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Electrophysiology of growth control and acupuncture.

机译:生长控制和针灸的电生理学。

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Bioelectric fields have been shown to interact with morphogens and guide growth control. The morphogenetic singularity theory published a decade ago suggests that organizing centers have high density of gap junctions and high electrical conductance. They are the singular points in morphogen gradient and bioelectric field. A growth control system originates from a network of organizing centers containing under-differentiated cells and retains its regulatory functions after embryogenesis. The formation and maintenance of all the physiological systems are directly dependent on the activity of the growth control system. The evolutionary origin of the growth control system is likely to have preceded all the other physiological systems. Its genetic blueprint might have served as a template from which the newer systems evolved. The growth control signal transduction is embedded in the activity of the function-based physiological systems. The regulation of most physiological processes is through growth control mechanisms such as hypertrophy, hyperplasia, atrophy, and apoptosis. Acupuncture points, which also have high electrical conductance and high density of gap junctions, originate from organizing centers. This theory can explain the distribution and non-specific activation of organizing centers and many research results in acupuncture. In several 'prospective blind trials', recent research results have supported its corollary on the role of singularity and separatrix in morphogenesis, the predictions on the high electric conductance and the high density of gap junctions at the organizing centers. These advances have broad implications in biomedical sciences.
机译:已经证明生物电场与形态发生子相互作用并指导生长控制。十年前发表的形态发生奇点理论表明,组织中心具有高密度的缝隙连接和高电导率。它们是形态发生子梯度和生物电场中的奇异点。生长控制系统源自包含分化不足的细胞的组织中心网络,并在胚胎发生后保留其调节功能。所有生理系统的形成和维持都直接取决于生长控制系统的活动。生长控制系统的进化起源可能早于所有其他生理系统。它的遗传蓝图可能已作为更新系统进化的模板。生长控制信号转导被嵌入基于功能的生理系统的活动中。大多数生理过程的调节是通过生长控制机制,例如肥大,增生,萎缩和凋亡。穴位也具有高电导率和高间隙连接密度,起源于组织中心。这种理论可以解释组织中心的分布和非特异性激活以及针灸的许多研究成果。在一些“前瞻性盲试验”中,最近的研究结果支持了其奇异性和分离性在形态发生中的作用,对组织中心高电导率和间隙连接处高密度的预测的推论。这些进展在生物医学领域具有广泛的意义。

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