Abstract:
The present invention is a system and method that produces an internegative 60 from a digitally processed image or images that are originally captured on film or digitally. The digital processing by a computer 58 allows digital operations to be performed such as filtering, image overlay and stereo image creation. The internegative 60 is reduction printed using an enlarger apparatus 70 and developed, thereby increasing the resolution of the printed image. A lenticular cover can be attached to a stereo picture produced in this way to mass produce a high angular resolution, three dimensional photograph 8. The internegative can also be enlarged allowing digital processing to be applied to poster and billboard type images.
Abstract:
A method and apparatus for producing the image elements of a lenticular image. The lenticular image includes a plurality of composite images of the same scene where each composite image includes image lines. The image lines of one composite view are interleaved with the image lines forming the other composite images to create image line sets. The sets include one image line from each composite image. The sets of image lines are aligned with the lenticules of a lenticular overlay by adjusting the spacing between the image line sets, so that the sets are in optimum alignment or phase relationship with each lenticule of the lenticular overlay. The spacing between image lines and/or between scan lines and/or image line sets can be adjusted to correct phase errors. The scan lines are printed in a fast scan direction of a printer in alignment with the lenticules.
Abstract:
A group recording method for an electronic device is provided. The method includes establishing a connection between the electronic device and at least one other electronic device through wireless communication, acquiring a first image created by photographing a target subject, acquiring a second image created by photographing the target subject from the another electronic device, and concurrently recording by the electronic device the first image and the second image and displaying the first image and the second image together on a display screen, in which a second viewpoint corresponding to the second image is different from a first viewpoint corresponding to the first image.
Abstract:
A system for distributing data that represents and can be converted into a physical object such as a printed photograph or three-dimensional “3D printed” object provides a variety of user controls to direct the flow of data and restrict the use of consumable supplies.
Abstract:
A method of setting a plurality of depth values of a plurality of objects in a scene. The method comprises providing an image dataset depicting a scene comprising a plurality of objects having a plurality of depth values with a plurality of depth differences thereamong, selecting a depth range, simultaneously adjusting the plurality of depth values while maintaining the plurality of depth differences, the adjusting being limited by the depth range, and instructing the generation of an output image depicting the scene so that the plurality of objects having the plurality of adjusted depth values.
Abstract:
An image output control apparatus is capable of outputting normal images and stereo images from an output unit to a display device or a printer so that the normal images and the stereo images may be distinguishable. The image output control apparatus includes an image type determining unit that determines whether an image to be output is a stereo image or a normal image, the stereo image being composed of a pair of a left-eye image and a right-eye image, and an output form control unit that controls an image output form to distinguish a first image output form from a second image output form, the first image output form being used for outputting the stereo image, and the second image output form being used for outputting the normal image, according to the determination of the image type determining unit.
Abstract:
Disclosed herein is a method for determining a lenticular lens resolution for use in digital press printing. The method includes determining a digital press machine resolution d, setting a master interlaced image resolution m for a master interlaced image such that the master interlaced image resolution is equal to the machine resolution, setting a number of frames f to be included in the master interlaced image, and determining a lenticular lens resolution L according to the relationship L=d/f. The result is a digitally output lenticular image that can be have many applications, including use in products such as containers, packages, labels, and the like. The selection process accounts for variations in digital press machine resolutions, lenticular lens resolution variations, various screening algorithms, to yield a high quality, commercial-grade digitally output lenticular image.
Abstract translation:本文公开了一种用于确定用于数字印刷中的双凸透镜分辨率的方法。 该方法包括确定数字印刷机分辨率d,为主隔行扫描图像设置主隔行图像分辨率m,使得主隔行图像分辨率等于机器分辨率,设置要包括在主隔行扫描中的帧数f 图像,并根据关系L = d / f确定双凸透镜分辨率L. 结果是可以有许多应用的数字输出透镜图像,包括用于诸如容器,包装,标签等的产品。 选择过程考虑到数字印刷机分辨率,双凸透镜分辨率变化,各种筛选算法的变化,以产生高质量的商业级数字输出透镜图像。
Abstract:
Disclosed herein is a method and an apparatus for determining a lenticular lens resolution for use in digital press printing. The method and an apparatus consists of determining a digital press machine resolution d, setting a master interlaced image resolution m for a master interlaced image such that the master interlaced image resolution is equal to the machine resolution, setting a number of frames f to be included in the master interlaced image, and determining a lenticular lens resolution L according to the relationship L=d/f. The result is a digitally output lenticular image that can be have many applications, including use in products such as containers, packages, labels, and the like. The selection process accounts for variations in digital press machine resolutions, lenticular lens resolution variations, various screening algorithms, to yield a high quality, commercial-grade digitally output lenticular image.
Abstract translation:本文公开了一种用于确定用于数字印刷中的双凸透镜分辨率的方法和装置。 所述方法和装置包括确定数字印刷机分辨率d,为主隔行图像设置主隔行图像分辨率m,使得主隔行图像分辨率等于机器分辨率,设置要包括的帧数f 在主隔行图像中,根据关系L = d / f确定双凸透镜分辨率L. 结果是可以有许多应用的数字输出透镜图像,包括用于诸如容器,包装,标签等的产品。 选择过程考虑到数字印刷机分辨率,双凸透镜分辨率变化,各种筛选算法的变化,以产生高质量的商业级数字输出透镜图像。
Abstract:
A composite image generator for producing a lenticular novelty item at a point of purchase is disclosed. The composite image generator receives a theme selection and a captured digital image. Images associated with the selected theme and the captured digital image are then interlaced and/or combined to produce a final composite image. The final composite image is printed and a lenticular surface is applied to produce the lenticular novelty item at a point of purchase.
Abstract:
Disclosed herein is a method for determining a lenticular lens resolution for use in digital press printing. The method comprises determining a digital press machine resolution d, setting a master interlaced image resolution m for a master interlaced image such that the master interlaced image resolution is equal to the machine resolution, setting a number of frames f to be included in the master interlaced image, and determining a lenticular lens resolution L according to the relationship L=d/f. The result is a digitally output lenticular image that can be have many applications, including use in products such as containers, packages, labels, and the like. The selection process accounts for variations in digital press machine resolutions, lenticular lens resolution variations, various screening algorithms, to yield a high quality, commercial-grade digitally output lenticular image.
Abstract translation:本文公开了一种用于确定用于数字印刷中的双凸透镜分辨率的方法。 该方法包括确定数字印刷机分辨率d,为主隔行图像设置主隔行图像分辨率m,使得主隔行扫描图像分辨率等于机器分辨率,设置要包括在主隔行扫描中的帧数f 图像,并根据关系L = d / f确定双凸透镜分辨率L. 结果是可以有许多应用的数字输出透镜图像,包括用于诸如容器,包装,标签等的产品。 选择过程考虑到数字印刷机分辨率,双凸透镜分辨率变化,各种筛选算法的变化,以产生高质量的商业级数字输出透镜图像。