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开发一种刺激器,用于使用 BOLD-fMRI 在啮齿动物中对机械诱发的疼痛相关的脊髓上处理进行特征描述。

Development of a Stimulator for the Characterization of Mechanical-Evoked Pain-Related Supra-Spinal Processing Using BOLD-fMRI in Rodents.

出版信息

IEEE Trans Biomed Eng. 2020 May;67(5):1349-1356. doi: 10.1109/TBME.2019.2936571. Epub 2019 Aug 22.

Abstract

OBJECTIVE

Investigation of pain-related brain processing in animal models is often performed with unspecific stimuli that are not representative of clinically relevant pain phenomena such as punctate hyperalgesia or pressure pain. In order to explore cerebral processing of mechanically evoked pain with functional Magnetic Resonance Imaging (fMRI), a MRI-compatible spatially- and strength-specific mechanical stimulator incorporating either von-Frey filaments or an air-puff system was developed. With this device, mechanical stimuli can be applied to various aspects on the rat hind paw (HP).

METHODS

The mechanical stimulator consists of an electro-pneumatic unit connected to the part delivering the mechanical stimulation (MS) via a non-magnetic spring for punctate MS (using a von-Frey filament) or via a Lure-lock unit for pressure pain (air-puffs). The strengths of stimuli were calibrated against the delivered air pressure and weight exerted on a pressure pad or in vivo. BOLD fMRI was performed in a 9.4T MRI scanner during calibrated MS at increasing air pressure.

RESULTS

We observed a linear relationship between air pressure and force. These calibrations provided quantitative, adjustable, precise and reproducible sub- and supra-threshold MS. Changes in brain activation were investigated up to a force of 154 g using von-Frey filaments, while the maximum force was 30.9 g for air-puffs. Stimulation demonstrated a significant difference between the two types of MS. Unilateral suprathreshold MS induced strong bilateral brain activation in the areas related to pain processing for both types of MS. However, the patterns of brain activity in subcortical areas evoked by von-Frey MS were different from that evoked by air-puffs.

CONCLUSION

The precise delivery of calibrated and reproducible punctate and static MS allows for the specific assessment of clinically relevant supra-spinal correlates of pain-related processes using BOLD fMRI.

SIGNIFICANCE

A novel device for clinically relevant MS in BOLD fMRI pain studies in rats, providing results that may be directly translated to human pain research.

摘要

目的

在动物模型中进行与疼痛相关的大脑处理研究时,通常使用的是非特异性刺激,这些刺激不能代表临床上相关的疼痛现象,如点状痛觉过敏或压痛。为了用功能磁共振成像(fMRI)探索机械诱发疼痛的大脑处理,开发了一种与磁共振兼容的、空间和强度特异性的机械刺激器,该刺激器结合了 von-Frey 纤维或空气喷射系统。使用该设备,可以将机械刺激施加到大鼠后足(HP)的各个部位。

方法

机械刺激器由一个电动气动单元组成,通过一个非磁性弹簧与施加机械刺激的部分相连,用于点状 MS(使用 von-Frey 纤维)或通过 Lure-lock 单元用于压力痛觉(空气喷射)。通过在压力垫上或体内施加的空气压力和重量,对刺激的强度进行校准。在 9.4T MRI 扫描仪中,在逐渐增加空气压力的情况下进行校准的 MS 时,进行 BOLD fMRI。

结果

我们观察到空气压力与力之间存在线性关系。这些校准提供了定量、可调、精确和可重复的亚阈值和超阈值 MS。使用 von-Frey 纤维,我们研究了高达 154g 的力的脑激活变化,而空气喷射的最大力为 30.9g。两种类型的 MS 之间的刺激显示出显著差异。单侧超阈值 MS 引起了两种类型 MS 相关的疼痛处理区域的强烈双侧大脑激活。然而,von-Frey MS 诱发的皮质下区域的脑活动模式与空气喷射诱发的不同。

结论

精确传递校准和可重复的点状和静态 MS,允许使用 BOLD fMRI 特异性评估与疼痛相关过程的临床相关脊髓上相关性。

意义

一种用于大鼠 BOLD fMRI 疼痛研究中临床相关 MS 的新型设备,提供的结果可能直接转化为人类疼痛研究。

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