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参考书目

本书目由九章各自的参考文献汇总去重而成,共 152 条(西文 134 条,中文 18 条)。各章正文中的引用仍以该章文献表为准;此处的汇总仅供通检。

一 · 西文文献

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3. Aschoff, J., & Wever, R. (1962). Spontanperiodik des Menschen bei Ausschluß aller Zeitgeber. Naturwissenschaften, 49, 337–342.

4. Bak, P., & Tang, C. (1989). Earthquakes as a self-organized critical phenomenon. Journal of Geophysical Research, 94(B11), 15635–15637.

5. Bak, P., Tang, C., & Wiesenfeld, K. (1987). Self-organized criticality: An explanation of 1/f noise. Physical Review Letters, 59(4), 381–384.

6. Baldwin, R. L. (1996). On-pathway versus off-pathway folding intermediates. Folding & Design, 1(1), R1–R8.

7. Battin, R. H. (1999). An Introduction to the Mathematics and Methods of Astrodynamics (Rev. ed.). Reston: AIAA.

8. Baudrillard, J. (1981). Simulacres et simulation. Paris: Galilée.

9. Beck, K. (1999). Extreme Programming Explained: Embrace Change. Boston: Addison-Wesley.

10. Bernstein, J. (2020). Polymorphism in Molecular Crystals (2nd ed.). Oxford: Oxford University Press.

11. Billingham, R. E., Brent, L., & Medawar, P. B. (1953). Actively acquired tolerance of foreign cells. Nature, 172(4379), 603–606.

12. BIPM (2019). Mise en pratique for the definition of the kilogram in the SI. Appendix 2 to the SI Brochure.

13. BIPM (2019). The International System of Units (SI), 9th edition. Sèvres: Bureau International des Poids et Mesures.

14. Black, J. W., & Leff, P. (1983). Operational models of pharmacological agonism. Proceedings of the Royal Society of London B, 220(1219), 141–162.

15. Boehm, B. W. (1981). Software Engineering Economics. Englewood Cliffs: Prentice Hall.

16. Boehm, B., & Basili, V. R. (2001). Software defect reduction top 10 list. IEEE Computer, 34(1), 135–137.

17. Bossavit, L. (2015). The Leprechauns of Software Engineering. Leanpub.

18. Burnet, F. M. (1957). A modification of Jerne's theory of antibody production using the concept of clonal selection. Australian Journal of Science, 20, 67–69.

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20. Davis, R. S., Barat, P., & Stock, M. (2016). A brief history of the unit of mass: continuity of successive definitions of the kilogram. Metrologia, 53(5), A12–A18.

21. De Léan, A., Stadel, J. M., & Lefkowitz, R. J. (1980). A ternary complex model explains the agonist-specific binding properties of the adenylate cyclase-coupled β-adrenergic receptor. Journal of Biological Chemistry, 255(15), 7108–7117.

22. Derbinski, J., Schulte, A., Kyewski, B., & Klein, L. (2001). Promiscuous gene expression in medullary thymic epithelial cells mirrors the peripheral self. Nature Immunology, 2(11), 1032–1039.

23. Dixit, A. K., & Pindyck, R. S. (1994). Investment under Uncertainty. Princeton: Princeton University Press.

24. Doolittle, W. F. (1999). Phylogenetic classification and the universal tree. Science, 284(5423), 2124–2129.

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26. Dunbar, D. N. F., Pixley, R. E., Wenzel, W. A., & Whaling, W. (1953). The 7.68 MeV state in C¹². Physical Review, 92(3), 649–650.

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28. Eggeling, C., et al. (2009). Direct observation of the nanoscale dynamics of membrane lipids in a living cell. Nature, 457(7233), 1159–1162.

29. Epelbaum, E., Krebs, H., Lähde, T. A., Lee, D., & Meißner, U.-G. (2013). Dependence of the triple-alpha process on the fundamental constants of nature. European Physical Journal A, 49, 82.

30. Evans, M. G., & Polanyi, M. (1935). Some applications of the transition state method. Transactions of the Faraday Society, 31, 875–894.

