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通过技术创新预防新冠疫情:确保全球创新能力、吸收能力和适应性医疗能力。

Prevention of COVID-19 pandemic through technological innovation: ensuring global innovative capability, absorptive capacity, and adaptive healthcare competency.

作者信息

Anser M K, Ahmad M, Khan M A, Nassani A A, Askar S E, Zaman K, Abro M M Q, Kabbani A

机构信息

School of Public Administration, Xi'an University of Architecture and Technology, Xi'an, 710000 China.

Department of Business Administration, The Superior University, Lahore, 54000 Pakistan.

出版信息

Int J Environ Sci Technol (Tehran). 2022 Sep 3:1-12. doi: 10.1007/s13762-022-04494-0.

Abstract

The study examines the role of technology transfer in preventing communicable diseases, including COVID-19, in a heterogeneous panel of selected 65 countries. The study employed robust least square regression and innovation accounting matrixes to get robust inferences. The results found that overall technological innovation, including innovative capability, absorptive capacity, and healthcare competency, helps reduce infectious diseases, including the COVID-19 pandemic. Patent applications, scientific and technical journal articles, trade openness, hospital beds, and physicians are the main factors supporting the reduction of infectious diseases, including the COVID-19 pandemic. Due to inadequate research and development, healthcare infrastructure expenditures have caused many communicable diseases. The increasing number of mobile phone subscribers and healthcare expenditures cannot minimize the coronavirus pandemic globally. The impulse response function shows an increasing number of patent applications, mobile penetration, and hospital beds that will likely decrease infectious diseases, including COVID-19. In contrast, insufficient resource spending would likely increase death rates from contagious diseases over a time horizon. It is high time to digitalize healthcare policies to control coronavirus worldwide.

摘要

该研究考察了技术转让在选定的65个异质国家组成的样本中预防包括新冠病毒肺炎在内的传染病方面所起的作用。该研究采用稳健最小二乘回归和创新核算矩阵来得出可靠的推断。结果发现,总体技术创新,包括创新能力、吸收能力和医疗保健能力,有助于减少包括新冠病毒肺炎大流行在内的传染病。专利申请、科技期刊文章、贸易开放度、医院病床数量和医生数量是支持减少包括新冠病毒肺炎大流行在内的传染病的主要因素。由于研发不足,医疗基础设施支出导致了许多传染病的发生。全球手机用户数量的增加和医疗保健支出并不能使新冠病毒大流行得到缓解。脉冲响应函数显示,专利申请数量、移动电话普及率和医院病床数量的增加可能会减少包括新冠病毒肺炎在内的传染病。相比之下,资源支出不足可能会在一段时间内提高传染病的死亡率。现在是将医疗保健政策数字化以在全球范围内控制新冠病毒的时候了。

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