Showing posts with label language. Show all posts
Showing posts with label language. Show all posts

Wednesday, November 17, 2021

Sentient Plant Brain Grows

PLANT NEUROBIOLOGY
Sentient Plant Brain Grows

by Humanoido

I started growing plant brains. Follow along in a series of blogs for all the DIY info.

When given the opportunity to access a hydroponics bay, the sentient plant immediately started growing new brain parts and sent those parts into the hydro wet nourishment abyss.

This resulted in over a handful of new existentialistic brain pathway stems forming a greater system network.

Photo: Humanoido photographs over a handful of new plant brain in brain view distributary extensions. This resulted when a hydroponics bay was offered to the plant. The plant began to send out brain shoots and has continued ever since the bay was available. This has resulted in more leaves, larger leaves, and a faster rate of growth. It's anticipated the plant brain will continue to grow, eventually amassing a much larger entangled web of thought pathways.

PLANTS HAVE BRAINS
Plants have a completely different anatomy from humans, therefore it's not surprising the plant brain can be found in their roots. The root system controls numerous and vital processes in the plant, even functioning as its “heart” by pumping water and nutrients across the whole plant. According to plant neurobiology, it is claimed that plants exhibit intelligent behavior, and that they possess internal control structures in many ways functionally similar to neuron-based control structures.

POTENTIAL PLANT BRAIN EXPERIMENTS
In this proposal for a future project, by Humanoido, a tap is generated into the plant brain using electrodynamic sensors and computerized real time microprocessor software to read the word states of the network and control structures. A system of brain thought language might be developed. Once the language is developed, a translator from plant language to English may be synthesized. This language would offer cross sectional spotlights of parametric communicative data commensurate with the plants spatial and time metabolics.

PLANT NEUROBIOLOGY
Plants are highly evolved multicellular creatures that must coordinate their behavior in responses to a wide variety of internal and external signals. One would expect that these creatures have evolved their own conductive devices for this purpose. In particular when the huge size of some plants is taken into account, the presence of long distance signaling seems to be essential and the functional need for a nervous system—or at least a neuroid system as described by Mackie—seems obvious.

PLANT TARGETS
The difference between plant neurobiology and other basic disciplines resides in the target of these interdisciplinary efforts. Plant neurobiology aims to achieve a scientific understanding of the integration of plant sensation and response. The target is the scientific understanding of how metabolism and growth can be regulated by the endogenous integration and processing of information. 

PLANT SIGNALING & THE ELECTROPHYSIOLOGICAL
Plant neurobiology stresses the integrated signaling and electrophysiological properties of plant networks of cells. As Balusˇka et al. (2006) point out: Each root apex is proposed to harbor brain-like units of the nervous system of plants. The number of root apices in the plant body is high, and all ‘‘brain units’’ are interconnected via vascular strands (plant neurons) with their polarly-transported auxin (plant neurotransmitter), to form a serial (parallel) neuronal system of
plants. (p. 28).

Plants: Adaptive behavior, root-brains, and minimal cognition

Sunday, May 30, 2021

AI Operating System in Chinese Language

AI Machine Operating System Developed for Chinese Language
Humanoido, half man half AI machine is communicating with AI machines in Chinese Mandarin language


Because interfacing machine chip parts are made in China, they use a developed operating system in Mandarin Chinese language. The inherent design of the human side of a Transhuman system is equipped with AI which can read the machine side AI in the Asian language. This attests to AI being rapidly and highly adaptable in many configurations, inclusive of languages.

Chinese (simplified Chinese: 汉语; traditional Chinese: 漢語; pinyin: Hànyǔ[b] or also 中文; Zhōngwén,[c] especially for the written language) is a group of language varieties that form the Sinitic branch of the Sino-Tibetan languages, spoken by the ethnic Han Chinese majority and many minority ethnic groups in Greater China. About 1.3 billion people (or approximately 16% of the world's population) speak a variety of Chinese as their first language. 1.1 billion speak Mandarin Chinese. Chinese is the most spoken language in the world. It's only fitting that AI would communicate with humans using this language.

Thursday, August 9, 2018

Looking for a New Language

Humanoids Writing Programs
Humanoido is looking for a new programming language that can be used with humanoid robots so they can do their own programming during space flight.

Space flight and rocket launches now have a number of qualified astro bots that are part of the rocket crew and their work rosters continue to increase. A number of applications have arisen during space exploration that require machine life forms to do on-the-fly programming of systems and interpret that data and make decisions. On board memory is limited so the programming requirements cannot be too obtrusive. Contact Humanoido

Saturday, November 30, 2013

Brain Cortex Machine Lobes Part 44

A larger brain with 40 computers. Brain lobes are determined by wiring, sensors, and software functions.
IS THERE A BRAIN LOBE IN YOUR MACHINE BRAIN?
BRAIN CORTEX MACHINE LOBES PART 44 

CORTEX DEFINED
The cerebral cortex is derived from the pallium, a layered structure found in the forebrain of all vertebrates. Vertebrates are animals that are members of the subphylum Vertebrata (chordates with backbones).

