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Relationships between Scalp Brain and Skull Motion Estimated using Magnetic Resonance Elastography

机译:磁共振弹性成像估计头皮大脑和颅骨运动之间的关系

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摘要

The objective of this study was to characterize the relationships between motion in the scalp, skull, and brain. In vivo estimates of motion transmission from the skull to the brain may illuminate the mechanics of traumatic brain injury. Because of challenges in directly sensing skull motion, it is useful to know how well motion of soft tissue of the head, i.e., the scalp, can approximate skull motion or predict brain tissue deformation. In this study, motion of the scalp and brain were measured using magnetic resonance elastography (MRE) and separated into components due to rigid-body displacement and dynamic deformation. Displacement estimates in the scalp were calculated using low motion-encoding gradient strength in order to reduce “phase wrapping” (an ambiguity in displacement estimates caused by the 2π-periodicity of MRE phase contrast). MRE estimates of scalp and brain motion were compared to skull motion estimated from three tri-axial accelerometers. Comparison of the relative amplitudes and phases of harmonic motion in the scalp, skull, and brain of six human subjects indicate that data from scalp-based sensors should be used with caution to estimate skull kinematics, but that fairly consistent relationships exist between scalp, skull, and brain motion. In addition, the measured amplitude and phase relationships of scalp, skull, and brain can be used to evaluate and improve mathematical models of head biomechanics.
机译:这项研究的目的是表征头皮,头骨和大脑中的运动之间的关系。从颅骨到大脑的运动传递的体内估计可能阐明了颅脑外伤的机制。由于直接感测颅骨运动存在挑战,因此了解头部的软组织(即头皮)的运动如何近似颅骨运动或预测脑组织变形是很有用的。在这项研究中,使用磁共振弹性成像(MRE)测量头皮和大脑的运动,并由于刚体位移和动态变形将其分为多个部分。使用低运动编码梯度强度来计算头皮中的位移估计,以减少“相位包裹”(由MRE相衬的2π周期引起的位移估计中的歧义)。将MRE估计的头皮和大脑运动与通过三个三轴加速度计估计的头骨运动进行比较。对六个人类受试者的头皮,颅骨和大脑中谐波运动的相对振幅和相位进行比较,表明应谨慎使用基于头皮的传感器的数据估算颅骨运动学,但头皮,颅骨之间存在相当一致的关系和大脑运动。此外,测得的头皮,颅骨和大脑的幅度和相位关系可用于评估和改善头部生物力学的数学模型。

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