handbagwallet system of claim 4 wherein said cord comprises an adjustable cord having a girth of adjustability sufficient to encircle the waist of the user.
7. The handbagwallet system of claim 1 wherein said elastic wireless-telephone holding means comprises a substantially elastic first external pocket having an opening.
8. The handbagwallet system of claim 7 wherein said first external pocket comprises a substantially nylon material.
9. The handbagwallet system of claim 7 wherein said opening is structured and arranged for placement adjacent to, and substantially parallel with, one of said side portions.
10. The handbagwallet system of claim 1 further comprising a second external pocket attached to said body means, said second external pocket having a second external pocket exterior surface.
11. The handbagwallet system of claim 10 further comprising a belt loop attached to said second external pocket exterior surface.
12. The handbagwallet system of claim 1 further comprising a closure means for closing said body means.
13. The handbagwallet system of claim 12 wherein said closure means comprises a zipper-type fastener.
14. The handbagwallet system of claim 1 further comprising an other at least one interior compartment comprising a pocket structured and arranged to hold an electronic device.
15. The handbagwallet system of claim 14 wherein said other at least one interior compartment further comprises a pouch structured and arranged to hold a stylus.
16. The handbagwallet system of claim 14 wherein said at least one interior compartment comprises a zipper-type closure.
17. The handbagwallet system of claim 1 wherein said at least one interior compartment comprises a pocket structured and arranged to hold an electronic device.
18. A handbagwallet system for holding a user’s personal items including permitting easy access to a personal wireless telephone comprising, in combination:
(a) a body having a rear compartment and a front compartment, said body comprising a front wall portion having a front wall portion exterior surface, a rear wall portion having a rear wall portion exterior surface, two side walls, a bottom portion, and a top portion;
(b) a rear external pocket attached to said rear wall portion exterior surface, said rear external pocket having a rear external pocket exterior surface;
(c) a substantially-entirely-elastic front external pocket, attached to said front wall portion exterior surface, having a front exterior pocket opening, said front external pocket structured and arranged to hold a wireless telephone;
(d) a belt loop attached to said rear external pocket exterior surface;
(e) said front compartment comprising a plurality of front compartment interior pockets for holding personal items; and
f) said rear compartment comprising a plurality of rear compartment interior pockets for holding personal items;
(g) wherein said front external pocket opening is structured and arranged for placement adjacent one of said side walls of said body.
19. The handbagwallet system of claim 18 further comprising a cord removably attached to said body.
20. The handbagwallet system of claim 19 wherein said cord is structured and arranged to provide for user option attachment arrangements to said body, said user option attachment arrangements comprising arrangements wherein:
(a) said cord is selectably coupled at substantially opposing ends across said top portion; and
(b) said cord is selectably coupled at substantially opposing ends across one of said side portions.
21. The handbagwallet system of claim 18 wherein said comprises an adjustable cord having a girth of adjustability sufficient to encircle the waist of the user.
22. The handbagwallet system of claim 18 wherein said rear compartment and said front compartment are each zipper-closable.
23. The handbagwallet system of claim 22 wherein at least one said zipper-closable compartment comprises a perimeter zipper extending around said compartment for at least about three-fourths of a perimeter of said compartment.
24. The handbagwallet system of claim 18 wherein said front compartment comprises:
a) a first interior surface and a second interior surface;
b) a first pocket attached to said first interior surface;
c) a second pocket, having a second pocket external surface, attached to said first interior surface and overlying said first pocket;
d) a third pocket attached to said second pocket external surface;
e) an insert comprising:
(i) a first end portion structured and arranged for removable placement within said first pocket, and
(ii) a second end portion having a plurality of pockets structured and arranged to receive credit card-type items;

f) a fourth pocket, having a fourth pocket external surface, attached to said second interior surface; and
g) a plurality of card pockets, attached to said fourth pocket external surface, structured and arranged to hold credit card-type items.
25. The handbagwallet system of claim 18 wherein said rear compartment comprises:
(a) a third interior surface and a fourth interior surface;
(b) a fifth pocket attached to said third interior surface;
(c) foldable side wall portions attached to, and extending between, said third interior surface and said fourth interior surface;
(d) a sixth pocket attached to said side wall portions;
(e) a seventh pocket defined by said fifth pocket, said sixth pocket, and said side wall portions;
(f) an eighth pocket attached to said fourth interior surface; and
(g) a ninth pocket defined by said eighth pocket, said sixth pocket, and said side wall portions.
