1. Chen, L., Niklas, K.J., Ding, Z., Gielis, J., Miao, Q., Lian, M., Shi, P. (*) 2024. Scaling relationships among the mass of eggshell, albumen, and yolk in six precocial birds. Integrative and Comparative Biology, 64: 133−143. 2. Guo, X., Shi, P. (*), Niinemets, Ü., Holscher, D., Wang, R., Liu, M., Li, Y., Dong, L., Niklas, K.J. (*) 2021. Leaf diminishing returns of five different age-groups of moso bamboo culms (Phyllostachys edulis). American Journal of Botany, 108: 1662−1672 3. Li, Y., Shi, P. (*), Niinemets, Ü., Song, Y., Yu, K., Schrader, J., Niklas, K.J. (*) 2022. Diminishing returns among lamina fresh and dry mass, surface area, and petiole fresh mass among nine Lauraceae species. American Journal of Botany, 109: 377−392. 4. Lian, M., Shi, P. (*), Zhang, L., Yao, W., Gielis, J., Niklas, K.J. (*) 2023. A generalized performance equation and its application in measuring the Gini index of leaf size inequality. Trees − Structure and Function, 37: 1555−1565 5. Lian, M., He, K., Ratkowsky, D.A., Chen, L., Wang, J., Wang, L., Yao, W., Shi, P. (*) 2024. Comparison of egg-shape equations using relative curvature measures of nonlinearity. Poultry Science, 103: 104069. https://doi.org/10.1016/j.psj.2024.104069 6. Lin, S., Niklas, K.J., Wan, Y., Holscher, D., Hui, C., Ding, Y., Shi, P. (*) 2020. Leaf shape influences the scaling of leaf dry mass vs. area: a test case using bamboos. Annals of Forest Science, 77: 11 7. Liu, G. (#), Shi, P. (#), Xu, Q., Dong, X., Wang, F., Wang, G., Hui, C. 2016. Does the size-density relationship developed for bamboo species conform to the self-thinning rule? Forest Ecology and Management, 361: 339−345 8. Mu, Y., He, K., Shi, P. (*), Wang, L., Deng, L., Shi, Z., Liu, M., Niklas, K.J. (*) 2024. Comparison between computer recognition and manual measurement methods for the estimation of leaf area. Annals of Botany, in press. https://doi.org/10.1093/aob/mcae090 9. Peng, Q., Cheng, L., Niklas, K.J., Yao, W., Lian, M., Shi, P. (*) 2023. Comparison of three sigmoidal functions describing the leaf growth of Camptotheca acuminata Decne. Ecological Modelling, 486: 110531 10. Schrader, J., Shi, P., Royer, D.L., Peppe, D.J., Gallagher, R.V., Li, Y., Wang, R., Wright, I.J. 2021. Leaf size estimation based on leaf length, width and shape. Annals of Botany, 128: 395−406 11. Shi, P., Chen, L., Hui, C., Grissino-Mayer, H.D. 2016. Capture the time when plants reach their maximum body size by using the beta sigmoid growth equation. Ecological Modelling, 320: 177−181 12. Shi, P., Chen, L., Quinn, B.K., Yu, K., Miao, Q., Guo, X., Lian, M., Gielis, J., Niklas, K.J. 2023. A simple way to calculate the volume and surface area of avian eggs. Annals of the New York Academy of Sciences, 1524(1): 118−131 13. Shi, P., Chen, Z., Reddy, G.V.P., Hui, C., Huang, J., Xiao, M. 2017. Timing of cherry tree blooming: Contrasting effects of rising winter low temperatures and early spring temperatures. Agricultural and Forest Meteorology, 240-241: 78−89 14. Shi, P., Fan, M., Ratkowsky, D.A., Huang, J., Wu, H., Chen, L., Fang, S., Zhang, C. 2017. Compaison of two ontogenetic gowth equations for animals and plants. Ecological Modelling, 349: 1−10 15. Shi, P., Fan, M., Reddy, G.V.P. 2017. Comparison of thermal performance equations in describing temperature-dependent developmental rates of insects: (III) Phenological applications. Annals of the Entomological Society of America, 110: 558−564 16. Shi, P., Gielis, J., Niklas, K.J. 2022. Comparison of a universal (but complex) model for avian egg shape with a simpler model. Annals of the New York Academy of Sciences,1514: 34−42. 17. Shi, P., Gielis, J., Quinn, B.K., Niklas, K.J., Ratkowsky, D.A., Schrader, J., Ruan, H., Wang, L., Niinemets, Ü. 2022. 'biogeom': An R package for simulating and fitting natural shapes. Annals of the New York Academy of Sciences, 1516: 123−134. 