Goebl Werner, Bresin Roberto, Fujinaga Ichiro
Institute of Music Acoustics (Wiener Klangstil), University of Music and Performing Arts Vienna, Anton-von-Webern-Platz 1, 1030 Vienna, Austria.
Sound and Music Computing, School of Computer Science and Communication, KTH Royal Institute of Technology, Lindstedtsvägen 3, 11428 Stockholm, Sweden.
J Acoust Soc Am. 2014 Nov;136(5):2839-50. doi: 10.1121/1.4896461.
Both timbre and dynamics of isolated piano tones are determined exclusively by the speed with which the hammer hits the strings. This physical view has been challenged by pianists who emphasize the importance of the way the keyboard is touched. This article presents empirical evidence from two perception experiments showing that touch-dependent sound components make sounds with identical hammer velocities but produced with different touch forms clearly distinguishable. The first experiment focused on finger-key sounds: musicians could identify pressed and struck touches. When the finger-key sounds were removed from the sounds, the effect vanished, suggesting that these sounds were the primary identification cue. The second experiment looked at key-keyframe sounds that occur when the key reaches key-bottom. Key-bottom impact was identified from key motion measured by a computer-controlled piano. Musicians were able to discriminate between piano tones that contain a key-bottom sound from those that do not. However, this effect might be attributable to sounds associated with the mechanical components of the piano action. In addition to the demonstrated acoustical effects of different touch forms, visual and tactile modalities may play important roles during piano performance that influence the production and perception of musical expression on the piano.
孤立钢琴音调的音色和力度完全由琴槌敲击琴弦的速度决定。这种物理观点受到了一些钢琴家的挑战,他们强调触键方式的重要性。本文展示了来自两个感知实验的实证证据,表明与触键相关的声音成分能使琴槌速度相同但触键形式不同所产生的声音明显可辨。第一个实验聚焦于手指与琴键的声音:音乐家能够辨别按下和敲击的触键方式。当从声音中去除手指与琴键的声音时,这种效果就消失了,这表明这些声音是主要的识别线索。第二个实验研究了琴键到达键底时产生的琴键与键框的声音。通过计算机控制的钢琴测量琴键运动来识别键底的撞击。音乐家能够区分包含键底声音的钢琴音调和不包含的。然而,这种效果可能归因于与钢琴击弦机机械部件相关的声音。除了已证明的不同触键形式的声学效果外,视觉和触觉模态在钢琴演奏过程中可能发挥重要作用,影响钢琴上音乐表现力的产生和感知。