Showing posts with label Brain. Show all posts
Showing posts with label Brain. Show all posts

Saturday, April 13, 2013

Serial, Parallel & Synchronous Modes

Brain has three distinct processing modes, called serial, parallel and synchronous. Serial processing is associated with intelligence quotient functions in the left brain. Parallel processing is associated with emotional quotient functions in the right brain and synchronous processing is associated with spiritual quotient functions in the whole brain.

About 40Hz oscillations propagate across the whole brain synchronously, and are associated with conscious attention and the state of presence. By linking part-brain functions from both hemispheres; namely, intelligence quotient, emotional quotient and spiritual quotient into the integrated field of the whole brain, 40Hz synchronous oscillations connect mind, self and world into a meaningful whole. Consequently, 40Hz oscillations constitute the neural basis for spiritual quotient.

Neuroscience confirms that spiritual intelligence is hard-wired. But spiritual quotient circuitry remains largely dormant and undeveloped unless it’s actually used. Random moments of spiritual quotient occur spontaneously, but not often enough to be useful. Therefore, it is important to know how to activate your spiritual quotient intentionally. This converts spiritual quotient from a random fleeting experience into most valuable personal resource.

The neural pathways are highly malleable. New pathways grow quickly in adult as well as infant brains. Neural pathways are strengthened by using them. For example, taxi drivers have an enlarged part of the brain that deals with direction-finding, and violin players have an enlarged brain area that deals with the left hand, but not with the right hand. This reflects the extra use required to control the left hand on the strings, compared to the right hand holding the bow. The use of spiritual quotient over time likewise evolves a brain optimized for spiritual quotient.

The spiritual brain is optimized neurologically for spiritual quotient. The default setting of attention in the spiritual quotient brain is at the subject pole, not the object pole. The spiritual quotient brain therefore replaces the ego with the soul, both as the governor of intelligence quotient and emotional quotient, and as the seat of personal identity. The spiritual quotient brain uses intelligence quotient and emotional quotient to express the qualities of the soul, which are experienced in moments of presence, in the form of wisdom, compassion, integrity, joy, love, creativity, and peace.

Neuroscience has identified the particular type of brain processing that corresponds to spiritual experiences. The spiritual quotient paradigm combines neuroscientific evidence with findings from psychoanalysis and with evidence from cognitive and transpersonal psychology. The resulting inter-disciplinary synthesis reveals that spiritual experiences as detected neurologically are associated with a particular sense of self, distinct from the ego that corresponds with the traditional religious notion of the soul, in terms of qualities, capabilities, and self-identity. The spiritual quotient paradigm represents the neuro-psychology of the soul.

According to traditional religious beliefs, the incarnation of the soul is a supernatural event. But the spiritual quotient paradigm identifies the incarnation of the soul not as a supernatural event, but as a psycho-physical process, by means of which the brain is optimized neurologically for spiritual quotient, thereby shifting the seat of self-identity from ego to soul. Intentional use of spiritual quotient develops spiritual quotient brain circuitry, until the default setting of attention shifts from the object-pole to the subject-pole, thus replacing the ego with the soul, both as the seat of personal identity, and as the governor of intelligence quotient and emotional quotient. The spiritual quotient brain therefore represents the incarnation of the soul.

Human evolution is not primarily about modifying the shape of the human body, but evolving the brain to a higher level of functioning. Spiritual quotient represents the next level of functioning beyond intelligence quotient and emotional quotient. The spiritual quotient-optimized brain therefore represents the direction of human evolution. Consequently, human evolution is now under our conscious direction.


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Thursday, January 10, 2013

Bilinguals & Brains



Older adults who have spoken two languages since childhood are quicker at switching between cognitive tasks than single-language adults, a new study finds. The bilingual seniors also showed distinct patterns of brain activity not seen in monolingual participants. The findings, detailed in tomorrow's issue of The Journal of Neuroscience, suggest certain mental activities do, indeed, benefit individuals as they age. This study provides some of the first evidence of an association between a particular cognitively stimulating activity like speaking multiple languages on a daily basis, and brain function.

Recent research has suggested speaking two languages could keep one's cognitive flexibility, or the ability to adapt to new, often unfamiliar, situations, from declining, something thought to happen with age. To test the idea in an aging population, Brian Gold and his colleagues at the University Of Kentucky College Of Medicine scanned the brains of 30 healthy bilingual and monolingual adults ages 60-68. They used functional magnetic resonance imaging, which shows blood flow to brain regions in real time. An increase in blood flow to a specific brain region signals that region is likely becoming more active. While their brains were being scanned, participants completed a task to measure their cognitive flexibility called a color-shape task-switching game. The participants were shown one of two possible shapes (square or circle) in one of two colors (red or blue) at the center of a screen. In some instances participants had to name the color of the flashed image, in others the shape and in others the task switched back and forth from participants needing to indicate color to shape.

Both groups performed the task accurately, though bilingual individuals were faster than monolinguals. The brain scans suggested bilingual participants expended less energy in the brain's frontal cortex thought to be involved in such task switching. This suggests that bilingual seniors use their brains more efficiently than monolingual seniors. To find out when this cognitive benefit from bilingualism kicked in, the researchers ran the same experiment on younger participants with an average age of 31. As expected, younger adults were faster than older ones at completing the task. However, bilingual younger adults did no better than monolingual individuals on the task. These results suggest that lifelong bilingualism may exert its strongest benefits on the functioning of frontal brain regions in aging.

In fact, another study showed the brains of bilingual adults functioned better and for longer after individuals developed Alzheimer's disease; the bilinguals were also diagnosed with the disease about four years later, on average, than those who spoke just one language. Bilingualism can benefit even infants, with one study showing bilingual 7-month-olds more quickly adapted to different learning cues than babies from single-language households. The bilingual babies were spoken to in two languages by parents. Janet Werker, a psychologist at Vancouver's University of British Columbia, has found learning two languages can confer babies with cognitive advantages, such as special auditory and visual sensitivity.



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