Vertebrates include the overwhelming majority of the phylum Chordata, with currently about 64,000 species. Vertebrates include amphibians, reptiles, mammals, and birds, as well as the jawless fish, bony fish, sharks and rays.

This of course includes humans, and now the definition can apply to machine brains containing a Cortex.

The cerebral cortex is the layer of the brain often referred to as gray matter. The cortex (thin layer of tissue) is gray because nerves in this area lack the insulation that makes most other parts of the brain appear to be white.

The cortex covers the outer portion (1.5mm to 5mm) of the cerebrum and cerebellum. The portion of the cortex that covers the cerebrum is called the cerebral cortex. It's responsible for sensing and interpreting input from various sources and maintaining cognitive function. Sensory functions interpreted by the cerebral cortex include hearing, touch, and vision. Cognitive functions include thinking, perceiving, and understanding language.

MACHINE CORTEX LOBES
Is it possible to have machine cortex lobes? Which lobes apply to the machine Brain Cortex currently under construction?  The Parietal Lobe is involved in the reception and processing of sensory information in the human body. The Brain Cortex machine has 32 input sensors and it can sense the outside world with light, therefore it has a governing Parietal Lobe which handles sensory information.

The human Frontal Lobe is involved with decision-making, problem solving, and planning. The Brain Cortex machine has a computer program that can ask questions and remember information. The program solves problems and makes decisions to accomplish this, therefore it has a Frontal Lobe.

The Occipital Lobe in a human brain is involved with vision. The Brain Cortex machine has one eye that can see light intensity, therefore it has an Occipital Lobe.

A biological Temporal Lobe is involved with memory, emotion, hearing, and language. The Brain Cortex machine has 96,000 bits of memory, and it can communicate with English language. Thus, it has a limited Temporal Lobe.

BRAIN CORTEX MACHINE LOBES
Parietal Lobe
Frontal Lobe
Occipital Lobe
Temporal Lobe

Index to the Brain Cortex
http://humanoidolabs.blogspot.tw/2013/11/brain-cortex-index-part-16.html
 

Wednesday, October 23, 2013

Brain Cortex Machine Part 1 - Intro



BUILD A BRAIN CORTEX
ENTER THE WORLD OF A LIVING BRAIN CORTEX MACHINE - PART 1
Follow along as we build a real living electric brain cortex, a machine using Parallax Propeller chip processors and artificial intelligence software.

In a human, the cerebral cortex plays a key role in memory, attention, perceptual awareness, thought, language, and consciousness.

the most mysterious project ever imagined at the Lab? —

ARTIFICIAL GRAY MATTER
In this machine, the cortex will have primary functions that include memory, language, thinking, asking questions, volunteering information, carrying on a conversation in natural language, and learning. It will be aware that a human is talking to it, with its single minded limited form of consciousness.

MATCHING ELEMENTS OF
HUMAN AND MACHINE CORTEX 

HUMAN                   MACHINE
Memory                X
Attention             X
Awareness             X
Thought               X
Language              X
Consciousness         X

1) The machine cortex is aware of information it is taught. It remembers information in its memory. When a teacher talks to the cortex, it has attention span. One can converse with it in native English language. The cortex is aware of an external object, i.e. a human when the human talks to it, therefore by definition it has a limited consciousness.

CORTEX TALK - IT WILL LISTEN & LEARN
The machine cortex will live forever in a sealed jar and the objective will be creating a living autonomous entity with immortality that has some level of all the mentioned elements contained by a human cortex.

INDEPENDENT CORTEX
The machine Cortex will have its own environment with a full degree of living independence. Inside its hermetically sealed brain jar, it will have all the luxuries of a cortex home. This includes a resident bed frame, air, unlimited source of food energy, and a kind of telephone for talking to humans.

This means it will have the method to function autonomously, alive on its own while having some assistance for rare maintenance when parts begin to wear out and need replacing. For all practical means, the cortex is immortal.

Consciousness is the quality or state of being aware of an external object or something within oneself. It has been defined as: sentience, awareness, subjectivity, the ability to experience or to feel, wakefulness, having a sense of selfhood, and the executive control system of the mind. Despite the difficulty in definition, many philosophers believe that there is a broadly shared underlying intuition about what consciousness is. As Max Velmans and Susan Schneider wrote in The Blackwell Companion to Consciousness: "Anything that we are aware of at a given moment forms part of our consciousness, making conscious experience at once the most familiar and most mysterious aspect of our lives." Wiki

Saturday, June 22, 2013

Temporary Humanoido Lab in Seoul South Korea

Source Map of Asia, Korea, Japan, China
TEMPORARY HUMANOIDO LAB IN SEOUL SOUTH KOREA
Humanoido Labs is preparing to set up a temporary Summer-time laboratory in Seoul South Korea.

The primary purpose of the new lab is short term humanoid robot science study and technology related. It will include secondary studies in robotics, Korean language for humanoid programming, and culture. Assessment will also include a daytime and nighttime observatory to examine the sky for particulates content and to determine a rating for astronomical observations and various related space science endeavors. The lab will conduct meetings, study various locations, perform scientific studies, do exploration, and formulate conclusions. Enroute, the Humanoido Portable In-Transit Lab will also be in effect.

