1460745489-bda50a05-086b-4490-941e-0aff17100d60

1. An image playback method that performs a slide show of a sequential display of a plurality of image data including a moving image stored in a memory unit while each being switched at predetermined time intervals, the plurality of image data being capable of including a moving image data and a still image data, the method comprising:
judging whether the moving image data for the slide show conforms to a predetermined condition for the slide show prior to the slide show;
processing the moving image data to create a new moving image data to conform to the predetermined condition for the slide show, when the moving image data is judged to fail to conform to the predetermined condition; and
performing the slide show by using the created new moving image data.
2. An image playback method according to claim, further comprising:
inputting a number n of images of the plurality of image data for the slide show and a selection condition; and
extracting the n image data as a maximum value that satisfy the input selection condition as the image data used for the slide show.
3. An image playback method according to claim 1, further comprising:
playing back music during the slide show; and
selecting the music, wherein:
upon selection of the music, the music is made audible for audition and is played back with lower sound quality than the music to be played back in an actual slide show.
4. An image playback method according to claim 1, further comprising:
selecting a display effect for the slide show, wherein:
upon selection of the display effect, the display effect is allowed to be previewed on a display simpler than an actually performed slide show.
5. An image playback method according to claim 1, further comprising:
using a reduced image for the slide show with a size of the reduced image smaller than an original image file stored in the memory unit, as the image file for the slide show.
6. An image playback method according to claim 5, further comprising
adding a read only property to the original image file corresponding to the reduced image file for the slide show.
7. An image playback method according to claim 1, further comprising:
processing a music file into a format suitable for a playback performed by an image playback apparatus; and
transferring the processed music file to the image playback apparatus.
8. An image playback method according to claim 1, further comprising:
producing an analysis file that defines a display mode for the slide show of a music file; and
transferring the music file and the analysis file to an image playback apparatus.
9. An image playback apparatus, comprising:
a control unit that executes the image playback method according to claim 1.
10. An image playback apparatus, comprising:
a control unit that executes the image playback method according to claim 2.
11. An image playback apparatus, comprising:
a control unit that executes the image playback method according to claim 3.
12. An image playback apparatus, comprising:
a control unit that executes the image playback method according to claim 4.
13. An image playback apparatus, comprising:
a control unit that executes the image playback method according to claim 5.
14. A computer-readable computer program product comprising:
an image playback program that allows a computer to execute the image playback method according to claim 1.
15. A computer-readable computer program product comprising:
an image playback program that allows a computer to execute the image playback method according to claim 2.
16. A computer-readable computer program product comprising:
an image playback program that allows a computer to execute the image playback method according to claim 3.
17. A computer-readable computer program product comprising:
an image playback program that allows a computer to execute the image playback method according to claim 4.
18. A computer-readable computer program product comprising:
an image playback program that allows a computer to execute the image playback method according to claim 5.
19. A computer-readable computer program product comprising:
a music processing program that allows a computer to execute the image playback method according to claim 7.
20. A computer-readable computer program product comprising:
a music processing program that allows a computer to execute the image playback method according to claim 8.
21. An image playback method according to claim 1, wherein
the predetermined condition for the slide show relates to at least one of a file format, an image size, a frame rate and a playback time of the moving image data for the slide show.
22. An image playback method according to claim 1, wherein
the predetermined condition for the slide show includes a predetermined playback time of the moving image data for the slide show;
the judging includes judging whether a playback time of the moving image data for the slide show is longer than the predetermined playback time; and
the processing includes processing the moving image data to create the new moving image data so that a playback time of the created new moving image data for the slide show becomes shorter than the predetermined playback time, when the playback time of the moving mage data for the slide show is judged to be longer than the predetermined playback time.

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 for ablating tissue comprising:
an RF ablation device, wherein the RF ablation device is configured to transition from a compressed condition to a relaxed condition, and wherein the RF ablation device is configured to automatically transmit dimensional data to the RF generator; and
an RF generator coupled to the RF ablation device, wherein the RF generator is configured to receive the dimensional data corresponding to tissue to be ablated, and wherein the RF generator is configured to automatically select an RF power based on the dimensional data, and wherein the RF generator is configured to provide an RF signal at the selected RF power to the RF ablation device.
2. The system of claim 1 further comprising:
a DC resistance detector for measuring a DC resistance of the RF ablation device.
3. The system of claim 1 wherein the RF generator is configured to test an RF impedance of the tissue.
4. A system for ablating tissue comprising:
an RF ablation device, wherein the RF ablation device includes an applicator head comprising a plurality of flexures, wherein the RF ablation device is configured to cause the plurality of flexures to transition from a compressed condition to a relaxed condition, and wherein the RF ablation device is configured to determine the dimensional data by transducing a distance of separation of two of the flexures when in the relaxed condition;
an RF generator coupled to the RF ablation device, wherein the RF generator is configured to receive the dimensional data corresponding to tissue to be ablated, and wherein the RF generator is configured to automatically select an RF power based on the dimensional data, and wherein the RF generator is configured to provide an RF signal at the selected RF power to the RF ablation device.
5. A system for ablating tissue comprising:
an RF ablation device, wherein the RF ablation device includes an expandable applicator head configured to be positioned in a uterine cavity, and wherein the RF ablation device is configured to cause the applicator head to transition from a compressed condition to a relaxed condition, and wherein the RF ablation device is configured to determine data related to the uterine cavity based on a degree of expansion of the applicator head when in the relaxed condition; and
an RF generator coupled to the RF ablation device, wherein the RF generator is configured to receive the data corresponding to tissue to be ablated, and wherein the RF generator is configured to automatically select an RF power based on the data, and wherein the RF generator is configured to provide an RF signal at the selected RF power to the RF ablation device.
6. The system of claim 5 wherein the data includes an impedance of the ablation device.
7. The system of claim 5 wherein the RF generator provides a relatively constant power.
8. The system of claim 5 wherein the RF ablation device includes an inner hypotube and an outer hypotube, and wherein the inner hypotube is slidably and coaxially disposed within the outer hypotube, and wherein relative motion between the inner hypotube and the outer hypotube causes the expandable applicator head to expand.
9. The system of claim 5 wherein the RF ablation device includes an indicator mechanism operatively coupled to the applicator head to indicate the degree of expansion of the applicator head.
10. The system of claim 9 wherein the indicator mechanism is mechanically operatively coupled to the applicator head.
11. The system of claim 9 wherein the indicator mechanism is electrically operatively coupled to the applicator head.
12. The system of claim 9 wherein the indicator mechanism indicates the degree of expansion of the applicator head based on a relative axial location of the inner hypotube and the outer hypotube.
13. The system of claim 5 wherein the RF generator is configured to automatically receive the data corresponding to the tissue to be ablated.
14. The system of claim 5 wherein the expandable applicator head includes an internal frame configured to move the applicator head from a non-expanded shape to an expanded shape.
15. The system of claim 14 wherein the RF ablation device includes a sensor configured to sense a degree of expansion of the applicator head, and wherein the sensor is configured sense movement of the internal frame.
16. The system of claim 5 wherein the RF ablation device includes a sensor for sensing a degree of expansion of the applicator head.
17. The system of claim 5 wherein the RF ablation device is configured to electrically transmit the data to the RF generator.
18. The system of claim 5 wherein the RF ablation device is configured to electrically transmit the data to a visual display.
19. The system of claim 5 wherein the data includes a width of the uterine cavity.