Moelker Adriaan, Vogel Mika W, Pattynama Peter M T
Erasmus MC, University Medical Center Rotterdam, Department of Radiology, 50 Dr. Molewaterplein, 3015 GE Rotterdam, The Netherlands.
J Magn Reson Imaging. 2003 Feb;17(2):270-5. doi: 10.1002/jmri.10251.
To investigate the efficacy of passive acoustic screening in the magnetic resonance (MR) environment by reducing direct and indirect MR-related acoustic noise, both from the patient's and health worker's perspective.
Direct acoustic noise refers to sound originating from the inner and outer shrouds of the MR imager, and indirect noise to acoustic reflections from the walls of the MR suite. Sound measurements were obtained inside the magnet bore (patient position) and at the entrance of the MR imager (health worker position). Inner and outer shrouds and walls were lined with thick layers of sound insulation to eliminate the direct and indirect acoustic pathways. Sound pressure levels (SPLs) and octave band frequencies were acquired during various MR imaging sequences at 1.5 T.
Inside the magnet bore, direct acoustic noise radiating from the inner shroud was most relevant, with substantial reductions of up to 18.8 dB when using passive screening of the magnetic bore. At the magnet bore entrance, blocking acoustic noise from the outer shroud and reflections showed significant reductions of 4.5 and 2.8 dB, respectively, and 9.4 dB when simultaneously applied. Inner shroud coverage contributed minimally to the overall SPL reduction.
Maximum noise reduction by passive acoustic screening can be achieved by reducing direct sound conduction through the inner and outer shrouds. Additional measures to optimize the acoustic properties of the MR suite have only little effect.
从患者和医护人员的角度,通过减少与磁共振(MR)相关的直接和间接声学噪声,研究被动声学屏蔽在MR环境中的效果。
直接声学噪声是指源自MR成像仪内、外罩的声音,间接噪声是指来自MR检查室墙壁的声学反射。在磁体孔内(患者位置)和MR成像仪入口处(医护人员位置)进行声音测量。内、外罩和墙壁内衬有厚层隔音材料,以消除直接和间接的声学路径。在1.5T的各种MR成像序列中获取声压级(SPL)和倍频程频率。
在磁体孔内,源自内罩的直接声学噪声最为显著,采用磁体孔的被动屏蔽时,可大幅降低高达18.8dB。在磁体孔入口处,阻挡来自外罩的声学噪声和反射分别显著降低了4.5dB和2.8dB,同时应用时降低了9.4dB。内罩覆盖对整体声压级降低的贡献最小。
通过减少通过内、外罩的直接声音传导,可实现被动声学屏蔽的最大降噪效果。优化MR检查室声学特性的额外措施效果甚微。