IP Library Granted Patent US 12,403,660
Granted Patent B2
US 12,403,660 · App. 18/217,458 · Granted Sep 2, 2025

System and method for no-kill production of three-dimensional visual replica of aquatic species, and replica produced by same

Inventor: Thomas Cody Roberts (Austin, TX)
Assignee: Caza Holdco, LLC
B29C64/386B33Y10/00B33Y50/00G05B19/4207G06T17/00G06V10/17G06V10/764G06T2200/08
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Quick Facts
Patent No.
US 12,403,660
App. No.
18/217,458
Granted
Sep 2, 2025
Kind
B2
Abstract

A no-kill computer-implemented method for collection of physical information and production of a three-dimensional visual replica of a fish includes: first providing a computer-implemented wireless mobile device having a processor; second providing a computer-implemented collection and production platform application to receive and record collected visual image data of the field of view; training a collector lens on a physical visual reference in the field of view; collecting visual image data of the field of view; identifying specimen visual image data within overall visual image data for the complete field of view; compensating for uncontrolled floating motion; of the vessel; generating a virtual three-dimensional visual model of the fish; and fabricating, by a three-dimensional printer, a physical three-dimensional visual replica from the virtual three-dimensional visual model of the fish.

Claims (19)

1. A no-kill computer-implemented method for collection of physical information and production of a three-dimensional visual replica of a fish, comprises:

first providing a computer-implemented wireless mobile device having a processor, the wireless mobile device including a built-in camera system having a collector lens trained on a field of view;

second providing a computer-implemented collection and production platform application configured for operation in relation to the processor to receive and record collected visual image data of the field of view;

training the collector lens on a physical visual reference in the field of view;

collecting visual image data of the field of view of the collector lens of the built-in camera responsive to receiving an actuation instruction;

identifying specimen visual image data within overall visual image data for the complete field of view;

compensating for uncontrolled floating motion of the vessel; and

generating a virtual three-dimensional visual model of the fish, from the specimen visual image data provided from said identifying.

2. A no-kill computer-implemented method of claim 1 further comprises the step of:

fabricating, by a three-dimensional printer, a physical three-dimensional visual replica from the generated virtual three-dimensional visual model of the fish.

3. A no-kill computer-implemented system for collection of physical information and production of a three-dimensional visual replica of a fish, comprises:

a computer-implemented wireless mobile device having a processor and built-in camera having a lens trained on a field of view to collect visual image data of the field of view;

a physical visual reference positioned in the field of view;

a computer-implemented collection and production platform application configured for operation in relation to the processor of the wireless mobile device to receive visual image data for the field of view, further configured for recording the collected visual image data of the field of view;

an image identification system configured to identify specimen visual image data within overall visual image data for the complete field of view;

a platform motion compensation system configured for compensating for motion of a floating vessel supporting said no-kill computer-implemented system; and

a model generation system configured for generating a virtual three-dimensional visual model from the specimen visual image data.

4. A no-kill computer-implemented system of claim 3 further comprising:

a three-dimensional replica fabrication system configured to fabricate a physical three-dimensional visual replica from the virtual three-dimensional visual model.

Continuity (2)
Provisional Application 63358030 · Jul 1, 2022
Related Publication 20240001618A1 · Jan 4, 2024
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