31. Eyring, H. (1935). The activated complex in chemical reactions. The Journal of Chemical Physics, 3(2), 107–115.

32. Feyerabend, P. K. (1975). Against Method. London: New Left Books.

33. Fisher, M. E., & Barber, M. N. (1972). Scaling theory for finite-size effects in the critical region. Physical Review Letters, 28(23), 1516–1519.

34. Frankle, J., & Carbin, M. (2019). The lottery ticket hypothesis: Finding sparse, trainable neural networks. ICLR 2019.

35. Friedman, M. (2001). Dynamics of Reason. Stanford: CSLI Publications.

36. Frisch, U. (1995). Turbulence: The Legacy of A. N. Kolmogorov. Cambridge: Cambridge University Press.

37. Furst, M., Saxe, J. B., & Sipser, M. (1984). Parity, circuits, and the polynomial-time hierarchy. Mathematical Systems Theory, 17, 13–27.

38. Garfield, E. (1975). The obliteration phenomenon. Current Contents, 51/52, 5–7.

39. Gauss, C. F. (1827). Disquisitiones generales circa superficies curvas. Göttingen.

40. Good, I. J. (1953). The population frequencies of species and the estimation of population parameters. Biometrika, 40(3–4), 237–264.

41. Green, J. B. A., & Sharpe, J. (2015). Positional information and reaction-diffusion: two big ideas in developmental biology combine. Development, 142(7), 1203–1211.

42. Gronfier, C., Wright, K. P., Kronauer, R. E., & Czeisler, C. A. (2007). Entrainment of the human circadian pacemaker to longer-than-24-h days. PNAS, 104(21), 9081–9086.

43. Hansen, C. (1992). A Daoist Theory of Chinese Thought: A Philosophical Interpretation. New York: Oxford University Press.

44. Haspelmath, M. (1999). Why is grammaticalization irreversible? Linguistics, 37(6), 1043–1068.

45. Hennig, W. (1966). Phylogenetic Systematics. Urbana: University of Illinois Press.

46. Hohmann, W. (1925). Die Erreichbarkeit der Himmelskörper. München: Oldenbourg.

47. Hoyle, F. (1954). On nuclear reactions occurring in very hot stars. I. The Astrophysical Journal Supplement Series, 1, 121–146.

48. Hubel, D. H., & Wiesel, T. N. (1970). The period of susceptibility to the physiological effects of unilateral eye closure in kittens. Journal of Physiology, 206(2), 419–436.

49. Hutchings, M. J. (1983). Ecology's law in search of a theory. New Scientist, 98, 765–767.

50. Håstad, J. (1986). Almost optimal lower bounds for small depth circuits. Proceedings of STOC 1986, 6–20.

51. Imry, Y. (1997). Introduction to Mesoscopic Physics. Oxford: Oxford University Press.

52. Jahn, T. R., & Radford, S. E. (2008). Folding versus aggregation: polypeptide conformations on competing pathways. Archives of Biochemistry and Biophysics, 469(1), 100–117.

53. JCGM (2012). International Vocabulary of Metrology — Basic and General Concepts and Associated Terms (VIM), 3rd edition, JCGM 200:2012.

54. Jespersen, O. (1917). Negation in English and Other Languages. Copenhagen: Det Kgl. Danske Videnskabernes Selskab.

55. Kennedy, H. C. (1972). Who discovered Boyer's law? The American Mathematical Monthly, 79(1), 66–67.

56. King, G. C. P., Stein, R. S., & Lin, J. (1994). Static stress changes and the triggering of earthquakes. Bulletin of the Seismological Society of America, 84(3), 935–953.

57. Kolmogorov, A. N. (1941). The local structure of turbulence in incompressible viscous fluid for very large Reynolds numbers. Doklady Akademii Nauk SSSR, 30, 301–305.

58. Kolmogorov, A. N. (1962). A refinement of previous hypotheses concerning the local structure of turbulence. Journal of Fluid Mechanics, 13(1), 82–85.

59. Kraichnan, R. H. (1974). On Kolmogorov's inertial-range theories. Journal of Fluid Mechanics, 62(2), 305–330.

60. Kuhn, T. S. (1962/1970). The Structure of Scientific Revolutions. Chicago: University of Chicago Press.

61. Kuzyakov, Y., Friedel, J. K., & Stahr, K. (2000). Review of mechanisms and quantification of priming effects. Soil Biology and Biochemistry, 32(11–12), 1485–1498.

