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首页> 外文期刊>Aviation, space, and environmental medicine. >Garment fit and protection from sustained +Gz acceleration with 'full-coverage' anti-G trousers.
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Garment fit and protection from sustained +Gz acceleration with 'full-coverage' anti-G trousers.

机译:服装的贴身和防护,采用“全遮盖”式抗G长裤来防止+ Gz持续加速。

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摘要

Garment fit may influence the effectiveness with which Full-Coverage Anti-G Trousers (FCAGT) transmit pressure to the skin surface, and hence provide protection from sustained +Gz acceleration. A search of the available literature, however, did not reveal any prior work quantifying this effect.Three related studies were performed. In Study I, using a mannequin, garment-to-surface pressure transmission ratios were measured at various locations under normally fitted (NF) and loosely fitted (LF) FCAGT. In Study II, garment pressure-volume ratios and lung volumes were measured at +1 Gz in six men wearing FCAGT in three conditions: NF, LF, or NF with inflatable socks at 13 kPa differential pressure (NF+SOCKS). In Study III, relaxed +Gz tolerance (RGT) and ratings of perceived exertion (RPE) at +7, +8, and +9 Gz were measured in eight men wearing FCAGT in four experimental conditions: NF; LF; abdomen LF, legs NF; or abdomen NF, legs LF.LF did not affect pressure transmission over the lower limbs or lower abdomen, but transmission over the upper abdomen was significantly compromised. Lung volumes were reduced with FCAGT inflation, but LF was associated with greater expiratory reserve volumes and increased FCAGT volume. Under +Gz acceleration, LF over the abdomen (with or without lower limb LF) decreased RGT and increased RPE, but not with lower limb LF when abdominal fit was normal.Care should be taken to achieve and maintain a snug FCAGT fit, especially of the abdominal portion of the FCAGT, to ensure optimal anti-G protection during sustained acceleration.
机译:服装的合身性可能会影响全罩式防G长裤(FCAGT)将压力传递到皮肤表面的效果,因此可以防止持续的+ Gz加速度。然而,对现有文献的搜索没有发现量化这种作用的任何先前工作。进行了三项相关研究。在研究I中,使用人体模型,在正常安装(NF)和宽松安装(LF)FCAGT下的各个位置测量了服装与表面的压力传递比。在研究II中,在六种穿着FCAGT的男性中,在三种条件下(NF,LF或NF和13kPa压差的充气袜子(NF + SOCKS)),在+1 Gz下测量了服装的压力体积比和肺体积。在研究III中,在四个实验条件下,对八名穿着FCAGT的男性进行了测量,分别测量了他们在+ 7,+ 8和+9 Gz时的放松+ Gz耐受性(RGT)和感知劳累(RPE)等级。如果;腹部LF,腿NF;或腹部NF,腿LF.LF不会影响下肢或小腹的压力传递,但会严重损害上腹部的压力传递。 FCAGT充气使肺活量减少,但LF与呼气储备量增加和FCAGT量增加有关。在+ Gz加速度下,腹部LF(有或没有下肢LF)使RGT降低且RPE升高,但在腹部合适的情况下下肢LF却没有,因此要特别注意保持和保持FCAGT的贴身性FCAGT的腹部,以确保在持续加速过程中获得最佳的抗G保护。

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