Computational Auditory Perception Group, Max Planck Institute for Empirical Aesthetics, Frankfurt am Main, Germany.
Centre for Music and Science, Faculty of Music, University of Cambridge, Cambridge, UK.
Behav Res Methods. 2022 Oct;54(5):2271-2285. doi: 10.3758/s13428-021-01722-2. Epub 2022 Feb 11.
Sensorimotor synchronization (SMS), the rhythmic coordination of perception and action, is a fundamental human skill that supports many behaviors, including music and dance (Repp, 2005; Repp & Su, 2013). Traditionally, SMS experiments have been performed in the laboratory using finger tapping paradigms, and have required equipment with high temporal fidelity to capture the asynchronies between the time of the tap and the corresponding cue event. Thus, SMS is particularly challenging to study with online research, where variability in participants' hardware and software can introduce uncontrolled latency and jitter into recordings. Here we present REPP (Rhythm ExPeriment Platform), a novel technology for measuring SMS in online experiments that can work efficiently using the built-in microphone and speakers of standard laptop computers. In a series of calibration and behavioral experiments, we demonstrate that REPP achieves high temporal accuracy (latency and jitter within 2 ms on average), high test-retest reliability both in the laboratory (r = .87) and online (r = .80), and high concurrent validity (r = .94). We also show that REPP is fully automated and customizable, enabling researchers to monitor experiments in real time and to implement a wide variety of SMS paradigms. We discuss online methods for ensuring high recruiting efficiency and data quality, including pre-screening tests and automatic procedures for quality monitoring. REPP can therefore open new avenues for research on SMS that would be nearly impossible in the laboratory, reducing experimental costs while massively increasing the reach, scalability, and speed of data collection.
运动感觉同步(SMS)是一种感知和动作的节奏协调,是一种基本的人类技能,支持许多行为,包括音乐和舞蹈(Repp,2005;Repp 和 Su,2013)。传统上,SMS 实验是在实验室中使用手指敲击范式进行的,并且需要具有高时间保真度的设备来捕捉敲击时间与相应提示事件之间的异步。因此,SMS 特别难以在线研究中进行研究,因为参与者的硬件和软件的变化会在记录中引入不可控的延迟和抖动。在这里,我们提出了 REPP(节奏实验平台),这是一种用于在线实验中测量 SMS 的新技术,它可以使用标准笔记本电脑的内置麦克风和扬声器高效地工作。在一系列校准和行为实验中,我们证明 REPP 实现了高时间精度(平均延迟和抖动在 2 毫秒内)、在实验室(r =.87)和在线(r =.80)的高测试 - 重测可靠性,以及高同时有效性(r =.94)。我们还表明,REPP 是全自动且可定制的,使研究人员能够实时监控实验并实施各种 SMS 范式。我们讨论了在线方法,以确保高招募效率和数据质量,包括预筛选测试和自动质量监控程序。因此,REPP 可以为 SMS 研究开辟新途径,这些途径在实验室中几乎是不可能的,从而降低实验成本,同时大大增加数据收集的范围、可扩展性和速度。