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自动热按摩床对深层组织加热的计算建模:预测对血液循环的影响。

Computational Modeling of Deep Tissue Heating by an Automatic Thermal Massage Bed: Predicting the Effects on Circulation.

作者信息

Dmochowski Jacek P, Khadka Niranjan, Cardoso Luis, Meneses Edson, Lee Kiwon, Kim Sungjin, Jin Youngsoo, Bikson Marom

机构信息

Department of Biomedical Engineering, City College of New York, New York, NY, United States.

Division of Neuropsychiatry and Neuromodulation, Department of Psychiatry, Massachusetts General Hospital and Harvard Medical School, Boston, MA, United States.

出版信息

Front Med Technol. 2022 Jun 14;4:925554. doi: 10.3389/fmedt.2022.925554. eCollection 2022.

Abstract

Automatic thermal and mechanical massage beds support self-managed treatment, including reduction of pain and stress, enhanced circulation, and improved mobility. As the devices become more sophisticated (increasing the degrees of freedom), it is essential to identify the settings that best target the desired tissue. To that end, we developed an MRI-derived model of the lower back and simulated the physiological effects of a commercial thermal-mechanical massage bed. Here we specifically estimated the tissue temperature and increased circulation under steady-state conditions for typical thermal actuator settings (i.e., 45-65°C). Energy transfer across nine tissues was simulated with finite element modeling (FEM) and the resulting heating was coupled to blood flow with an empirically-guided model of temperature-dependent circulation. Our findings indicate that thermal massage increases tissue temperature by 3-8°C and 1-3°C at depths of 2 and 3 cm, respectively. Importantly, due to the rapid (non-linear) increase of circulation with local temperature, this is expected to increase blood flow four-fold (4x) at depths occupied by deep tissue and muscle. These predictions are consistent with prior clinical observations of therapeutic benefits derived from spinal thermal massage.

摘要

自动热机械按摩床支持自我管理治疗,包括减轻疼痛和压力、促进血液循环以及改善活动能力。随着设备变得越来越复杂(增加自由度),确定最适合目标组织的设置至关重要。为此,我们开发了一种基于MRI的下背部模型,并模拟了商用热机械按摩床的生理效应。在此,我们特别估计了典型热致动器设置(即45 - 65°C)下稳态条件下的组织温度和血液循环增加情况。通过有限元建模(FEM)模拟了九个组织之间的能量传递,并使用基于经验的温度依赖性循环模型将产生的热量与血流耦合。我们的研究结果表明,热按摩在2厘米和3厘米深度处分别使组织温度升高3 - 8°C和1 - 3°C。重要的是,由于血液循环随局部温度快速(非线性)增加,预计在深部组织和肌肉所在深度处血流量将增加四倍(4倍)。这些预测与先前关于脊柱热按摩治疗益处的临床观察结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa90/9238293/2f86304adc63/fmedt-04-925554-g0001.jpg

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