在虚拟自行车环境中,利用光流调制自行车的循环速率

V. Gade, I. Maidan, R. Gallagher, C. Torres, Jessica Deutsch
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引用次数: 1

摘要

利用虚拟环境(VE)操纵光流可以调节步行速度。我们开发了一个虚拟现实增强循环系统,并试图确定操纵光流是否会改变循环速率。我们对三组健康受试者(n = 5∶5∶3)在虚拟公园环境中骑行进行测试,同时我们修改了光流增益(等于且高于舒适骑行速度的增益),采用三种方案:1)自行车不耦合VE和感知增益,2)自行车耦合VE和感知增益,3)自行车耦合VE和恒定增益。我们发现,当自行车与VE耦合且增益不变时,骑行速度增加最大(F=5.207, p=0.028)。循环速率随光流的增加而增加,但不同于光流与行走的反比关系。据我们所知,这是第一个提供光流循环速率响应的初步证据的研究。
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Cycling rate is modulated by optic flow in a virtual bicycle environment
Manipulation of optic flow using virtual environments (VE) is known to modulate walking speed. We developed a virtual reality augmented cycling system and sought to determine if manipulation of optic flow modified cycling rate. We tested three groups of healthy subjects (n = 5∶5∶3) as they cycled in a virtual park environment while we modified the gain for optic flow (gain at equal, and higher than comfortable cycling speed) using three protocols: 1) bike un-coupled with the VE and perceived gain, 2) bike coupled with VE and perceived gain and 3) bike coupled with VE and constant gain. We found that cycling speed increases were greatest when the bike was coupled with the VE and the gain was constant (F=5.207, p=0.028). Cycling rate increased with optic flow, which differs from the inverse relationship of optic flow and walking. To our knowledge this is the first study to provide preliminary evidence on cycling rate responses to optic flow.
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