62. Lanczos, C. (1970). The Variational Principles of Mechanics (4th ed.). Toronto: University of Toronto Press.

63. LeCun, Y., Denker, J. S., & Solla, S. A. (1989). Optimal brain damage. Advances in Neural Information Processing Systems, 2, 598–605.

64. Levental, I., Levental, K. R., & Heberle, F. A. (2020). Lipid rafts: controversies resolved, mysteries remain. Trends in Cell Biology, 30(5), 341–353.

65. Lindhoud, S., Westphal, A. H., Borst, J. W., & van Mierlo, C. P. M. (2012). Illuminating the off-pathway nature of the molten globule folding intermediate of an α-β parallel protein. PLoS ONE, 7(9), e45746.

66. Liu, Z., Sun, M., Zhou, T., Huang, G., & Darrell, T. (2019). Rethinking the value of network pruning. ICLR 2019.

67. Lonsdale, W. M. (1990). The self-thinning rule: dead or alive? Ecology, 71(4), 1373–1388.

68. Lorenz, K. (1935). Der Kumpan in der Umwelt des Vogels. Journal für Ornithologie, 83, 137–213 & 289–413.

69. Mandelbrot, B. B. (1982). The Fractal Geometry of Nature. San Francisco: W. H. Freeman.

70. Matzinger, P. (1994). Tolerance, danger, and the extended family. Annual Review of Immunology, 12, 991–1045.

71. McCaffrey, B. J., Quintiere, J. G., & Harkleroad, M. F. (1981). Estimating room temperatures and the likelihood of flashover using fire test data correlations. Fire Technology, 17(2), 98–119.

72. McDonald, R., & Siegel, D. (1986). The value of waiting to invest. Quarterly Journal of Economics, 101(4), 707–727.

73. Meillet, A. (1912). L'évolution des formes grammaticales. Scientia, 12, 384–400.

74. Merton, R. K. (1957). Priorities in scientific discovery: a chapter in the sociology of science. American Sociological Review, 22(6), 635–659.

75. Merton, R. K. (1968). Social Theory and Social Structure (Enlarged ed.). New York: Free Press.

76. Miner, M. A. (1945). Cumulative damage in fatigue. Journal of Applied Mechanics, 12(3), A159–A164.

77. Mohr, P. J., Newell, D. B., Taylor, B. N., & Tiesinga, E. (2018). Data and analysis for the CODATA 2017 special fundamental constants adjustment. Metrologia, 55(1), 125–146.

78. Myers, S. C. (1977). Determinants of corporate borrowing. Journal of Financial Economics, 5(2), 147–175.

79. Newell, D. B., Cabiati, F., Fischer, J., et al. (2018). The CODATA 2017 values of h, e, k, and N_A for the revision of the SI. Metrologia, 55(1), L13–L16.

80. Norde, M. (2009). Degrammaticalization. Oxford: Oxford University Press.

81. Omori, F. (1894). On the aftershocks of earthquakes. Journal of the College of Science, Imperial University of Tokyo, 7, 111–200.

82. Ostwald, W. (1897). Studien über die Bildung und Umwandlung fester Körper. Zeitschrift für Physikalische Chemie, 22, 289–330.

83. Paris, P., & Erdogan, F. (1963). A critical analysis of crack propagation laws. Journal of Basic Engineering, 85(4), 528–533.

84. Parnell, A. C., Inger, R., Bearhop, S., & Jackson, A. L. (2010). Source partitioning using stable isotopes: coping with too much variation. PLoS ONE, 5(3), e9672.

85. Passos, G. A., Speck-Hernandez, C. A., Assis, A. F., & Mendes-da-Cruz, D. A. (2018). Update on Aire and thymic negative selection. Immunology, 153(1), 10–20.

86. Patterson, C. (1982). Morphological characters and homology. In K. A. Joysey & A. E. Friday (Eds.), Problems of Phylogenetic Reconstruction. London: Academic Press.

87. Phillips, D. L., & Gregg, J. W. (2003). Source partitioning using stable isotopes: coping with too many sources. Oecologia, 136(2), 261–269.

