Biomechanics: Principles, Trends and Applications by Jerrod H. Levy

By Jerrod H. Levy

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EMG of rectus abdominis during voluntary breathing – the process establishing enveloped and normalized EMG for quasi-quantification. Figure 12. Rectus abdominis activity at different pitches. Figure 12 is a composite of three different trials measuring the rectus abdominis activity of a professional opera singer (mezzo-soprano). The rectus abdominis MVC was determined in a separate trial under high loading conditions. The protocol involved two sets of singing four short onsets (intonation of a pitch) followed by a sustained tone produced on the same pitch.

Cumulative damage scenarios from cycles of micro-damage and repair (Visentin et al, 2004). In quantitative time-dependent terms, the PBR is directly related to activity Intensity (I), which is contingent on the patterns of the load for the activity in question. Therefore: PBR  (I)ndt. For RSIs, the intensity of activity is very low, work patterns change over time, and duration is the prime factor. Such conditions make RSI research extremely complex since establishing injury risk requires that: 1) intensity (I) be measured for the activity; 2) duration of activity be integrated into the risk calculation, resulting in a context-specific PBR; and 3) that rates of repair during periods of rest be considered.

Equally important, it was shown to have potential in the areas of changing vocational attitudes and pedagogy. One of these studies identified three factors influencing the relationship between muscle loading and RSIs: load quantity (intensity), quality (static versus dynamic), and duration (time) (Kuipers, 1998; Taylor, 1996; Visentin and Shan, 2004). Regarding load quantity, the study showed muscle activity during violin performance to be within the ―safe‖ range as typically identified by the sports biomechanics literature (Peterson and Renström, 1987).

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Biomechanics: Principles, Trends and Applications by Jerrod H. Levy
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