Fractal analysis of thermoregulatory complexity
نویسنده
چکیده
Blessing and Ootsuka present in this issue of Temperature a cogent treatment of the analytical and conceptual pitfalls of 2 heavy hitters in physiology and behavior: the concept of homeostasis and the concept that most biobehavioral outcomes of a rhythmical nature are intrinsically sinusoidal and thus imbued with predictable periodicity. These conventions, the authors argue, fail to take into account the unpredictable but real patterns of jaggedness of manifold time-varying biobehavioral variables, and this failure raises a substantial barrier to progress in the physiological and behavioral sciences. Homeostasis is of such fundamental conceptual, explanatory and predictive importance in the biobehavioral and biomedical canons that to question its virtue is to invite marginalization by the gatekeepers of proper thought. Such pertains as well to the long tradition of seeking periodic sinusoidal descriptions of the fluctuations elaborated by manifold biobehavioral outcomes. Indeed, Blessing and Ootsuka note the hostility evinced by referees in prior attempts to publish analyses that depart from the homeostatic and sinusoidal conventions. The historical roots of homeostasis, nicely detailed by Blessing and Ootsuka, can be distilled, imperfectly, into 2 words: averaging and engineering. Because many “homeostatic” variables measured via the relatively crude means available to classical physiologists were recorded as averaged values, any inherent jaggedness tended to be smoothed into oblivion. Hence variables such as core temperature tended toward a guise of stability. The level at which that occurred was, of course, a function of experimental manipulations or naturalistic conditions. That source of variation, in turn, came to be viewed through the lens of engineering control theory with its immensely influential protocol of negative feedback summation with a reference set-point as a means of actuating effector responses that stabilize the controlled output at some desired level. Moreover, an influential aspect of the typical physiologists’ understanding of homeostatic control was (and remains) the reductive pedagogical simplification of control system dynamics into flattened steady-state static analyses or simplistic heuristic descriptions in the coursework aimed at physiology students not versed in the complex number plane, Laplace transforms and related mathematics needed to appreciate the surprisingly rich dynamics of even fairly elementary control systems. Not incidentally, the classical mathematics of control theory depends on the frequency domain, a realm in which sophisticated sinusoidal transformations of time domain signals make system solutions more tractable. Similarly, in chronobiology the classical mathematics of sinusoids, notably Fourier analysis, emerged as an immensely useful means of decomposing time varying signals into sums of sinusoids to discern patterns of regularity. On broad time scales, e.g., days, weeks and years, many biological outputs are time-varying outcomes that indeed are amenable to analyses aimed at identifying regularity. Body temperature and metabolic rate are but 2 outcomes that exhibit a circadian predictability in which peaks and nadirs recur daily; in hibernating mammals feeding behavior and fat storage exhibit circannual predictability wherein peaks and nadirs recur annually. However, representing a time-varying outcome as a sinusoid, another instance of smoothing, diverts attention from finer grained ultradian fluctuations when these are revealed by modern biometric devices. Modern
منابع مشابه
Brain complexity increases during the manic episode of bipolar mood disorder type I
Fractal dimension of the electroencephalographic (EEG) signal has been argued to reflect the complexity of the underlying brain processes. To this date, conventional studies of EEG in mood disorders have not been able to distinguish between patients and normal individuals. Here we show that, compared to normal subjects, EEG fractal dimension is significantly augmented in the manic episode of bi...
متن کاملBrain complexity increases during the manic episode of bipolar mood disorder type I
Fractal dimension of the electroencephalographic (EEG) signal has been argued to reflect the complexity of the underlying brain processes. To this date, conventional studies of EEG in mood disorders have not been able to distinguish between patients and normal individuals. Here we show that, compared to normal subjects, EEG fractal dimension is significantly augmented in the manic episode of bi...
متن کاملComparison Density and Fractal Dimension of Drainage Networks in Different Scales and Precision Different (Case Study: Ilam Watersheds)
Every phenomena in the nature, despite the complexity of the subject, has certain rules and regulations. River pattern and behavior as one of the most complex natural phenomena to this is not an exception. Depending on geomorphologic, climatic, topographic and erosive conditions, the waterways exhibit different patterns and behaviors. One of the parameters which can be achieved using the comple...
متن کاملAssessment the Effect of Exposure Conditions and Geometry Parameters on Calculated Fractal Dimension of Mandibular Bone
Introduction: One of the fractal analysis methods to examine the structure of a texture is fractal dimension (F.D.) measurement. F.D is a quantitative method to show the complexity of a structure using a number. The aim of this study was to determine the effect of different exposure conditions, voltages and angle of x-ray tube on F.D. values of mandibular bone. Methods: This lab-trial analytic...
متن کاملIdentification of active tectonic areas using fractal analysis (box counting) of earthquakes, lines and waterways of Alborz province
Fractal analysis of earthquakes, lineages and waterways are considered as one of the practical tools to evaluate tectonic activity. With the help of fractal analysis, structural maturity and tectonic dynamics can be evaluated. In this research, using fractal analysis and box counting method and fild studies, the measured fractal dimensions for the designed network of Alborz province were studie...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره 3 شماره
صفحات -
تاریخ انتشار 2016