农业图书情报学报

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突破性成果长周期影响力的演化动力学建模与测度框架构建——基于MRI诺奖文献的实证研究

吴晶   

  1. 天津师范大学 图书馆,天津 300387
  • 收稿日期:2026-06-16 出版日期:2026-09-04
  • 作者简介:

    吴晶,女,馆员,研究方向为文献计量、情报分析、学科服务

  • 基金资助:
    天津市教委科研计划项目成果“人工智能驱动下天津市高校学术成果评价模式探究”(2023SK046)

Construction of Evolutionary Dynamics Modeling and Measurement Framework for Long-term Impact of Breakthrough Achievements: Empirical Study Based on MRI Nobel Prize Literature

WU Jing   

  1. Tianjin Normal University Library, Tianjin 300387
  • Received:2026-06-16 Online:2026-09-04

摘要:

[目的/意义] 突破性科学成果的影响力衰减显著偏离普赖斯指数的“快速衰变”规律,其生命周期远超常规文献。本研究针对国家“破五唯”科研评价要求,聚焦突破性成果跨越常规老化周期(10~15年)的长时段(30年以上)影响力演化,旨在构建引文轨迹的动力学模型,揭示知识扩散与维持的深层机制。研究采用深度典型案例设计,以“理论生成”与“框架供给”为目标,不追求大样本统计概化。 [方法/过程] 以2003年诺贝尔生理学或医学奖得主Paul C.Lauterbur与Peter Mansfield的磁共振成像(MRI)基础文献群为典型案例,基于Web of Science核心集的引文数据,通过SPSS、CiteSpace、Vosviewer、OpenRefine、Mythtype、Python等工具,综合运用双峰高斯叠加指数衰减模型、学科半衰期分析、边界跨越者指数(BSI)与共词分析方法。 [结果/结论] 1)突破性成果的引文轨迹呈现“延迟唤醒-双峰震荡-长尾稳态”的非对称演化特征,长尾期衰减阻尼系数λ趋近于0;2)知识属性的工具化跃迁决定长周期稳定性:方法学工具类文献的半衰期最长,是实现长尾效应的关键机制;3)跨界溢出依赖“边界跨越者”驱动,高BSI值对应更短的双峰间隔与更陡峭的第二峰,加速理论向技术的转化及在心理学等远距离学科的前沿共振。突破性成果的长周期影响力本质是“知识工具化”与“跨域溢出”的协同过程。本研究构建了“时间轨迹-知识形态-空间溢出”三维耦合的长周期影响力识别框架(TLI),建议科研评价从关注短期被引峰值转向识别文献向方法学工具转化的轨迹特征及跨界潜力。

关键词: 突破性成果, 长周期影响力, 引文轨迹, 知识工具化, 跨学科溢出, 边界跨越者

Abstract:

[Purpose/Significance] The impact attenuation of breakthrough scientific achievements significantly deviates from the "rapid decay" law described by the Price index, and their lifecycle far exceeds conventional literature. Understanding their long-term evolutionary characteristics is of great value for improving the scientific research evaluation system. This article focuses on the long-term (over 30 years) impact evolution of breakthrough achievements that cross the conventional aging cycle of 10 to 15 years. These achievements are in response to the national requirements for evaluating the innovation of scientific research talent., The goal is to construct an evolutionary, dynamic model of their citation trajectories and reveal the mechanisms underlying knowledge diffusion and maintenance. The study uses a typical case design with the goal of "theoretical generation" and providing an "analytical framework". It does not pursue statistical generalization based on large samples, but provides a transferable analytical paradigm and measurement tool for understanding the long-term impact of breakthrough achievements through in-depth analysis of a single extreme case. [Method/Process] Taking the basic literature group of magnetic resonance imaging (MRI) by Paul C. Lauterbur and Peter Mansfield, Nobel laureates in Physiology or Medicine in 2003, as a typical case, based on citation data from the Web of Science core set, the retrieval time span was set from 1969 to 2024 to fully cover the entire lifecycle from theoretical proposal to long tail evolution. A total of 271 source literature and all cited publications were obtained, and a source citation matrix was constructed as the data base. By comprehensively utilizing tools such as SPSS, CiteSpace, Vosviewer, OpenRefine, Mythtype, and Python, a bimodal Gaussian superposition exponential decay model was used for nonlinear curve fitting and parameter estimation. The aging differences of different knowledge forms were measured through subject citation half-life analysis, and the boundary crosser index (BSI) was introduced to quantify the strength of cross-border cooperation. The co-occurrence analysis method was used to track the temporal evolution path of knowledge attributes. [Results/Conclusions] 1)The citation trajectory of breakthrough achievements presents an asymmetric evolution feature of "delayed awakening of bimodal oscillation long tail steady state", with the damping coefficient λ of the long tail period approaching 0; 2) The instrumental transition of knowledge attributes determines long-term stability: methodological tool literature has the longest half-life and is a key mechanism for achieving the long tail effect; 3) Cross border spillover relies on the efforts of "boundary crossers", with high BSI values corresponding to shorter bimodal intervals and steeper second peaks, accelerating the transformation of theory into technology. This concept resonates at the forefront of distant disciplines such as psychology. The long-term impact of breakthrough achievements is essentially a collaborative process of "knowledge instrumentalization" and "cross domain spillover". This article constructs a long-term impact identification framework (TLI) with a three-dimensional coupling of "time trajectory knowledge form spatial spillover". It suggests that, rather than focusing on short-term citation peaks, scientific research evaluation should identify the trajectory characteristics and cross-border potential of literature using methodological tools.

Key words: breakthrough achievements, long-term influence, citation trajectory, knowledge instrumentalization, interdisciplinary spillover, boundary crosser

中图分类号:  G255.51

引用本文

吴晶. 突破性成果长周期影响力的演化动力学建模与测度框架构建——基于MRI诺奖文献的实证研究[J/OL]. 农业图书情报学报. https://doi.org/10.13998/j.cnki.issn1002-1248.26-0415.

WU Jing. Construction of Evolutionary Dynamics Modeling and Measurement Framework for Long-term Impact of Breakthrough Achievements: Empirical Study Based on MRI Nobel Prize Literature[J/OL]. Journal of library and information science in agriculture. https://doi.org/10.13998/j.cnki.issn1002-1248.26-0415.