As introduced previously, the information field can serve as a base for inferences in terms of dynamics but also of relativity, with the latter being discussed regarding the possibility of transformation between information and energy (and mass as well). An energy equivalent of information is obtained: b, a new constant of nature, patterned after the mechanical equivalent of heat. Some approaches to the calculation of b are considered. Proceeding from the laws of transformation, a more general rule of information conservation is obtained, which may also be written as an equation of matter. The transformations can be presented also by geometrical means. In the m-W-I model space, all biological processes seem to be functions of time. By letting time be x4 = ict with a view to the spatial coordinates of the model space, the Minkowski space is shown to apply to biology too, where it seems to have implications similar to those it has in physics. In 2 tables, a systematic listing of origins and results of biodynamics and bioenergetics (biorelativity) is given.
如前所述,信息场可以作为动力学以及相对论推理的基础,后者涉及信息与能量(以及质量)之间转换的可能性。由此得到了信息的能量等效值:b,一个新的自然常数,它是仿照热的机械等效值得出的。文中考虑了一些计算b的方法。从变换定律出发,得到了一个更普遍的信息守恒规则,它也可以写成物质方程。这些变换也可以用几何方法来表示。在m-W-I模型空间中,所有生物过程似乎都是时间的函数。考虑到模型空间的空间坐标,令时间为x4 = ict,结果表明闵可夫斯基空间也适用于生物学,在生物学中它似乎有着与在物理学中类似的含义。在两张表格中,系统列出了生物动力学和生物能量学(生物相对论)的起源和结果。