神经包容性工作场所和亲生物设计:促进智慧城市职业健康和可持续性的策略

James Hutson, Piper Hutson
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引用次数: 0

摘要

本研究旨在调查亲生物设计对职业健康和生产力的影响,特别侧重于解决大流行后重返工作岗位期间不同人群(包括神经多样性人群)的需求。据估计,全球15 - 20%的人口被认为具有神经多样性,因此了解和适应他们的特定需求至关重要,例如患有注意力缺陷多动障碍、自闭症谱系障碍和学习障碍的人。这些个体面临着越来越大的职业压力,需要制定有针对性的策略。对可持续性和员工福利的重新关注导致了工作场所亲生物设计的复苏。基于人类拥有与自然联系的固有倾向的概念,亲生物设计将自然元素和艺术融入建筑环境。研究发现,这种整合可以减少杏仁核的活动,促进压力恢复,延长注意力,提高员工的工作效率。为了有效地适应工作环境中神经多样性的个体,亲生物设计应该辅以人工智能支持的扩展现实(XR)技术。特别是虚拟现实,已被证明可以促进个人在新工作空间中的舒适度,通过生物反馈帮助自我评估,并使环境调整自我调节成为可能。此外,亲生物设计有可能通过将自然元素融入建筑环境来促进智能城市的可持续性。这种整合有助于减少建筑物的碳足迹,提高能源效率。通过创建优先考虑亲生物设计原则的工作场所,组织可以为更包容、可持续和高效的工作环境做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neuroinclusive workplaces and biophilic design: Strategies for promoting occupational health and sustainability in smart cities
This study aims to investigate the impact of biophilic design on occupational health and productivity, with a particular focus on addressing the needs of diverse populations, including the neurodiverse, during the post-pandemic return to work. With an estimated 15 – 20% of the global population considered neurodiverse, it is crucial to understand and accommodate their specific needs, such as those with attention-deficit hyperactivity disorder, autism spectrum condition, and learning disabilities. These individuals face increased occupational stress, necessitating the development of targeted strategies. The renewed interest in sustainability and employee well-being has led to a resurgence of biophilic design in the workplace. Grounded in the concept that humans possess an inherent inclination to affiliate with nature, the biophilic design integrates natural elements and art into the built environment. This integration has been found to reduce activity in the amygdala, promoting stress recovery, prolonged attention, and increased productivity among employees. To effectively acclimate neurodiverse individuals in the work environment, biophilic design should be complemented using extended reality (XR) technology supported by artificial intelligence. Virtual reality, in particular, has been shown to facilitate individuals’ comfort in new workspaces, aid in self-assessments through biofeedback, and enable the adjustment of surroundings for self-regulation. Furthermore, biophilic design has the potential to promote sustainability in smart cities by integrating natural elements into the built environment. This integration helps reduce the carbon footprint of buildings and enhances energy efficiency. By creating workplaces that prioritize biophilic design principles, organizations can contribute to a more inclusive, sustainable, and productive work environment.
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