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利用超声成像和计算模型了解肌筋膜触发点的血管环境。

Understanding the vascular environment of myofascial trigger points using ultrasonic imaging and computational modeling.

作者信息

Sikdar Siddhartha, Ortiz Robin, Gebreab Tadesse, Gerber Lynn H, Shah Jay P

机构信息

Department of Electrical and Computer Engineering, George Mason University, Fairfax, VA 22030, USA.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:5302-5. doi: 10.1109/IEMBS.2010.5626326.

Abstract

Myofascial pain syndrome (MPS) is a common, yet poorly understood, acute and chronic pain condition. MPS is characterized by local and referred pain associated with hyperirritable nodules known as myofascial trigger points (MTrPs) that are stiff, localized spots of exquisite tenderness in a palpable taut band of skeletal muscle. Recently, our research group has developed new ultrasound imaging methods to visualize and characterize MTrPs and their surrounding soft tissue. The goal of this paper was to quantitatively analyze Doppler velocity waveforms in blood vessels in the neighborhood of MTrPs to characterize their vascular environment. A lumped parameter compartment model was then used to understand the physiological origin of the flow velocity waveforms. 16 patients with acute neck pain were recruited for the study and the blood vessels in the upper trapezius muscle in the neighborhood of palpable MTrPs were imaged using Doppler ultrasound. Preliminary findings show that symptomatic MTrPs have significantly higher peak systolic velocities and negative diastolic velocities compared to latent MTrPs and normal muscle sites. Using compartment modeling, we show that a constricted vascular bed and an enlarged vascular volume could explain the observed flow waveforms with retrograde diastolic flow.

摘要

肌筋膜疼痛综合征(MPS)是一种常见但了解不足的急慢性疼痛病症。MPS的特征是局部疼痛和牵涉痛,与称为肌筋膜触发点(MTrP)的高敏结节相关,这些触发点是骨骼肌可触及的紧张带中僵硬、局部压痛明显的部位。最近,我们的研究小组开发了新的超声成像方法来可视化和表征MTrP及其周围软组织。本文的目的是定量分析MTrP附近血管中的多普勒速度波形,以表征其血管环境。然后使用集总参数房室模型来理解流速波形的生理起源。招募了16名急性颈部疼痛患者进行研究,并使用多普勒超声对可触及的MTrP附近斜方肌上部的血管进行成像。初步研究结果表明,与潜伏性MTrP和正常肌肉部位相比,有症状的MTrP具有明显更高的收缩期峰值速度和负向舒张期速度。使用房室模型,我们表明血管床收缩和血管容积增大可以解释观察到的伴有舒张期逆向血流的血流波形。

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