88. Phillips, D. L., Inger, R., Bearhop, S., et al. (2014). Best practices for use of stable isotope mixing models in food-web studies. Canadian Journal of Zoology, 92(10), 823–835.

89. Pike, L. J. (2006). Rafts defined: a report on the Keystone Symposium on Lipid Rafts and Cell Function. Journal of Lipid Research, 47(7), 1597–1598.

90. Pittendrigh, C. S., & Daan, S. (1976). A functional analysis of circadian pacemakers in nocturnal rodents. Journal of Comparative Physiology A, 106, 291–331.

91. Poincaré, H. (1902). La Science et l'hypothèse. Paris: Flammarion.

92. Ptitsyn, O. B., et al. (1990). Evidence for a molten globule state as a general intermediate in protein folding. FEBS Letters, 262(1), 20–24.

93. Rasmussen, C. E., & Ghahramani, Z. (2001). Occam's razor. Advances in Neural Information Processing Systems, 13.

94. Reineke, L. H. (1933). Perfecting a stand-density index for even-aged forests. Journal of Agricultural Research, 46(7), 627–638.

95. Rissanen, J. (1978). Modeling by shortest data description. Automatica, 14(5), 465–471.

96. Rolfs, C. E., & Rodney, W. S. (1988). Cauldrons in the Cosmos: Nuclear Astrophysics. Chicago: University of Chicago Press.

97. Salpeter, E. E. (1952). Nuclear reactions in stars without hydrogen. The Astrophysical Journal, 115, 326–328.

98. Scott, J. C. (1998). Seeing Like a State: How Certain Schemes to Improve the Human Condition Have Failed. New Haven: Yale University Press.

99. Sezgin, E., Levental, I., Mayor, S., & Eggeling, C. (2017). The mystery of membrane organization: composition, regulation and roles of lipid rafts. Nature Reviews Molecular Cell Biology, 18(6), 361–374.

100. Shannon, C. E. (1959). Coding theorems for a discrete source with a fidelity criterion. IRE National Convention Record, 7(4), 142–163.

101. Shapley, L. S. (1953). A value for n-person games. In H. W. Kuhn & A. W. Tucker (Eds.), Contributions to the Theory of Games II. Princeton: Princeton University Press.

102. Shewhart, W. A. (1931). Economic Control of Quality of Manufactured Product. New York: Van Nostrand.

103. Simons, K., & Ikonen, E. (1997). Functional rafts in cell membranes. Nature, 387(6633), 569–572.

104. Singer, S. J., & Nicolson, G. L. (1972). The fluid mosaic model of the structure of cell membranes. Science, 175(4023), 720–731.

105. Smith, O. J. M. (1957). Closer control of loops with dead time. Chemical Engineering Progress, 53(5), 217–219.

106. Snyder, J. P. (1987). Map Projections—A Working Manual. U.S. Geological Survey Professional Paper 1395.

107. Stein, R. S. (1999). The role of stress transfer in earthquake occurrence. Nature, 402(6762), 605–609.

108. Stein, R. S., & Barka, A. A. (1997). Progressive failure on the North Anatolian fault since 1939 by earthquake stress triggering. Geophysical Journal International, 128(3), 594–604.

109. Stein, R. S., King, G. C. P., & Lin, J. (1994). Stress triggering of the 1994 M = 6.7 Northridge, California, earthquake by its predecessors. Science, 265(5177), 1432–1435.

110. Stephenson, R. P. (1956). A modification of receptor theory. British Journal of Pharmacology, 11(4), 379–393.

111. Stigler, S. M. (1980). Stigler's law of eponymy. Transactions of the New York Academy of Sciences, 39, 147–158.

112. Suresh, S. (1998). Fatigue of Materials (2nd ed.). Cambridge: Cambridge University Press.

113. Tauber, A. I. (1994). The Immune Self: Theory or Metaphor? Cambridge: Cambridge University Press.

114. Thomas, P. H. (1981). Testing products and materials for their contribution to flashover in rooms. Fire and Materials, 5(3), 103–111.

115. Tibshirani, R. (1996). Regression shrinkage and selection via the lasso. Journal of the Royal Statistical Society B, 58(1), 267–288.