18. Shi, P., Hui, C., Men, X., Hui, C., Zhao, Z., Ouyang, F., Cao, H., Jin, X., Ge, F., Li, B. 2014. Cascade effects of crop species richness on the diversity of pest insects and their natural enemies. Science China Life Sciences, 57: 718−725 19. Shi, P., Ishikawa, T., Sandhu, H.S., Hui, C., Chakraborty, A., Jin, X., Tachihara, K., Li, B. 2014. On the 3/4-exponent von Bertalanffy equation for ontogenetic growth. Ecological Modelling, 276: 23−28 20. Shi, P., Jiao, Y., Diggle, P.J., Turner, R., Wang, R., Niinemets, U. 2021. Spatial distribution characteristics of stomata at the areole level in Michelia cavaleriei var. platypetala (Magnoliaceae). Annals of Botany, 128: 875−885 21. Shi, P., Jiao, Y., Niklas, K.J., Li, Y., Guo, X., Yu, K., Chen, L., Hurd, L.E. 2022. Sexual dimorphism in body size and wing loading for three cicada species. Annals of the Entomological Society of America, 115: 344−351. 22. Shi, P., Li, M., Li, Y., Liu, J., Shi, H., Xie, T., Yue, C. 2019. Taylor's power law in the Wenchuan earthquake sequence with fluctuation scaling. Natural Hazards and Earth System Sciences, 19: 1119−1127 23. Shi, P., Liu, M., Ratkowsky, D.A., Gielis, J., Su, J., Yu, X., Wang, P., Zhang, L., Lin, Z., Schrader, J. 2019. Leaf area-length allometry and its implications in leaf-shape evolution. Trees, 33: 1073−1085 24. Shi, P., Miao, Q., Niinemets, Ü., Liu, M., Li, Y., Yu, K., Niklas, K.J. 2022. Scaling relationships of leaf vein and areole traits versus leaf size for nine Magnoliaceae species differing in venation density. American Journal of Botany, 109: 899−909. 25. Shi, P., Men, X., Sandhu, H.S., Chakraborty, A., Li, B., Ouyang, F., Sun, Y., Ge, F. 2013. The "general" ontogenetic growth model is inapplicable to crop growth. Ecological Modelling, 266: 1−9 26. Shi, P., Ratkowsky, D.A., Wang, N., Li, Y., Reddy, G.V.P., Zhao, L., Li, B. 2017. Comparison of five methods for parameter estimation under Taylor's power law. Ecological Complexity, 32: 121−130 27. Shi, P., Reddy, G.V.P., Chen, L., Ge, F. 2016. Comparison of thermal performance equations in describing temperature-dependent developmental rates of insects: (I) empirical models. Annals of the Entomological Society of America, 109: 211−215 28. Shi, P., Reddy, G.V.P., Chen, L., Ge, F. 2017. Comparison of thermal performance equations in describing temperature-dependent developmental rates of insects: (II) Two thermodynamic models. Annals of the Entomological Society of America, 110: 113−120 29. Shi, P., Sandhu, H.S., Reddy, G.V.P. 2016. Dispersal distance determines the exponent of the spatial Taylor's power law. Ecological Modelling, 335: 48−53 30. Shi, P., Wei, J., Sandhu, H.S., Liang, G. 2016. Capture the interaction types of two Bt toxins Cry1Ac and Cry2Ab on suppressing the cotton bollworm by using the multi-exponential equations. Insect Science, 23: 649−654 31. Yu, X., Shi, P. (*), Schrader, J., Niklas, K.J. (*) 2020. Nondestructive estimation of leaf area for 15 species of vines with different leaf shapes. American Journal of Botany, 107: 1481−1490 32. Zhang, L., Niklas, K.J., Niinennets, Ü., Li, Q., Yu, K., Li, J., Chen, L., Shi P. (*) 2023. Stomatal area estimation based on stomatal length and width of four Magnoliaceae species: even "kidney"-shaped stomata are not elliptical. Trees – Structure and Function, 37: 1333−1342. 33. Zhao, Z. (#), Shi, P. (#), Hui, C., Ouyang, F., Ge, F., Li, B.-L. 2013. Solving the pitfalls of pitfall trapping: a two-circle method for density estimation of ground-dwelling arthropods. Methods in Ecology and Evolution, 4: 865−871 34. Wang, J., Shi, P. (*), Yao, W., Wang, L., Li, Q., Tan, R., Niklas, K.J. (*) 2024. The scaling relationship between perianth fresh mass and area: proof of concept using Magnolia × soulangeana Soul.-Bod. Trees − Structure and Function, 38: 241−249. 35. Wei, Q., Jiao, C., Guo, L., Ding, Y., Cao, J., Feng, J., Dong, X., Mao, L., Sun, H., Yu, F., Yang, G., Shi, P., Ren, G., Fei, Z. 2017. Exploring key cellular processes and candidate genes regulating the primary thickening growth of Moso underground shoots. New Phyotologist, 214: 81−96 |