Sire- Any Xenoshyft that helps the bearer create a gen “ father figure “īearer - Any Xenoshyft that “ gave birth/life “ to another Xenoshyft. Most of the courturion league is filled with delta’s but there’s lots of other caste represented in the courts. They are separated depending on the patron and their courts that they wish to work for. Many colonies would have stuff dedicated to their patron, but still greatly respect the other patrons.Ĭenturion - A centurion is anyone in a position of power and authority, usually the head of a top department, like a police commissioner or military commander.Ĭourturion - Courturions are the politician’s of the empire. Patron - Xenoshyfts under the empire refer to the three rulers as patrons and usually have a specific patron that they follow. Some can change and will be added in the future ◇ XENOSHYFT BASE IS ONE HEIGHT YOU MUST STATE YOUR XENO’S HEIGHT AND CASTE WHEN CREATING THEM ◇ Usual Location = Astrum/incedium/tranquilium ( Capital ).Omegas can become engineers, architects, Farmers, etc. They are also seen as a very hands on and mechanical caste. Omegas can be unstable when it comes to their emotions simply because of their makeup. Omegas - This being the shortest caste, omegas are about the same or higher of a level than alphas. Usual Location = Tranquilium( Capital ).The most respected betas are ones in high position of their jobs like professors, Popular singers, government speakers, etc. Most betas aren’t given desirable jobs and are given mostly social or artistic jobs like teachers, small speakers, singers, artist, etc. Temper = Usually Aggressive and dominateīetas - seen as the lowest and less valued caste, betas are know for their calmer and more social personality.They are also the second tallest caste and make up most of the military or police force. Temper = Usually Collective and intelligentĪlphas - The strongest and more suited for leadership roles. They are seen as the second highest caste because of their strong influence on societies technologies. All rights reserved.There are different caste systems depending on the way Xenoshyfts are created.ĭelta - Very smart and scientific caste. It could also further the explanation of the mechanism of regeneration at the cellular and molecular level.Ĭopyright © 2012 Elsevier Ltd. Future use or adaptations of these largely quantitative rules could account more satisfactorily for problems, such as imperfect function of regenerated organs, that are currently encountered by researchers. Although these acellular matrices are distinctly different from simple collagen scaffolds, and the methods used by the investigators are still evolving, the results obtained are shown to be broadly consistent with the predictions of the four rules. Decellularized matrices have been used during the past few years to regenerate, in whole or in part, the urethra, the abdominal wall, the Achilles tendon, the bladder, the trachea and other organs in several animal models and occasionally in humans. The four rules, based on studies with just two organs (skin and peripheral nerves), are now viewed in the context of ongoing studies using scaffolds based on decellularized matrices, which are mostly based on collagen. An active scaffold emerges as a temporarily insoluble collagen surface, equipped with sufficient ligands for integrins of contractile cells, that inhibits wound contraction while also serving as a topographic template for new stroma synthesis. The combined evidence points at certain requirements for the structure of a collagen scaffold with regenerative activity. These largely quantitative rules distinguish sharply between spontaneously regenerative and nonregenerative tissues, select the two reactants that are required for regeneration, recognize the essential modification of the wound healing process that must be realized prior to regeneration, and identify three structural features of scaffolds that are required for regenerative activity. The four rules have emerged from multiyear quantitative studies with skin and peripheral nerve regeneration using scaffold libraries based on a simple, well-defined collagen scaffold. In the field of regenerative medicine no widely accepted paradigm is currently available that can guide formulation of new theories on the mechanism of regeneration in adults and open new directions for improved regeneration outcomes. We review the available evidence for regeneration of adult organs of very diverse nature and examine the applicability of simple rules that can be used to summarize these treatments.
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