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A multiscale LDDMM template algorithm for studying ear shape variations

机译:研究耳朵形状变化的多尺度LDDMM模板算法

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This paper describes a method to establish an average human ear shape across a population of ears by sequentially applying the Large Deformation Diffeomorphic Metric Mapping (LDDMM) framework at successively smaller physical scales. Determining such a population average ear shape, also referred to here as a template ear, is an essential step in studying the statistics of ear shapes because it allows the variations in ears to be studied relative to a common template shape. Our interest in the statistics of ear shapes stems from our desire to understand the relationship between ear morphology and the head-related impulse response (HRIR) filters that are essential for rendering 3D audio over headphones. The shape of the ear varies among listeners and is as individualized as a fingerprint. Because the acoustic filtering properties of the ears depend on their shape, the HRIR filters required for rendering 3D audio are also individualized. The contribution of this work is the demonstration of a sequential multiscale approach to creating a population template ear shape using the LDDMM framework. In particular we apply our sequential multiscale algorithm to a small population of synthetic ears in order to analyse its performance given a known reference ear shape.
机译:本文介绍了一种方法,该方法可通过在较小的物理尺度上依次应用大变形微形态度量映射(LDDMM)框架来在整个耳朵群体中建立平均人耳形状。确定这样的总体平均耳朵形状(在此也称为模板耳朵)是研究耳朵形状的统计信息的必不可少的步骤,因为它允许研究相对于常见模板形状的耳朵变化。我们对耳朵形状统计的兴趣源于我们希望了解耳朵形态与与头部相关的冲激响应(HRIR)滤波器之间的关系的要求,这些滤波器对于通过耳机渲染3D音频至关重要。耳朵的形状因听众而异,并且与指纹一样个性化。因为耳朵的声音过滤属性取决于它们的形状,所以渲染3D音频所需的HRIR过滤器也被个性化。这项工作的贡献是演示了使用LDDMM框架创建人口模板耳朵形状的顺序多尺度方法。特别是,我们将顺序多尺度算法应用于少量合成耳朵,以在已知参考耳朵形状的情况下分析其性能。

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