26. The handbagwallet system of claim 25 wherein said sixth pocket is zipper-closable.
27. A system for convenient carrying of a wireless telephone comprising, in combination:
(a) a body, larger than a wireless telephone and having an external surface, said body being structured and arranged for the holding of useful items; and
(b) a substantially-entirely-elastic external pocket attached to said external surface, said pocket having at least one opening and being structured and arranged to hold a wireless telephone.
28. The system of claim 27 wherein said body comprises at least one compartment comprising a pocket structured and arranged to hold an electronic device.
29. The system of claim 28 wherein said at least one compartment further comprises a pouch structured and arranged to hold a stylus.
30. The system of claim 27 wherein said at least one compartment comprises a zipper-type closure.

1460723686-f65a3737-6d04-4098-8778-0eb5c9c062c8

1. A movable mechanism for using with an electrical apparatus, in which said electrical apparatus has a casing having a receptacle for mounting therein said movable mechanism, to be dissipated by at least one heat-dissipating device installed in said movable mechanism comprising a housing pivotally connected to said electrical apparatus in receptacle and having a slit for replaceably inserting therein said at least one heat-dissipating device.
2. The movable mechanism according to claim 1, further comprising at least one connector electrically connected to said electrical apparatus for connecting a corresponding connector of said at least one heat-dissipating device to be power-supplied by said electrical apparatus.
3. The movable mechanism according to claim 1, wherein said electrical apparatus is a systematic host.
4. The movable mechanism according to claim 1, wherein said electrical apparatus is a server.
5. The movable mechanism according to claim 1, wherein said housing is pivotally connected to said electrical apparatus in said receptacle by a pivot.
6. The movable mechanism according to claim 1, wherein said housing comprises two cages connected in series, each of which has a heat-dissipating device slit for replaceably inserting therein a corresponding heat-dissipating device.
7. The movable mechanism according to claim 1, wherein said housing is fixed in said electrical apparatus by screwing at a closed status.
8. The movable mechanism according to claim 1, wherein said housing is fixed in said electrical apparatus by buckling at a closed status.
9. The movable mechanism according to claim 1, wherein said heat-dissipating device is a heat-dissipating fan.
10. The movable mechanism according to claim 1, wherein said heat-dissipating device is adapted to be replaced by a hot swap process.
11. An electrical apparatus having a casing having a receptacle for mounting therein a movable mechanism having a housing having a slit for replaceably inserting therein at least one heat-dissipating device for dissipating said electrical apparatus.
12. The electrical apparatus according to claim 11, wherein said movable mechanism further comprises at least one connector electrically connected to said electrical apparatus for connecting a corresponding connector of said at least one heat-dissipating device to be power-supplied by said electrical apparatus.
13. The electrical apparatus according to claim 11, wherein said electrical apparatus is a systematic host.
14. The electrical apparatus according to claim 11, wherein said electrical apparatus is a server.
15. The electrical apparatus according to claim 11, wherein said housing is pivotally connected to said electrical apparatus in said receptacle by a pivot.
16. The electrical apparatus according to claim 11, wherein said housing comprises two cages connected in series, each of which has a heat-dissipating device slit for replaceably inserting therein a corresponding heat-dissipating device.
17. A movable mechanism for using with an electrical apparatus to be dissipated by plural heat-dissipating devices installed in said movable mechanism comprising plural cages connected in series and pivotally connected to said electrical apparatus, each of said cages has a slit for replaceably inserting therein a corresponding heat-dissipating device.
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 method for correcting defects in an imaging system comprising the steps of:
transmitting a digital image to at least one spatial light modulator;
capturing said resulting image;
comparing variations in intensity between each image pixel and at least one reference image pixel;
deriving a correction factor from said comparison;
determining gain of correction at each code value for each image pixel; and
applying said correction factor and gain to said digital image.
2. A method for correcting defects in an imaging system as in claim 1 wherein said resulting image is captured by a digital camera.
3. A method for correcting defects in an imaging system as in claim 1 wherein said spatial light modulator is a LCD.
4. A method for correcting defects in an imaging system as in claim 1 wherein said resulting image is captured by:
printing said resulting image; and
scanning said resulting image.
