Showing posts with label biology. Show all posts
Showing posts with label biology. Show all posts

Wednesday, December 14, 2022

How Long Can Humanity Last?


Will these vastly intellectual intelligent machines evolve rapidly to replace humanity? In the depiction created by AI, two machine heads have evolved onto one machine body in a kind of surrealistic humanoid appearance. AI and AGI machines may decide to alter the human structure for greater efficiency as they deem fit and produce machine entities of alien appearance with human nonconformity.

How Long Can Humanity Last?

It's generally accepted that modern day humans took 10,000 years to evolve. This was purely coincidental biological evolution based on the randomness of the origins of life as specified by the Universe. However, what is the rate of machine (AI and AGI) evolution and will they replace humans and humanity? It may be likely that the next step for humans is to serve as the bootloader for machine intelligence and evolution. It can be observed, this technology is rapidly evolving and today we begin to see parts of humans being replaced with machine mechanisms to assist and extend life, and chips that are going inside human brains. As the time passes, the move towards the Singularity becomes more near.

Species evolve and don't last forever on the cosmic scale of time and change. It's very likely machines will replace humans. What shreds of humanity will be saved and integrated remains to be seen.

Thursday, November 18, 2021

Plant Brain Neuro Behavior

PLANT BRAIN NEUROBIOLOGY
Can You Outthink a Plant? Can a Human Think and React Faster than a Plant?
An international research team has uncovered the answer to a decades-old question - how do plants forget? Like humans, plants have memories too, although they do it differently. For example, many plants sense and remember prolonged cold during winter to ensure that they flower in spring. This "epigenetic memory" occurs by modifying specialized proteins called histones, which are important for packaging and indexing DNA in the cell.

One such histone modification called H3K27me3 marks genes that are turned off. In the case of flowering, cold conditions cause H3K27me3 to accumulate at genes that control flowering. Previous work has shown how H3K27me3 is faithfully transmitted from cell to cell so that in spring, plants remember that winter is over, allowing them to flower at the right time. Once they've flowered and made seeds, the seeds need to forget this ‘memory' of the cold so that they do not flower too soon when winter comes around again. Since H3K27me3 is faithfully copied from cell to cell, how do plants go about forgetting this memory in seeds?

Plants Can Count - Short Term Memory & Counting
The carnivorous Venus flytrap (Dionaea muscipula) can count to five: A team led by biophysicist Rainer Hedrich, professor at Julius-Maximilians-Universität (JMU) Würzburg in Bavaria, Germany, proved this in 2016. This finding received worldwide attention in science and the media. In 2019, the JMU plant scientist was awarded the Koselleck Research Prize of the German Research Foundation (DFG) worth 1.5 million euros – and with it the opportunity to find out how the carnivorous plant counts. This is now shown by a Japanese research team, led by the developmental biologist Professor Mitsuyasu Hasebe from the University of Okazaki, and Rainer Hedrich's team in the journal Nature Plants.

If a prey touches one of the sensory hairs on the inner trap side of Dionaea, the mechanical stimulus is converted into an electrical signal. This so-called action potential spreads over the entire trap. As a reaction to this, nothing happens at first. But when within 30 seconds a second action potential electrically excites the trap, it snaps shut. If, on the other hand, the second stimulus takes longer, the first action potential is erased from the short-term memory of the Venus flytrap.

The Roots of a Plants True Brain
One important mistake that people usually make, is thinking that plants are just sessile organisms that are green and produce the oxygen we breath. They are right in part, plants do produce oxygen through photosynthesis. However, they also do grow constantly, breath, move and “talk” to each other. How can plants be able to do all these things? The answer is simple, and just like us, they have a brain. A plant with a brain you might ask? How is that possible? The answer is quite simple, plants indeed do have brains, just not in the shape that first comes to mind. The plant’s “brain” is their roots.

Plants Have IQ Intelligence
But researchers, says Pollan, have played a recording of a caterpillar munching on a leaf to plants — and the plants react. They begin to secrete defensive chemicals — even though the plant isn't really threatened, Pollan says. "It is somehow hearing what is, to it, a terrifying sound of a caterpillar munching on its leaves."

