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多螺旋视角下基于共生理论的中国创新生态系统有机性格局评价OA

Evaluation of the Organic Patterns of China's Innovation Ecosys-tem from a Multi-Helix Perspective Based on Symbiosis Theory

中文摘要英文摘要

本文融合共生理论与多螺旋模型,构建了"质量—功能—结构"三维评价框架,基于2013-2023年中国省级面板数据,运用熵权TOPSIS、序参量模型和聚类分析等方法,对区域创新生态系统有机性格局的动态变化进行了实证分析.研究发现:在质量与功能维度上,创新生态系统呈现"东高西低"的梯度分异格局;在结构维度上,普遍存在"协同赤字",并出现"高质量未必高协同"的"逆马太效应".通过综合聚类分析,识别出失谐引领型、追赶平衡型、脆弱均衡型与发展阻滞型等4类区域发展模式,并由此提炼出"规模—效率"与"协同—适配"双路径整合框架,揭示了高水平陷阱的形成机理.本文尝试从多维关联与演化视角,为区域创新生态系统的协同治理和可持续发展提供理论参考与实践启示.

Against the backdrop of the deepening innovation-driven development strategy and intensifying regional innovation competition,how to scientifically identify the organic char-acteristics and evolutionary patterns of regional innovation ecosystems has become a critical is-sue for promoting high-quality regional development.Integrating symbiosis theory with the multi-helix model,this study constructed a three-dimensional evaluation framework for the or-ganic development of innovation ecosystems encompassing quality,function,and structure.Based on five interactive subsystems—industrial operation,research and innovation,policy envi-ronment,innovation support,and social participation—the study systematically assessed innova-tion ecosystems across 30 Chinese provinces from 2013 to 2023.Specifically,the quality dimen-sion corresponded to symbiotic sustainability and was evaluated using the entropy-weighted TOPSIS model from the perspectives of symbiotic units,symbiotic environment,symbiotic ma-trix,symbiotic platforms,and symbiotic networks.The structure dimension corresponded to sym-biotic synergy and employed the order parameter model to measure the internal coordination among four behavioral elements:technological innovation,institutional innovation,policy innova-tion,and managerial innovation.The function dimension corresponded to symbiotic scalability and developed an analytical framework consisting of symbiotic capacity,compatibility,correla-tion,and clustering to characterize the system's capabilities in resource regulation,risk control,information complementarity,and scale agglomeration.The results showed that the overall level of organic development in China's regional innovation ecosystems has steadily improved,while the quality and function dimensions still exhibited a pronounced east-central-west gradient pat-tern.Within the function dimension,symbiotic capacity and clustering showed the most signifi-cant growth,whereas compatibility and correlation exhibited substantial regional heterogeneity.Moreover,the results revealed a widespread synergy deficit across most regions,and some high-quality regions even showed relatively low levels of structural coordination,reflecting a reverse Matthew effect in which high quality does not necessarily lead to high synergy.The study further identified four regional patterns:disharmonious leadership,balanced catching-up,fragile equi-librium,and development stagnation.Based on these findings,the study proposed that the evolu-tion of regional innovation ecosystems was jointly governed by the scale-efficiency path and the synergy-adaptation path.The current development model,which excessively emphasizes scale expansion and factor input,constitutes a major cause of structural imbalance and the high-level trap within innovation ecosystems.From the perspectives of symbiotic evolution and systemic co-ordination,this study extended the analytical framework of innovation ecosystem research and provided theoretical support and policy implications for regional innovation governance,innova-tion network optimization,and the healthy development of innovation ecosystems.

孙一方;陈秋计

西安科技大学测绘科学与技术学院,陕西 西安 710054西安科技大学测绘科学与技术学院,陕西 西安 710054

管理科学

创新生态系统有机性格局共生理论逆马太效应协同赤字区域治理熵权TOPSIS序参量模型

innovation ecosystemorganic patternsymbiosis theoryreverse Matthew effectsynergy deficitregional governancethe entropy-weighted TOPSIS modelthe order parameter model

《创新科技》 2026 (6)

82-92,11

2023年国家自然科学基金青年项目"基于多尺度共生的区域产业生态化格局评价——以中国黄河几字弯地区为例"(42301201)2024年陕西省教育厅重点科学研究计划项目"基于创新生态系统能级的资源型地区产业转型效度评价——以黄河几字弯地区为例"(24JZ042)2025年陕西省哲学社会科学研究专项"陕西省黄河流域煤矿区生态系统服务演变及调控研究"(2025YB0239).

10.19345/j.cxkj.1671-0037.2026.6.7

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