116. Tissot, N. A. (1881). Mémoire sur la représentation des surfaces et les projections des cartes géographiques. Paris: Gauthier-Villars.

117. Totten, G. E. (Ed.) (2006). Steel Heat Treatment: Metallurgy and Technologies (2nd ed.). Boca Raton: CRC Press.

118. Trumbore, S. (2000). Age of soil organic matter and soil respiration: radiocarbon constraints on belowground C dynamics. Ecological Applications, 10(2), 399–411.

119. Turing, A. M. (1952). The chemical basis of morphogenesis. Philosophical Transactions of the Royal Society B, 237(641), 37–72.

120. Uhlén, M., et al. (2015). Tissue-based map of the human proteome. Science, 347(6220), 1260419.

121. Vallado, D. A. (2013). Fundamentals of Astrodynamics and Applications (4th ed.). Hawthorne: Microcosm Press.

122. van Gelderen, E. (2011). The Linguistic Cycle: Language Change and the Language Faculty. Oxford: Oxford University Press.

123. Volmer, M., & Weber, A. (1926). Keimbildung in übersättigten Gebilden. Zeitschrift für Physikalische Chemie, 119, 277–301.

124. Weibull, W. (1951). A statistical distribution function of wide applicability. Journal of Applied Mechanics, 18, 293–297.

125. Weller, D. E. (1987). A reevaluation of the −3/2 power rule of plant self-thinning. Ecological Monographs, 57(1), 23–43.

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127. Wolpert, L. (1969). Positional information and the spatial pattern of cellular differentiation. Journal of Theoretical Biology, 25(1), 1–47.

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二 · 中文文献

1. 冯友兰:《中国哲学史》,上海:商务印书馆,1934 年。

2. 冯友兰:《中国哲学史新编》,北京:人民出版社,1982 年。

3. 成玄英:《道德经义疏》,蒙文通辑校,成都:巴蜀书社,2001 年。

4. 朱谦之:《老子校释》,北京:中华书局,1984 年。

5. 楼宇烈:《王弼集校释》,北京:中华书局,1980 年。

6. 河上公:《老子道德经河上公章句》,王卡点校,北京:中华书局,1993 年。

7. 王弼:《老子指略》(又称《老子微旨例略》),载楼宇烈《王弼集校释》,北京:中华书局,1980 年。

8. 王弼:《老子道德经注》《老子指略》,载楼宇烈《王弼集校释》,北京:中华书局,1980 年。

9. 王弼:《老子道德经注》第三十二章、第三十四章,载楼宇烈《王弼集校释》,北京:中华书局,1980 年。

10. 王弼:《老子道德经注》第六十四章,载楼宇烈《王弼集校释》,北京:中华书局,1980 年。

11. 王弼:《老子道德经注》第十六章,载楼宇烈《王弼集校释》,北京:中华书局,1980 年。

12. 王弼:《老子道德经注》第四十八章,载楼宇烈《王弼集校释》,北京:中华书局,1980 年。

13. 王弼:《老子道德经注》,载楼宇烈《王弼集校释》,北京:中华书局,1980 年。

14. 苏辙:《老子解》,载《苏辙集》,北京:中华书局,1990 年。

15. 钱钟书:《管锥编》「老子王弼注·四〇章」,北京:中华书局,1979 年。

16. 韩非:《韩非子·喻老》,载陈奇猷《韩非子新校注》,上海:上海古籍出版社,2000 年。

17. 高亨:《老子正诂》,北京:中国书店,1988 年。

18. 高明:《帛书老子校注》,北京:中华书局,1996 年。

文献使用说明

其一,本书目按著者姓氏字母序(西文)与笔画序(中文)排列,不按章次——因为九章之间有若干共用文献(尤其是《王弼集校释》《老子道德经河上公章句》《老子校释》《帛书老子校注》四种,为多章共引)。

其二,九章正文中凡以「据某某研究」「该领域自陈」等形式出现的引述,其出处均见于该章文献表。本书目未收录仅在正文中被提及而未构成论证依据的著作。

其三,第五、七、八、九章的检验所用数据与常数,其来源在各该章的正文与"计算可得性声明"中写明,不重复列入本书目


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