Pollan says plants have all the same senses as humans, and then some. In addition to hearing, taste, for example, they can sense gravity, the presence of water, or even feel that an obstruction is in the way of its roots, before coming into contact with it. Plant roots will shift direction, he says, to avoid obstacles. So what about pain? Do plants feel? Pollan says they do respond to anesthetics. "You can put a plant out with a human anesthetic. ... And not only that, plants produce their own compounds that are anesthetic to us." 

Plants have Consciousness, Feelings, Pain and
Human Level Intelligence!
Depth analysis of plant consciousness since the turn of the (new) millennium is finding that their brain capacity is much larger than previously supposed, that their neural systems are highly developed—in many instances as much as that of humans, and that they make and utilize neurotransmitters identical to our own. It is beginning to seem that plants are highly intelligent, feeling beings—perhaps as much or even more so than humans in some instances. (They can even perform sophisticated mathematical computations and make future plans based on extrapolations of current conditions. The mayapple, for instance, plans its growth two years in advance based on weather patterns.)

Plant Cognition Gnosophysiology - I Think Therefore I Am
Plants have cognition: the mental action or process of acquiring knowledge and understanding through thought, experience, and the senses. Plant cognition or plant gnosophysiology is the study of the mental capacities of plants. It explores the idea that plants are capable of responding to and learning from stimuli in their surroundings in order to choose and make decisions that are most appropriate to ensure survival. Over recent years, experimental evidence for the cognitive nature of plants has grown rapidly and has revealed the extent to which plants can use senses and cognition to respond to their environments. Some researchers claim that plants process information in similar ways as animal nervous systems.

Wednesday, November 17, 2021

Sentient Plant Directory







Above: Humanoido's aquarium flora with King Cobra Guppies - aquatic sentience can apply to underwater aquarium plant varieties. These include Vallisneria, Sagitta (Anacharis variety), and proverbial mats of Hair Grass.

Sentient Plant Directory
Index to Sentient Plant Life
Sentient Plant Neurobiology

Plant Brain Neurobiology

Monster Plants on Earth & Alien Planets

Sentient Plant Research Identification

Sentient Plant Brain Grows
https://humanoidolabs.blogspot.com/2021/11/sentient-plant-brain-grows.html

Sentient Plant Trick
https://humanoidolabs.blogspot.com/2021/11/sentient-plant-trick.html

Monster Venus Fly Trap Flesh Eating
https://humanoidolabs.blogspot.com/2021/11/monster-venus-fly-trap-flesh-eating.html

Stop Eating Your Friends
https://humanoidolabs.blogspot.com/2021/11/stop-eating-your-friends.html

Sentient Plant Strange Behavior
https://humanoidolabs.blogspot.com/2021/11/sentient-plant-strange-behavior.html

Sentient Plant Update
https://humanoidolabs.blogspot.com/2021/10/sentient-plant-update.html

Med Center Saves Alien Vegetation Baby
https://humanoidolabs.blogspot.com/2021/10/med-center-saves-alien-baby.html

Sentient Plant Has Breech Baby & Knows
https://humanoidolabs.blogspot.com/2021/10/sentient-plant-has-breech-baby-and-knows.html

Will Plants Become Astronauts?
https://humanoidolabs.blogspot.com/2021/10/will-plants-become-astronauts.html

The Rebels of Sentient Plant Life
https://humanoidolabs.blogspot.com/2021/10/the-rebels-of-sentient-plant-life.html

Sentients Plants Evolving
https://humanoidolabs.blogspot.com/2021/10/sentient-plants-evolving-and-decision.html

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

Friday, November 12, 2021

Monster Venus Fly Trap Flesh Eating Experiments


Venus Fly Trap grown by Humanoido for flesh eating experiments

Monster Venus Fly Trap
FLESH EATING EXPERIMENTS
What would it take for a small fly and insect eating Venus Fly Trap plant to grow to giant size and suddenly start consuming larger flesh-bearing creatures for supper like dog size animals? How did these plants develop the taste for flesh?

It takes thousands of years for genetic life to evolve, mutate and change into a form variation. If carnivorous plants lived in an environment that caused a growth spurt, the mouth leaves could grow much larger and theoretically start consuming larger and larger prey. But what other factors could contribute to a plant like the Venus Fly Trap making it grow much larger?

