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正常听力国人听觉皮层频率分布的功能MRI研究
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作者 高薇薇 杨明 +2 位作者 夏贵华 刘斌 黄志纯 《听力学及言语疾病杂志》 CAS CSCD 北大核心 2009年第5期444-447,共4页
目的利用血氧水平依赖功能磁共振成像(BOLD-f MRI)研究正常听力国人的听皮质频率响应分布的特点。方法对25例健康受试者采用事件相关Sparse设计、正弦调幅音任务下的回波平面成像技术(echoplanar imaging,EPI)进行f MRI数据采集,实验刺... 目的利用血氧水平依赖功能磁共振成像(BOLD-f MRI)研究正常听力国人的听皮质频率响应分布的特点。方法对25例健康受试者采用事件相关Sparse设计、正弦调幅音任务下的回波平面成像技术(echoplanar imaging,EPI)进行f MRI数据采集,实验刺激声分别为0.5、2、4kHz纯音经8Hz正弦调幅,双耳同时间断给声,给声持续时间9s,扫描3s,随机插入静音序列。利用SPM2软件进行数据分析,观察左右大脑听觉皮层频率响应分布特点。结果25例受试者中9例由于EPI采集时头动超过最大限度而删除数据,余16例受试者均表现为初级听觉皮层激活,其中2例左侧、3例右侧、4例双侧初级听觉皮层激活的部位表现出高频偏内、低频偏外的频率响应分布特点,另7例双侧初级听觉皮层无明显的排列规律。结论正常听力国人初级听觉皮层的频率响应分布表现出高频偏内、低频偏外的特点。 展开更多
关键词 频率响应分布 功能磁共振 听觉皮层 音频定位结构
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The Representation of a Broadband Vector Field
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作者 任群 Jean Pierre Hermand 朴胜春 《Journal of Marine Science and Application》 2011年第4期495-501,共7页
Compared to a scalar pressure sensor, a vector sensor can provide a higher signal-to-noise ratio (SNR) signal and more detailed intbrmation on the sound field. Study on vector sensors and their applications have bec... Compared to a scalar pressure sensor, a vector sensor can provide a higher signal-to-noise ratio (SNR) signal and more detailed intbrmation on the sound field. Study on vector sensors and their applications have become a hot topic. Research on the representation of a vector field is highly relevant for extending the scope of vector sensor technology. This paper discusses the range-frequency distribution of the vector field due to a broadband acoustic source moving in a shallow-water waveguide as the self noise of a surface ship, and the vector extension of the waveguide impulse response measured over a limited frequency range using an active source of known waveform. From theory analysis and numerical simulation, the range-frequency representation of a vector field exhibits an interference structure qualitatively similar to that of the corresponding pressure field but, being quantitatively different, provides additional information on the waveguide, especially through the vertical component. For the range-frequency representation, physical quantities that can better exhibit the interference characteristics of the wavegaide are the products of pressure and particle velocity and of the pressure and pressure gradient. An image processing method to effectively detect and isolate the individual striations from an interference structure was reviewed briefly. The representation of the vector impulse response was discussed according to two different measurement systems, also known as particle velocity and pressure gradient. The vector impulse response representation can not only provide additional information from pressure only but even more than that of the range-frequency representation. 展开更多
关键词 acoustic waveguide vector field range-frequency interference structure striation processing impulse response normal mode
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