Shevelev I A, Tsicalov E N, Budko K P, Sharaev G A, Gorbach A M
Institute of Higher Nervous Activity and Neurophysiology, Academy of Sciences of the USSR, Moscow.
Biomed Sci. 1990;1(6):571-7.
Although many neuroimaging methods (computer tomography, H+ and isotope clearance, [14C]deoxyglucose utilization, potential-sensitive dyes, electroencephalogram and magnetoencephalogram-mapping, nuclear magnetic resonance tomography, single photon emission computer tomography, and positron emission tomography) are now being used to map brain structure and function, there still exists a need for a new approach that is functional, dynamic, remote, and noninvasive, and that also has reasonable sensitivity and spatial and temporal resolution. Such a method is described here. Thermoencephaloscopy (TES), based on thermovision and digital image processing techniques, is a method of neuroimaging consisting of recording through the intact skull the very weak changes in infrared radiation that are connected with brain activity. The parameters of the method are: temperature sensitivity of 0.002 degrees C, instrumental spatial resolution of 70 microns pixel-1, and instrumental temporal resolution of 40 ms (enabling up to twenty-five maps to be produced per second). The distribution over the rat cerebral cortex of local, multiple, and modally and regionally specific thermoresponses to various sensory stimuli, direct cortical stimulation, and associative learning (conditioning), have been studied, as well as the spreading of thermowaves over the brain cortex. The underlying mechanisms which form the basis of the technique of TES, such as joule heating, local changes in brain metabolism and local cerebral blood flow, as well as the formation of thermodipoles, are discussed.
尽管目前许多神经成像方法(计算机断层扫描、氢离子和同位素清除、[14C]脱氧葡萄糖利用、电位敏感染料、脑电图和脑磁图映射、核磁共振断层扫描、单光子发射计算机断层扫描和正电子发射断层扫描)都在用于绘制脑结构和功能图,但仍然需要一种新的方法,它具有功能性、动态性、远程性和非侵入性,并且还具有合理的灵敏度以及空间和时间分辨率。本文描述了这样一种方法。热脑成像(TES)基于热成像和数字图像处理技术,是一种神经成像方法,包括通过完整的头骨记录与脑活动相关的非常微弱的红外辐射变化。该方法的参数为:温度灵敏度为0.002摄氏度,仪器空间分辨率为70微米/像素,仪器时间分辨率为40毫秒(每秒能够生成多达25张图谱)。已经研究了大鼠大脑皮质对各种感觉刺激、直接皮质刺激和联想学习(条件反射)的局部、多个以及模式和区域特异性热反应的分布,以及热波在大脑皮质上的传播。文中还讨论了构成TES技术基础的潜在机制,如焦耳热、脑代谢的局部变化和局部脑血流量,以及热偶极子的形成。