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13C-NMR sonification of human insulin: a method for conversion of amino-acid sequences to music notes

机译:13C-NMR人胰岛素的声学:一种将氨基酸序列转化为音乐笔记的方法

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The concept ol molecular sonification comprises total steps of methods that convert the physical data derived from chemical systems into acousmalic music. NMR data of the 13C are especially well suited data sources for Insulin sonification. Even though their resonant frequencies are typically in the MHz region, the resonant frequencies span around kHz. The human insulin is consisting of 51 amino acids which can be divided into 7 series of amino acids for seven octaves of notes. During NMR calculation with ab-initio methods, these signals arc routinely mixed down into the audible frequencies ranges, rendering the need for any additional frequencies transpositions unnecessary. By this work, insulin protein sequences into musical notes to reveal auditory algorithms have been converted. Calculation and optimization of 20 amino acids have been done and the total frequencies of each amino acid have been converted to 20 music notes and distinguishing those using variations of chemical shifts including pitch, time duration length of notes and even rhythm have been accomplished.
机译:概念OL分子声学包括将从化学系统的物理数据转化为acousmalic音乐的方法的总步骤。 13C的NMR数据尤其适用于胰岛素SONEFICATION。即使它们的谐振频率通常在MHz区域中,谐振频率也跨越KHz。人胰岛素由51个氨基酸组成,其可分为7系列氨基酸,用于七个八位八个八个张音符。在使用AB-Initio方法的NMR计算过程中,这些信号常规地将其混合到可听频率范围内,渲染不需要任何附加频率的频率转换。通过这项工作,胰岛素蛋白序列在音乐票据中揭示了听觉算法已经被转换。已经完成了20个氨基酸的计算和优化,并且已经将每个氨基酸的总频率转化为20音乐票据,并将使用化学变化的变化区分,包括间距,持续时间长度的音符,甚至节律已经完成。

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