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我是谁以及我的感受是否决定了我看到的(或说的)内容?一项元分析系统综述,探索真实和感知身体状态对外部环境空间感知的影响。

Does who I am and what I feel determine what I see (or say)? A meta-analytic systematic review exploring the influence of real and perceived bodily state on spatial perception of the external environment.

机构信息

IIMPACT in Health, Allied Health and Human Performance, University of South Australia, Adelaide, South Australia, Australia.

出版信息

PeerJ. 2022 May 23;10:e13383. doi: 10.7717/peerj.13383. eCollection 2022.

Abstract

BACKGROUND

Bodily state is theorised to play a role in perceptual scaling of the environment, whereby low bodily capacity shifts visuospatial perception, with distances appearing farther and hills steeper, and the opposite seen for high bodily capacity. This may play a protective role, where perceptual scaling discourages engaging with the environment when capacity is low.

METHODOLOGY

Our protocol was pre-registered Open Science Framework (https://osf.io/6zya5/) with all amendments to the protocol tracked. We performed a systematic review and meta-analysis examining the role of bodily state/capacity on spatial perception measures of the environment. Databases (Medline, PsychINFO, Scopus, Embase, and Emcare) and grey literature were searched systematically, inclusive to 26/8/21. All studies were assessed using a customised Risk of Bias form. Standard mean differences and 95% CIs were calculated meta-analysis using a random-effects model.

RESULTS

A total of 8,034 studies were identified from the systematic search. Of these, 68 experiments (3,195 participants) met eligibility and were included in the review. These were grouped into the following categories: fatigue; pain; age; embodiment; body size/body paty size; glucose levels; fitness; and interoception, and interoceptive accuracy. We found low level evidence (limited studies, high risk of bias) for the effect of bodily state on spatial perception. There was consistent evidence that both glucose manipulations and age influence spatial perception of distances and hills in a hypothesised direction (lower capacity associated with increased distance and hill steepness). Mixed evidence exists for the influence of external loads, embodiment, body/body-part size manipulations, pain, and interoceptive accuracy. Evidence for fitness and/or fatigue influencing spatial perception was conflicting; notably, methodological flaws with fitness and fatigue paradigms and heterogenous spatial perception measures may underlie null/conflicting results.

CONCLUSION

We found limited evidence for bodily state influencing spatial perception of the environment. That all studies had high risk of bias makes conclusions about reported effects reflecting actual perceptual shifts ( merely reflecting experimental demands or error due to inadequate study design) pre-emptive. Rigorous evaluation is needed to determine whether reported effects reflect more than bias (., experimental demands, inadequate blinding). Future work using reliable measures of spatial perception, comprehensive evaluation of relevant confounders, and methodologically robust (and experimentally confirmed) bodily state experimental paradigms is warranted.

摘要

背景

身体状态被认为在环境的感知尺度中起着作用,身体状态低会改变视空间感知,使距离看起来更远,坡度更陡,而身体状态高则相反。这可能起到保护作用,当身体状态低时,感知尺度会阻止人们与环境互动。

方法

我们的方案已在开放科学框架(https://osf.io/6zya5/)上预先注册,所有方案的修订都进行了跟踪。我们进行了一项系统综述和荟萃分析,研究了身体状态/能力对环境的空间感知测量的作用。数据库(Medline、PsychINFO、Scopus、Embase 和 Emcare)和灰色文献进行了系统搜索,截止日期为 2021 年 8 月 26 日。所有研究都使用定制的风险偏见表进行评估。使用随机效应模型计算标准均数差异和 95%置信区间进行荟萃分析。

结果

从系统搜索中总共确定了 8034 项研究。其中,68 项实验(3195 名参与者)符合入选标准并纳入综述。这些实验分为以下几类:疲劳;疼痛;年龄;体现;身体大小/身体部位大小;血糖水平;健身;和内脏感觉,以及内脏感觉准确性。我们发现低水平证据(研究有限,高风险偏见)表明身体状态对空间感知的影响。有一致的证据表明,葡萄糖处理和年龄都会以假设的方向影响距离和坡度的空间感知(低能力与增加距离和坡度陡峭度相关)。外部负荷、体现、身体/身体部位大小处理、疼痛和内脏感觉准确性的影响存在混合证据。关于健身和/或疲劳影响空间感知的证据相互矛盾;值得注意的是,健身和疲劳范式和异质空间感知测量的方法学缺陷可能导致了无效/矛盾的结果。

结论

我们发现有限的证据表明身体状态会影响环境的空间感知。所有研究都存在高风险偏见,这使得关于报告的效应反映实际感知变化的结论变得不可预测(仅仅反映了实验需求或由于设计不当而导致的错误)。需要进行严格的评估,以确定报告的效应是否不仅仅是偏见(例如,实验需求、不充分的盲法)的反映。使用可靠的空间感知测量方法、全面评估相关混杂因素以及方法学上稳健(且经实验证实)的身体状态实验范式的未来工作是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/390d/9135041/96a7524c4c29/peerj-10-13383-g001.jpg

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