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3. Fractalism and Tumorigenesis
Fractalism plays a major role in the amplification of tissue distortion, and which is closely related to tumorigenesis. When a tissue causes initial distortion and changes the momentum, it starts amplifying the initial distortion and causes secondary distortion. Next, the tissue cannot bear the tensile strength of the secondary distortion, it causes third distortion in the peak of the secondary distortion. This third distortion is directly related to tumorigenesis. Interestingly enough, in this process, the amplification of tissue distortion occurs stepwise, because a tissue is a fractal structure and amplifies the tissue distortion by using the fractal movement.

(a) Amplification of Tissue Distortion
Now, by using theoretical models, let us check how a tissue amplify the tissue distortion. When a tissue causes initial distortion and changes the momentum, it starts activating the smallest fractal units. Then, the tissue, by using the internal movements in the smallest fractal units, amplifies the initial distortion and causes very-small secondary distortion. After the tissue finished changing the momentum by using the smallest fractal units, it next starts activating the secondary-smallest fractal units, Then, the tissue, also by using the internal movements in the secondary-smallest fractal units, amplifies the initial distortion and causes a little larger secondary distortion. As seen in this process, a tissue with tissue distortion amplifies the tissue distortion according to the sizes of fractal units, so that it amplifies the tissue distortion stepwise.

Amplification of Tissue Distortion
(A tissue with tissue distortion stepwise amplifies the tissue distortion by changing the momentum. )

(b) Tumorigenesis
Next, also consider how a tissue with tissue distortion causes a tumor. A tissue with large tissue distortion loses the good stability, and waits for a chance of neutralizing the large tissue distortion. In addition, when this tissue cannot bear the tensile strength of the tissue distortion, it cuts the continuity in energy flow at the peak of the tissue distortion; then, it causes an invisible hole there. In this hole, the tissue can cause new tissue distortion to neutralize the large tissue distortion. This new tissue distortion has the ability of transforming its containing cells into new cells: tumor cells.

As seen in this process, the size of field plays a major role in controlling tumorigenesis. Fractal movement has the ability to control the size of focal tissue; this means that a tissue cannot cause a tumor without using fractal movement. This is because any tumor has its own size.


Fractalism and Tumorigenesis
(When a distorted tissue cannot bear the tensile strength of the tissue distortion, it cuts the connection in energy flow and causes an invisible hole there. In this hole, the tissue causes new tissue distortion, which has the ability of transforming the containing cells into tumor cells.)

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