Becerra L, Iadarola M, Borsook D
Center for Functional Pain Neuroimaging and Therapy Research, Massachusetts General Hospital-Nuclear Magnetic Resonance Center, Department of Radiology, Charlestown, Massachusetts 02129-2060, USA.
J Neurophysiol. 2004 Jan;91(1):533-41. doi: 10.1152/jn.00326.2003.
Recently, functional magnetic resonance imaging has been used as a novel method of evaluating the CNS response to noxious stimuli. In a previous study, a prolonged noxious thermal stimulus applied to the dorsum of the hand produced more than one hemodynamic response that was temporally segregated. The two major responses displayed activation in primary sensory regions (classic pain circuitry) and regions involved in emotion (reward/aversion circuitry), respectively. In the current study, we applied the same thermal stimulus separately to the dorsum of the left foot and the dorsum of the left hand in the same subjects and compared the hemodynamic responses to evaluate the effects of conduction distance on CNS activation within these two segregated systems. After stimulus delivery to the foot, the hemodynamic response in primary sensory networks occurs after a delay of 3.6 +/- 1.3 s as compared with the response after hand stimulation. The relative delay of the hemodynamic response in reward/aversion regions is not significantly different between hand and foot stimulation (0.6 +/- 2.1 s). These results within the primary sensory system are consistent with the greater conduction distance of the peripheral nerves from the hand versus the foot. The observation that the response within the reward/aversion pathways occurs with the same rapid temporal characteristics after either hand or foot stimulation supports the notion that the circuitry involved in the evaluation of aversive stimuli is rapid in onset and probably represents a major protective mechanism for survival.
最近,功能磁共振成像已被用作评估中枢神经系统对有害刺激反应的一种新方法。在先前的一项研究中,对手背施加长时间的有害热刺激会产生不止一种在时间上分离的血流动力学反应。这两种主要反应分别在初级感觉区域(经典疼痛回路)和涉及情绪的区域(奖赏/厌恶回路)显示出激活。在当前的研究中,我们在同一受试者中分别对左脚背和左手背施加相同的热刺激,并比较血流动力学反应,以评估传导距离对这两个分离系统内中枢神经系统激活的影响。在对足部施加刺激后,与手部刺激后的反应相比,初级感觉网络中的血流动力学反应在延迟3.6±1.3秒后出现。奖赏/厌恶区域中血流动力学反应的相对延迟在手部和足部刺激之间没有显著差异(0.6±2.1秒)。初级感觉系统内的这些结果与手部相对于足部外周神经更长的传导距离一致。在手或足部刺激后,奖赏/厌恶通路内的反应以相同的快速时间特征出现,这一观察结果支持了这样一种观点,即参与评估厌恶刺激的回路起效迅速,可能代表了一种主要的生存保护机制。