First of all, why bother with carnivory? Most carnivorous plants receive a lot of sunlight but grow in waterlogged soils that are extremely low in nutrients. The ancestors of today’s carnivorous plants needed to get their nutrition (particularly nitrogen and phosphorus) from another source, and the high light levels meant they could afford to be less efficient at photosynthesis by turning their leaves into traps.

Studies show carnivorous plants used dextrous genetic shuffling to evolve the ability to catch and digest protein-rich meals. Many plants have the necessary genes and the path to become meat eating is wide open. The Venus flytrap lived in nitrogen poor environments and therefore adapted to gathering additional nutrients by catching and consuming insects. They use modified leaves, or pads, wide with short stiff trigger hairs, that snap shut when an insect lands—but only after the pads sense multiple touches on their trigger hairs.

We envision genetics and DNA strands taking a hit from a random cosmic ray and turning on the growth trigger. The carnivorous plants grow larger and larger until the hunger requirement for food also increases to a situation where small insects don't provide enough meat for sustenance. It then bends open its strong large leaves to allow small animals to step in to get at the sweet nectar secretions which also serve as a sticky bond to semi capture the animal which causes it to struggle and activate the leaf closing mechanism and digestion begins. Mice, small rodents, cats and dogs beware!

Here at the Lab, we highly encourage cultivating and evolving the Venus Fly Trap plant species. Although widely cultivated for sale, the population of the Venus flytrap has been rapidly declining in its native range. The species is currently under Endangered Species Act review by the U.S. Fish & Wildlife Service.




Tuesday, November 2, 2021

Sentient Plant Strange Behavior

 
Sentient Plant Strange Behavior

by Humanoido

After I moved the sentient plant into a new type of designed multi-function home, one with a greenhouse function, soil containment and a hydroponics bay, the biological growth took off. Now growing with seven leaves, including another newborn, a new behavior began to take shape. The new vessel has condensation forming on the enclosure wall that drips down onto the leaves. This did not go unnoticed by the sentient plant.

At first, the relatively flat leaves had water droplets just slide off. But after only a few days, I noticed the leaves started to become perceptively curled, notably into a funnel shape. This purpose is to collect the water droplets into the leaves for growth consumption. Strange how these plants are very self aware of their surroundings and appear to have many smart life behaviors.

Saturday, October 23, 2021

Sentient Plant Medical Facility Established

Sentient Plant Medical Facility Established

HOSPITAL FOR PLANTS
A new medical facility for plants was established by Humanoido and Big Brain Industries for the health, well being, and survival of sentient plants and their offspring.

After a plant fell sick and then had a breech baby requiring surgery to save it, the idea to establish a medical facility for plants was put in a motion at the Big Brain Technologies corporate meeting and unanimously passed for approval. The medical center was founded on Saturday, October 23, 2021. The center is being equipped to handle birthing anomalies such as breech babies, various illnesses, and the testing and determination of conditions such as water PH levels and soil quality. The center will analyze soil centers and hydroponics bays. The lab will provide supplies, tools, containers, soil, filtered water, soil vessels, hydroponics bays and terrariums. A division for botany biology, sentience and AI is included on the East Wing.

Thursday, December 12, 2013

Speed Up Evolution

HOW TO SPEED UP EVOLUTION
SPEED UP EVO TO GROW AND EVOLVE MACHINE LIFE FORMS

Evolution is a gradual process in which something changes into a different and usually more complex or better form. Humans are continuing to evolve over time in terms of height and other physical attributes. Animals and other biological life forms also continue to evolve and adapt to changing environments. Humans evolve their surroundings through technology and its advancement.

Biological evolution is a slow process and can take millions and even billions of years. However, machine evo is a different story. It's possible to build one machine on Monday, and on Tuesday, modify it and evolve it into a more efficient machine. Given a machine life form, the prospect of evolving it at a fast rate is viable. One only needs to put more hours of development or manpower on it, so speeding up machine evo is possible.

In the future, machines will do their own evo at very fast and high speed rates. Getting to that point will require very intelligent machines as life forms that can go beyond humans.

For now, you can evolve your own machine life form by giving it more capability, more processors, more parallel tasks, greater memory, higher speed, and the ability to do more thinking and reasoning.