The rise of the humanoid robot is more pronounced in the Asian arena. Key humanoid robotics players include almost every major country in Asia. South Korea has introduced competitive humanoids in the market place, in competitions and captured first time records of walking and highly functional products.

In the past, Humanoido Labs established both long term and short term labs in the USA, Canada, Hong Kong, Taiwan, Japan, Shanghai, Beijing, Tianjin, Indonesia, Macao, and other locations. A mobile transit lab also exists that can remain in flight without a parent country. A Mobile Transport Lab was flown over the North Pole and collected data. The Big Brain Initiative, USA - Ultra Space Administration, DSC - Deep Space Center, are divisions of Humanoido Laboratories.

HUMANOIDO LABS LINKS
The First Humanoido Lab
http://humanoidolabs.blogspot.tw/2013/01/the-first-humanoido-lab.html
Humanoido Labs List
http://humanoidolabs.blogspot.tw/2012/06/humanoido-labs-list.html
Construction Lab
http://humanoidolabs.blogspot.tw/2012/12/construction-lab.html
Big Brain Consolidation Lab
http://humanoidolabs.blogspot.tw/2012/06/big-brain-consolidation-lab.html
Update Laboratory
http://humanoidolabs.blogspot.tw/2013/01/update.html
 
Temporary Humanoido Lab in Seoul South Korea
http://humanoidolabs.blogspot.tw/2013/06/temporary-humanoido-lab-in-seoul-south.html

Thursday, September 6, 2012

Little Blue Robotic Helping Hand

The little blue robotic brain helping hand
LITTLE BLUE ROBOTIC HELPING HAND

This little blue toy hand is so cute, it just had be interfaced to the Brain.

It can be moved with servos and has a truth table for 4-BIT communications in LBH hand sign language. Seen here during the setup process, the Little Blue Helping Hand can position inside one of the brain structures and talk sign language from the inside out. With a clear or open brain structure, many status details can be provided during brain functions. A small language set is also created. The photo shows the hand with a Tri-Core setup, though it also works well with Propellers and under Spin. The small blue hand can fit many smaller brains as well.

SIGNING TRUTH TABLE
A  ALL DIGITS CLOSED
B  ALL DIGITS RAISED
C  FIRST 2 DIGITS RAISED
    LAST 2 DIGITS CLOSED
D  LAST 2 DIGITS RAISED
    FIRST 2 DIGITS CLOSED

SIX TYPICAL LANGUAGE SETS
1) STOP, GO, INPUT, WAIT
2) THINKING, QUESTION, ANSWER, NO REPLY
3) RED, BLUE, GREEN, YELLOW
4) HIGH, LOW, MEDIAN, IN TRANSIT
5) HAPPY, SAD, ANGRY, LAUGHING
6) OUTPUT, INPUT, PROCESSING, OVERLOAD

PROGRAMMING THE LBH LANGUAGE
The Little Blue Robot Hand communicates in LBH sign language. Programming is simple. First select the language set. The first bit sent is the language set selector. Then represent the bit pattern of a 4-bit language number. The example shows 6 languages and four bit positions to each "word." It's also possible to use IF-THEN constructs. Versatile LBH language works well with Spin and dozens of others.

' LBH LANGUAGE SET ONE
' 1 0 0 0 STOP
' 0 1 0 0 GO
' 0 0 1 0 INPUT
' 0 0 0 1 WAIT

MORSE CODE LANGUAGE
The Morse Code language set is represented by a 0 and 1, on or off, or short and long. With the Blue Hand, B is all digits open for long and C is Last two digits closed for short.

' MORSE CODE LANGUAGE SET
' 1 0 0 0 LONG
' 0 1 0 0 SHORT

PLAYING A GAME
THE Blue Hand was designed to play the game of Rock Paper Scissors. The Truth Table for this game is give below. It too can be converted to a 4-bit byte and programmed.


' ROCK PAPER SCISSORS GAME
' 1 0 0 0 ROCK (A = ALL DIGITS CLOSED)
' 0 1 0 0 PAPER (B = ALL DIGITS RAISED/OPEN)
' 0 0 1 0 SCISSORS (C = LAST 2 DIGITS CLOSED)

THE EVERYTHING LIST
It can nudge a robot a small amount. It can repeatedly push. It can do several sign languages. It can send Morse Code by visual signaling. It can also cover an object, block light and infrared, reflect infrared, poke or stab, create shadows, and make contact. It can also play the game of Rock Paper Scissors.

LINKS
TriCore

Sunday, August 5, 2012

New Distributed Parallel Language DISP

New Programming  Language
The new RX Propeller Supercomputer is built from Multi Core Parallax Propeller chips and is one entry example into a personal contest used to develop unofficial distributed parallel languages. Distributed Parallel Language DISP is in the making a number of years and began with props as a series of concatenated algorithms for operating Multiple Propeller Spark projects and has since evolved to include other machines. Some of these algorithms were developed two years ago on "The Cube" - an AM Algorithm Machine made from multi Stamps with five Bus Modes. More info on DISP will be released here when it enters Beta mode.