Translational Neuromodeling Unit (TNU), Institute for Biomedical Engineering, University of Zurich & ETH Zurich, Zurich, Switzerland.
Translational Neuromodeling Unit (TNU), Institute for Biomedical Engineering, University of Zurich & ETH Zurich, Zurich, Switzerland.
Neurosci Biobehav Rev. 2024 Apr;159:105608. doi: 10.1016/j.neubiorev.2024.105608. Epub 2024 Mar 2.
While interoception is of major neuroscientific interest, its precise definition and delineation from exteroception continue to be debated. Here, we propose a functional distinction between interoception and exteroception based on computational concepts of sensor-effector loops. Under this view, the classification of sensory inputs as serving interoception or exteroception depends on the sensor-effector loop they feed into, for the control of either bodily (physiological and biochemical) or environmental states. We explain the utility of this perspective by examining the perception of skin temperature, one of the most challenging cases for distinguishing between interoception and exteroception. Specifically, we propose conceptualising thermoception as inference about the thermal state of the body (including the skin), which is directly coupled to thermoregulatory processes. This functional view emphasises the coupling to regulation (control) as a defining property of perception (inference) and connects the definition of interoception to contemporary computational theories of brain-body interactions.
尽管内感受性是神经科学的主要研究对象,但它的确切定义及其与外感受性的划分仍在争论之中。在这里,我们基于传感器-效应器回路的计算概念,提出了内感受性和外感受性之间的功能区分。根据这一观点,将感觉输入分类为内感受或外感受取决于它们所馈入的传感器-效应器回路,用于控制身体(生理和生化)或环境状态。我们通过检查皮肤温度的感知来解释这种观点的实用性,皮肤温度的感知是区分内感受性和外感受性最具挑战性的情况之一。具体来说,我们提出将热感觉概念化为对身体(包括皮肤)的热状态的推断,这种推断直接与体温调节过程相关。这种功能观点强调了与调节(控制)的耦合作为感知(推断)的一个定义属性,并将内感受性的定义与当代大脑-身体相互作用的计算理论联系起来。