5. A method for correcting defects in an imaging system as in claim 1 wherein said transmitted digital image is a flatfield of single code value.
6. A method for correcting defects in an imaging system as in claim 1 wherein said gain is determined at specified code values.
7. A method for correcting defects in an imaging system as in claim 6 wherein said gain is determined by varying gain and visually selecting gain value.
8. A method for correcting defects in an imaging system as in claim 6 wherein said gain is determined by varying gain and measuring standard deviation.
9. A method for correcting defects in an imaging system as in claim 6 wherein said gain is determined by varying gain and measuring spatial frequency components.
10. A method for correcting defects in an imaging system as in claim 6 wherein said gain is determined for every code value.
11. A method for correcting defects in an imaging system as in claim 6 wherein said gain is determined at selected code values and best fit curve is determined.
12. A method for correcting defects in an imaging system as in claim 6 wherein said gain is constant for all code values.
13. A method for correcting defects in an imaging system as in claim 6 wherein said gain is linear as a function of code value.
14. A method for correcting defects in an imaging system as in claim 1 wherein said gain the first derivative of the response characteristic of the spatial light modulator.
15. A method for correcting defects as in claim 1 wherein defect maps are created at multiple code values.
16. A method for correcting defects in an imaging system as in claim 1 wherein multiple defect maps corresponding to multiple spatial light modulators are generated.
17. A method for correcting defects in an imaging system comprising the steps of:
transmitting a digital image data to at least one pixilated device;
displaying said resulting image;
capturing said resulting image;
comparing variations in intensity between each image pixel and at least one reference image pixel;
deriving a correction factor from said comparison;
determining gain of correction at each code value for each image pixel; and
applying said correction factor and gain to said digital image.
18. A method for correcting defects in an imaging system as in claim 17 wherein said resulting image is captured by a digital camera.
19. A method for correcting defects in an imaging system as in claim 17 wherein said spatial light modulator is selected from a group comprising an organic Light Emitting Diode array, a Light Emitting Diode array, a laser array, and a CRT.
20. A method for correcting defects in an imaging system as in claim 17 wherein said resulting image is captured by:
printing said resulting image; and
scanning said resulting image.
21. A method for correcting defects in an imaging system as in claim 17 wherein said transmitted digital image is a flatfield of single code value.
22. A method for correcting defects in an imaging system as in claim 17 wherein said gain is determined at specified code values.
23. A method for correcting defects in an imaging system as in claim 16 wherein said gain is determined by varying gain and visually selecting gain value.
24. A method for correcting defects in an imaging system as in claim 16 wherein said gain is determined by varying gain and measuring standard deviation.
25. A method for correcting defects in an imaging system as in claim 16 wherein said gain is determined by varying gain and measuring spatial frequency components.
26. A method for correcting defects in an imaging system as in claim 16 wherein said gain is determined for every code value.
27. A method for correcting defects in an imaging system as in claim 16 wherein said gain is determined at selected code values and best fit curve is determined.
28. A method for correcting defects in an imaging system as in claim 16 wherein said gain is constant for all code values.
29. A method for correcting defects in an imaging system as in claim 16 wherein said gain is linear as a function of code value.
30. A method for correcting defects in an imaging system as in claim 17 wherein said gain the first derivative of the response characteristic of the pixilated device.
31. A method for correcting defects as in claim 1 wherein defect maps are created at multiple code values.
32. A method for correcting defects in an imaging system as in claim 1 wherein multiple defect maps corresponding to multiple pixilated devices are generated.
33. A method for correcting defects in a spatial light modulator printing system comprising the steps of:
transmitting a digital image to a spatial light modulator based printing system;
printing said digital image;
scanning said printed image to produce a digital version of said printed image;
comparing variations in intensity between each image pixel and a reference image pixel;
deriving a correction factor from said comparison;
deriving a gain;
applying said correction factor and gain to said digital image; and
printing said corrected digital image.
34. A method for correcting defects in an imaging system comprising the steps of:
transmitting a digital image to at least one spatial light modulator;
displaying said resulting image;
comparing variations in intensity between each image pixel and at least one reference image pixel;
deriving a correction factor from said comparison;
determining gain of correction at each code value for each image pixel; and
applying said correction factor and gain to said digital image.