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Wetware technology

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Wetware technology is evidenced in a sample of brain cells. Collecting the information will involve grouping brain parts, observing them via a microscope, gauging the form and electrical behavior of neurons individually. Moreover, the neurons will be captured by the form, electrical and physiological activity, website inside the cerebral cortex, and their population density (Applegate, 2009, p.44). These observations will be translated into precise algorithms which describe the method, function and positioning strategies of neurons. The algorithms will then be used to generate biologically real looking virtual neurons prepared for simulation. In simulating information, the virtual cells will be synthesized using the algorithms which describe real neurons. The algorithms and parameters are adjusted for the age, species, and disease stage of the animal being simulated (Kroker & Arthur, 1993). Each single protein will be affected. The neurons are functionalized and are therefore the simulation delivered to live. The patterns of emerging behavior will then be viewed as visualization software package.

DISCUSSION

Artificial intelligence researchers are interested in creating robot machines with capabilities of the human brain. Neuroscientists and engineers are on the move to create artificial neural networks which disseminate information based on a biological model. Through the successful implementation of wetware technology, humans will not have a struggle remembering things. It will also be possible to make decisions that people tend to struggle with and which consumes tremendous time. Some of the exciting advancements in wetware include project underskin. Ideally, project undertaking is ideally a sub-dermal tattoo which utilizes the touch functionality in connecting one to the routine activities, objects as well as the surrounding environment. It is through the project under the skin that humans have been related to typical technological gadgets such as credit cards, smartphones, and locked doors as well as 99 percent of the body implants. A more interesting concept advanced by the project underskin is the ability to exchange information, swap contacts, and email addresses by literally shaking hands. NewDealDesign, the company that built FitBit has aggressively championed for the advancement of Project underskin.

Sound Unbound is some ultrasound-powered piezoelectric chip which performs basic medical commands. Sound Unbound is a project by Stanford University researchers. It has come to the avail of medical implants operations which are commonly performed during neurological disorders (Peltier, 2006). Though the chip prototype since it energy it utilizes is not enough to satisfy the needs of modern gadgetry. Nevertheless, research, development, and improvements in the technology are underway to make this wetware technology a reality.

Remote controlled drug delivery is yet another nanochannel wetware technology which operates on a mechanism of delivering drugs to a subject a controlled state using implantable remote-controlled gadget. The scientists behind this technology have fashioned it to perform on earth as well as in space. The technology’s functionality is indeed diverse as the remotely controlled drugs can be released to people in distant places. The remote drug delivery is a telemedicine advancement which will seek to cut costs, improve hospitalization and travel for treatment.

Bionic eyes are also another cool wetware technological developments in smart lens tech by Novartis and Google (Liu & Shimohara, 2007). It is ideally one of the most well-known implants is the Argus II, and it involves installation of a small implant behind the retina and a wearable device. Bionic eyes are designed to allow blind people to differentiate between light and dark. With their focus towards giving super humans vision, research and development are aimed at establishing recognition between faces and read large prints.

With cyborg limbs, it is possible to fuse humans, machines and work via mind control through the whole bone-anchored bionic arm implants. Essentially, a bionic bone can create a seamless connection between nerves and circuits (Masters, 2005). Though there is a move to control its functionality using computers, the use of robotics to replace tendons and muscles in the lower leg is indeed a next-generation prosthetic that is hugely growing in popularity. And mind you, these are not just artificial limbs but are rather human enhancements.

The fact that it is possible to use the intelligence of a person even after death is indeed mind-blowing. People with disabilities will also reap the benefits of the wetware technology. The blind for example will be in a position to see while implants will be efficiently handled thereby eliminating disabilities and chronic diseases which tend to be evidenced during people’s lifetime (Rucker, 1988). However, there is fear that human cloning will be indeed a problem that people will face. Moreover, since the wetware technologies utilize circuits and electronic systems, there is a possibility that it will have an adverse impact on the body parts and fluids. Though the outcomes are hard to predict, genetic algorithm will help find a better long lasting solution now that the blue brain technology is the future of technology!

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