Abstract:
Correction of color defects in a pupil represented in a digital image is disclosed. For example, a location in the pupil within the digital image is identified, and a target color to be corrected is computed based at least upon an analysis of pixels within a first region in which the location resides. Defect pixels in a second region in which the location resides are identified, the defect pixels being identified as having a pixel color similar to the target color. The defect pixels are color-corrected. For pupils that appear all white, appropriately configured pupil images are inserted therein.
Abstract:
A method of storing and viewing a collection of digital images includes the steps of: providing a plurality of users with a unique user ID associated with a URL identifying a network photoservice provider; providing each one of the plurality of users with a separate password to the unique user ID; at least one of the plurality of users transferring a set of digital images to the unique user ID employing their separate passwords; and viewing the images located at the unique user ID using the separate password.
Abstract:
A method of storing and viewing a collection of digital images includes the steps of: providing a plurality of users with a unique user ID associated with a URL identifying a network photoservice provider; providing each one of the plurality of users with a separate password to the unique user ID; at least one of the plurality of users transferring a set of digital images to the unique user ID employing their separate passwords; and viewing the images located at the unique user ID using the separate password.
Abstract:
A method of storing and viewing a collection of digital images includes the steps of: providing a plurality of users with a unique user ID associated with a URL identifying a network photoservice provider; providing each one of the plurality of users with a separate password to the unique user ID; at least one of the plurality of users transferring a set of digital images to the unique user ID employing their separate passwords; and viewing the images located at the unique user ID using the separate password.
Abstract:
A method of storing and viewing a collection of digital images includes the steps of: providing a plurality of users with a unique user ID associated with a URL identifying a network photoservice provider; providing each one of the plurality of users with a separate password to the unique user ID; at least one of the plurality of users transferring a set of digital images to the unique user ID employing their separate passwords; and viewing the images located at the unique user ID using the separate password.
Abstract:
A method of informing a customer that their photofinishing order is ready to picked up at a retailer. An electronic notification is sent to the customer when the order has been completed, the notification containing at least one image of the plurality of image in the customer order. A notice may also be sent to retail provider where the order is to picked-up by the customer. The method also includes the ability for the consumer to direct that the order be sent to a particular retail establishment.
Abstract:
Correction of color defects in a pupil represented in a digital image is disclosed. For example, a location in the pupil within the digital image is identified, and a target color to be corrected is computed based at least upon an analysis of pixels within a first region in which the location resides. Defect pixels in a second region in which the location resides are identified, the defect pixels being identified as having a pixel color similar to the target color. The defect pixels are color-corrected. For pupils that appear all white, appropriately configured pupil images are inserted therein.
Abstract:
Correction of color defects in a pupil represented in a digital image is disclosed. For example, a location in the pupil within the digital image is identified, and a target color to be corrected is computed based at least upon an analysis of pixels within a first region in which the location resides. Defect pixels in a second region in which the location resides are identified, the defect pixels being identified as having a pixel color similar to the target color. The defect pixels are color-corrected. For pupils that appear all white, appropriately configured pupil images are inserted therein.
Abstract:
A method is disclosed of automatically forwarding hard copy image products to a designated recipient, comprising the steps of: analyzing a digital image and developing a unique ID with respect to the image based on the analysis; storing the unique ID and associated order informations with respect to the image in a storage database, the order informations including additional information and a designated recipient for receiving a hard copy image product made using the digital image; printing the digital image on to a medium using a first printer so as to obtain the hard copy image product; scanning the hard copy image product subsequently by a scanning device and analyzing the digital image so as to obtain the unique ID and accessing the database for obtaining the order informations using the unique ID.
Abstract:
A method of storing and viewing a collection of digital images includes the steps of: providing a plurality of users with a unique user ID associated with a URL identifying a network photoservice provider; providing each one of the plurality of users with a separate password to the unique user ID; at least one of the plurality of users transferring a set of digital images to the unique user ID employing their separate passwords; and viewing the images located at the unique user ID using the separate password.