1460918182-400e763a-2316-481c-8949-972f3546fa3b

1. A video coding method, comprising the following steps:
coding successive pictures of a video sequence so as to generate coding parameters, the coding of at least one picture being effected in relation to at least one previous picture of the video sequence, said previous picture being temporarily recorded in a picture memory;
including the coding parameters in an output stream to be transmitted to a station comprising a decoder;
receiving, from said station, return information about the playback of the pictures of the video sequence by the decoder;
analyzing the return information so as to evaluate a delay of the return channel with respect to the transmission of the output stream; and
determining a quantity of memory allocated to the picture memory in the decoder as a function of the evaluated delay, and indicating said quantity of memory to the decoder.
2. The method as claimed in claim 1, in which the analysis of the return information furthermore comprises the following steps:
identifying a picture that has not been played back or has been played back poorly by the decoder; and
in response to the identification of a picture that has not been played back or has been played back poorly, controlling the coding means so that at least one following picture of the video sequence is coded in relation to at least one reference picture recorded in the picture memory for a time greater than the evaluated delay of the return channel.
3. The method as claimed in claim 2, in which, if no picture is recorded in the picture memory for a time greater than said delay, the coding means are controlled so that the following picture of the video sequence is coded in relation to a reference picture of the video sequence which has been marked long-term, each long-term marked picture having to be retained in memory by the decoder until receipt of a command for unmarking said picture.
4. The method as claimed in claim 1, in which the analysis of the return information comprises, at the moment of receipt of a return information message, the identification according to said message of the most recent picture of the sequence which has been properly played back by the decoder, the delay of the return channel being evaluated on the basis of the deviation between the identified picture and a current picture at the moment of receipt of said message.
5. The method as claimed in claim 1, in which the return information comprises information arising from the decoder, signalling the pictures of the sequence which have or have not been played back.
6. A computer program medium for a video processing apparatus, comprising instructions for implementing the steps of a video coding method as claimed in any one of claims 1 to 5 during an execution of the program by a calculation unit of said apparatus.
7. A video coder, comprising:
means for coding successive pictures (F) of a video sequence so as to generate coding parameters, the coding of at least one picture being effected in relation to at least one previous picture of the video sequence, said previous picture being temporarily recorded in a picture memory;
means for forming an output stream of the coder to be transmitted to a station comprising a decoder, the output stream including said coding parameters;
means for receiving, from said station, return information about the playback of the pictures of the video sequence by the decoder;
means for analyzing the return information so as to evaluate a delay of the return channel with respect to the transmission of the output stream; and
means for determining a quantity of memory allocated to the picture memory in the decoder as a function of the evaluated delay, and for indicating said quantity of memory to the decoder.
8. The video coder as claimed in claim 7, in which the means for analyzing the return information furthermore comprise:
means for identifying a picture that has not been played back or has been played back poorly by the decoder; and
means responding to the identifying of a picture that has not been played back or has been played back poorly, for controlling the coding means so that at least one following picture of the video sequence is coded in relation to at least one reference picture recorded in the picture memory for a time greater than the evaluated delay of the return channel.
9. The video coder as claimed in claim 7, in which said quantity of memory is indicated to the decoder by including a command for adjusting the quantity of memory in the output stream.
10. The video coder as claimed in claim 7, in which the means for analyzing the return information comprises means for identifying, at the moment of receipt of a return information message, the most recent picture of the sequence which, according to said message, has been properly played back by the decoder, the delay of the return channel being evaluated on the basis of the deviation between the identified picture and a current picture at the moment of receipt of said message.

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 mat for a computer mouse comprising:
a first layer having a surface, the first layer being at least one woven or knit layer or a layer of non-woven fabric made of bi-component or multi-component fibers or filaments split to form microfibers or microfilaments by high-pressure fluid jet treatment of the surface.
2. The mat as recited in claim 1 wherein the titer of the microfibers or microfilaments ranges from 0.05 to 0.5 dtex.
3. The mat as recited in claim 1 further comprising a foam layer on an underside of the first layer.
4. The mat as recited in claim 1 wherein a top of the first layer is imprinted.
5. A method for producing a computer mouse mat comprising:
using a high pressure fluid jet to treat a surface of a woven or knit layer or a layer of non-woven fabric made of bi-component or multi-component fibers or filaments, the high pressure fluid jet causing splitting to form microfibers or microfilaments.
6. The method as recited in claim 5 wherein the high-power fluid jet treatment of the surface is performed at least once on a side at pressures of 50 to 500 bar.
7. The method as recited in claim 5 further comprising attaching a foam layer to an underside of the woven or knit or non-woven fabric layer.
8. The method as recited in claim 7 wherein the foam layer is attached using a hot-melt adhesive.
9. The method as recited in claim 7 further comprising imprinting a top of the woven or knit or non-woven fabric layer before attaching the foam layer.
10. The method as recited in claim 9 wherein the top is opposite the surface last compacted via the high-pressure fluid jet treatment.
11. The method as recited in claim 10 wherein the imprinting is performed using offset or transfer printing, binder printing, rotogravure or inkjet printing.
12. The method as recited in claim 10 wherein imprinting is performed using industrial or home-use inkjet printers.