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男性和女性青年成年人身体皮脂厚度测量中皮肤褶皱压缩性和数字卡尺的时间响应。

Skinfolds compressibility and digital caliper's time response in skinfold measurement in male and female young adults.

机构信息

Faculty of Sport Sciences, University of Murcia, Murcia, Spain.

Instituto Politécnico de Lisboa, H&TRC-Health & Technology Research Center, ESTeSL-Escola Superior de Tecnologia da Saúde de Lisboa, Lisboa, Portugal.

出版信息

J Int Soc Sports Nutr. 2023 Dec;20(1):2265888. doi: 10.1080/15502783.2023.2265888. Epub 2023 Oct 4.

DOI:10.1080/15502783.2023.2265888
PMID:37794782
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10557569/
Abstract

BACKGROUND

The skinfold caliper reading of the skinfold thickness depends on its dynamic compressibility. This has led to the fact that, while it is indicated that skinfold readings should be taken when the reading is stable, there is no consensus on at what second the reading should be taken after the application of the skinfold caliper. The new Lipowise PRO digital skinfold caliper was used to analyze the evolution of skinfold readings under skinfold caliper pressure. The aim of the present investigation were: a) to analyze the evolution of the reading time of individual skinfolds when subjected to skinfold caliper pressure and when the skinfold reading reaches stability; b) to describe the physical behavior of skinfold tissues' time response to skinfold caliper pressure, and to explore differences between sites and subjects' skinfolds compressibility; and c) to analyze the sex differences in both the reading and the evolution of the skinfold over time.

METHODS

A descriptive cross-sectional design was followed with a convenience sample of 165 healthy young adults (79 males and 86 females), with eight skinfolds measured using the Lipowise PRO skinfold caliper. The Lipowise PRO skinfold caliper uses a programmable reading time allowing for the measurement of the skinfold's thickness at a rate of 100 times per second, and monitoring skinfold behavior over the 3-second measurement period, thereby enabling the assessment of the tissue response to the constant force exerted by the skinfold caliper jaws.

RESULTS

All skinfolds showed statistical differences in terms of compressibility characteristics ( < 0.001). Significant differences were found between measurement time points for individual skinfolds and sum of skinfolds ( < 0.001-0.025). Stabilization being found depending on the skinfold measured from 1.5 seconds for biceps, subscapular, iliac crest, supraspinale, abdominal, and thigh skinfolds; 2.0 seconds for ∑6 and ∑8 skinfolds; and 2.5 seconds for triceps and calf skinfolds. It was observed an effect of sex on this issue ( < 0.001-0.030). More specifically, in the case of males, the supraspinale and abdominal skinfolds stabilized after 1.5 seconds; the calf skinfold and ∑6 and ∑8 skinfolds stabilized after 2 seconds; while the rest of the skinfolds did not stabilize until 3 seconds. In the case of females, no stabilization of the triceps skinfold was found, while the rest of the individual skinfolds and the ∑6 and ∑8 skinfolds stabilized from 1.5 seconds. A regression analysis indicated that skinfold thickness could be predicted based on measurement time in 50-77% of the cases ( = 0.001).

CONCLUSION

A skinfold caliper application, using the digital caliper Lipowise PRO, of three seconds may be sufficient for achieving stability in the measurement and for obtaining the minimum value for most individual and sum of skinfolds. However, there are certain skinfolds that may require more time when performed on certain individuals, which vary according to sex.

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfef/10557569/bf7f32b1e699/RSSN_A_2265888_F0003_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfef/10557569/4703d8806083/RSSN_A_2265888_F0001_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfef/10557569/79b3afc67154/RSSN_A_2265888_F0002_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfef/10557569/bf7f32b1e699/RSSN_A_2265888_F0003_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfef/10557569/4703d8806083/RSSN_A_2265888_F0001_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfef/10557569/79b3afc67154/RSSN_A_2265888_F0002_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfef/10557569/bf7f32b1e699/RSSN_A_2265888_F0003_OC.jpg
摘要

背景

皮褶厚度的皮褶厚度取决于其动态可压缩性。这导致了这样一个事实,即虽然有人指出,在皮褶厚度读数稳定时应该进行皮褶读数,但对于在应用皮褶厚度计后应该在哪个第二读取读数,还没有达成共识。新的 Lipowise PRO 数字皮褶厚度计用于分析皮褶厚度计压力下皮褶读数的演变。本研究的目的是:a)分析个体皮褶在受到皮褶厚度计压力和皮褶读数达到稳定时的读数时间的演变;b)描述皮褶组织对皮褶厚度计压力的时间响应的物理行为,并探讨不同部位和个体皮褶的可压缩性差异;c)分析性别差异在皮褶随时间的读数和演变中的作用。

方法

采用描述性横断面设计,方便选择了 165 名健康年轻成年人(男性 79 名,女性 86 名)作为研究对象,使用 Lipowise PRO 皮褶厚度计测量 8 个皮褶。Lipowise PRO 皮褶厚度计使用可编程的读数时间,允许以每秒 100 次的速度测量皮褶的厚度,并在 3 秒的测量期间监测皮褶的行为,从而能够评估组织对皮褶厚度计夹口施加的恒定力的反应。

结果

所有皮褶在可压缩性特征方面均显示出统计学差异(<0.001)。个体皮褶和皮褶总和的测量时间点之间存在显著差异(<0.001-0.025)。从肱二头肌、肩胛下、髂嵴、肩胛上、腹部和大腿皮褶的 1.5 秒;∑6 和∑8 皮褶的 2.0 秒;和 2.5 秒三角肌和小腿皮褶发现稳定。观察到性别对这一问题的影响(<0.001-0.030)。更具体地说,在男性中,肩胛上和腹部皮褶在 1.5 秒后稳定;小腿皮褶和∑6 和∑8 皮褶在 2 秒后稳定;而其余皮褶直到 3 秒才稳定。在女性中,未发现三头肌皮褶稳定,而其余的个体皮褶和∑6 和∑8 皮褶在 1.5 秒后稳定。回归分析表明,在 50-77%的情况下,可以根据测量时间预测皮褶厚度(=0.001)。

结论

使用数字卡尺 Lipowise PRO 进行 3 秒的皮褶卡尺应用,可能足以在测量中达到稳定,并获得大多数个体和皮褶总和的最小值。然而,对于某些个体,某些皮褶可能需要更多的时间,这取决于性别。

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