US2016004957A1PendingUtilityA1

Computer-implemented simulated intelligence capabilities by neuroanatomically-based system architecture

Assignee: SIMIGENCE INCPriority: Dec 13, 2011Filed: Sep 16, 2015Published: Jan 7, 2016
Est. expiryDec 13, 2031(~5.4 yrs left)· nominal 20-yr term from priority
Inventors:Soren Solari
G06N 3/008G06N 3/0895G06N 3/092G06N 3/09G06N 3/10G06N 3/04
40
PatentIndex Score
0
Cited by
0
References
0
Claims

Abstract

Computer-implemented systems for simulated intelligence information processing comprising: a digital processing device comprising an operating system configured to perform executable instructions and a memory; a computer program including instructions executable by the digital processing device to create a hierarchical software architecture comprising: a software module for providing a functional interpretation of the prosencephalon, or parts thereof; a software module for providing a functional interpretation of the mesencephalon, or parts thereof; and a software module for providing a functional interpretation of the rhombencephalon, or parts thereof; wherein the software architecture simulates vertebrate, mammalian, primate, or human neuroanatomy. In some embodiments, the systems create simulated intelligence.

Claims

exact text as granted — not AI-modified
1 .- 39 . (canceled) 
     
     
         40 . Non-transitory computer readable media encoded with a computer program including instructions executable by a digital processing device to create a neuroanatomically based software architecture for creation of applications that simulate vertebrate cognitive information processing, the architecture comprising:
 a. one module configured to implement the functional interpretation of the highest level brain neuroanatomical structure; and   b. at least one module configured to implement the functional interpretation of structures within the brain and the connections between said structures;   provided that the architecture includes the ability to simulate said functional interpretations of structures and connections; wherein the simulation performs information processing correlating with the cognitive information processing performed by vertebrate, mammalian, primate, or human neuroanatomy.   
     
     
         41 . The media of  claim 40 , wherein the functional interpretation of neuroanatomical structures within the brain is comprised of a hierarchical set of one or more functional interpretations of neuroanatomical structures. 
     
     
         42 . The media of  claim 40 , wherein the software architecture is generated by a recursive algorithm comprised of a definition of neuroanatomical structures and their hierarchical relationship, a definition of connections between said neuroanatomical structures at each hierarchical level, a definition of the functional interpretation of said neuroanatomical structures and connections, and the ability to connect said structures with said connections in a recursive manner. 
     
     
         43 . The media of  claim 40 , wherein each module is implemented as:
 a. one or more neural structure classes, wherein a neural type class is the lowest level neural structure class and defines the dynamic transformation of input information to output information through the lowest level structure;   b. one or more neural layer classes within which neural structure classes are instantiated;   c. one or more projection classes defining topological connectivity between neural structures in a source neural layer and neural target layer;   d. one or more synapse classes defining the functional transfer of information from a source structure to a target structure;   e. two or more instantiated neural layers containing one or more instantiated structures in each layer;   f. one or more instantiated projections between layers;   g. one or more instantiated synapses between neural types in source and target layers; and   h. zero or more neural module classes consisting of layers, structures, projections and synapses.   
     
     
         44 . The media of  claim 40 , wherein the applications are adapted for use in general information processing. 
     
     
         45 . The media of  claim 40 , wherein the applications are adapted for use in sensory perception. 
     
     
         46 . The media of  claim 45 , wherein the applications are adapted for use in one or more of: sound processing, speech processing, vision processing, language processing, text processing, chemical signature processing, tactile sensor processing, accelerometer measurement processing, and topographically organized multi-modal sensor processing. 
     
     
         47 . The media of  claim 40 , wherein the applications are adapted for use in behavioral action generation. 
     
     
         48 . The media of  claim 47 , wherein the applications are adapted for use in one or more of speech generation, sound generation, image generation, text generation, language generation, language translation, information content management, healthcare decision generation, navigation, and data driven decision generation. 
     
     
         49 . The media of  claim 40 , wherein the applications are implemented as a web application. 
     
     
         50 . The media of  claim 40 , wherein the applications are implemented as a mobile application. 
     
     
         51 . The media of  claim 40 , wherein the digital processing device is selected from: a server, a desktop computer, a portable computer, a smartphone, an appliance, and a vehicle.

Join the waitlist — get patent alerts

Track US2016004957A1 — get alerts on status changes and closely related new filings.

We store only your email — no account needed. See our privacy policy.