• Scopus
  • Chinese Science Citation Database (CSCD)
  • A Guide to the Core Journal of China
  • CSTPCD
  • F5000 Frontrunner
  • RCCSE
Advanced search
Zhang Yue, Li Chao, Guo-Ye Yingzi, Zhao Guangjie. Research development on human psychological and physiological responses to visual stimulation of wood[J]. Journal of Beijing Forestry University, 2022, 44(6): 156-166. DOI: 10.12171/j.1000-1522.20210365
Citation: Zhang Yue, Li Chao, Guo-Ye Yingzi, Zhao Guangjie. Research development on human psychological and physiological responses to visual stimulation of wood[J]. Journal of Beijing Forestry University, 2022, 44(6): 156-166. DOI: 10.12171/j.1000-1522.20210365

Research development on human psychological and physiological responses to visual stimulation of wood

More Information
  • Received Date: September 14, 2021
  • Revised Date: April 29, 2022
  • Accepted Date: May 23, 2022
  • Available Online: May 26, 2022
  • Published Date: June 24, 2022
  • Wood is a natural biological material inseparable from human life and its excellent aesthetic characteristics are widely used in the field of furniture and interior and exterior decoration of buildings. The unique color, texture and other appearance characteristics of wood will cause the visual stimulation from eye, and then cause the psychological and physiological response process. In terms of the visual stimulation representation of wood, as well as the experimental measurement and scientific evaluation of psychological and physiological response, the previous studies were mostly expressed by subjective questionnaires or evaluation scales. In recent years, through the use of advanced technology to monitor human psychological and physiological indicators, it provides a new perspective and method for quantitative research. In order to further sort out the psychological and physiological response activities caused by wood visual stimulation, focus on the research field of wood visual characteristics, this paper systematically generalizes the characterization methods of wood visual stimulation at home and abroad, and summarizes the main research contents and progress of human psychological and physiological response caused by wood visual stimulation. On the basis of comprehensive analysis, three scientific problems to be solved urgently in this research field were condensed: the accurate evaluation of human psychological and physiological response process caused by wood visual stimulation, the interaction and synergy mechanism of multi-sensory channels, and the impact of wood living environment on human psychological and physiological health. It aims to provide a theoretical basis for the visual design of wood products or the construction of comfort in wood indoor space, and to provide a technical reference path for the future research and application of wood environmental science, especially in the field of wood visual characteristics.
  • [1]
    山田正. 木質環境の科学[M]. 大津市, 日本: 海青社, 1987.

    Yamada T. Wooden environmental science[M]. Otsu, Japan: Kaiseisha Press, 1987.
    [2]
    Sullivan J D. Color characterization of wood: spectrophotometry and wood color[J]. Forest Products Journal, 1967, 17(7): 77−79.
    [3]
    Sullivan J D. Color characterization of wood: color parmeters of indivial species[J]. Forest Products Journal, 1967, 17(8): 22−25.
    [4]
    松浦邦男, 上谷芳昭. 建築材料の偏光を用いた反射指向特性の測定[J]. 日本建築学会計画系論文報告集, 1988, 388: 15−22.

    Matsuura K, Uetani Y. Measurement of directional characteristics of reflection from the surface of materials using polarized light[J]. Journal of Architecture, Planning and Environmental Engineering, 1988, 388: 15−22.
    [5]
    于海鹏. 基于数字图像处理学的木材纹理定量化研究[D]. 哈尔滨: 东北林业大学, 2005.

    Yu H P. Quantitation of wood texture by digital image processing[D]. Harbin: Northeast Forestry University, 2005.
    [6]
    戴天虹. 基于计算机视觉的木质板材颜色分类方法的研究[D]. 哈尔滨: 东北林业大学, 2008.

    Dai T H. Research on classification method of the wooden board color based on computer vision[D]. Harbin: Northeast Forestry University, 2008.
    [7]
    増田稔. 木材の視覚特性とイメージ[J]. 木材学会誌, 1992, 38(12): 1075−1081.

    Masuda M. The visual characteristics of wood and the psychological images[J]. Journal of the Japan Wood Research Society, 1992, 38(12): 1075−1081.
    [8]
    仲村匡司, 增田稔. まさ目パターンの浓淡むらの视觉特性[J]. 木材学会誌, 1995, 41(3): 301−308.

    Nakamura M, Masuda M. Characteristics of the shading pattern of hatchery pattern[J]. Journal of the Japan Wood Research Society, 1995, 41(3): 301−308.
    [9]
    刘一星, 李坚, 王矛棣. 木材表面视觉环境学特性分析Ⅰ. 木材表面视觉物理量与视觉心理量的关系[J]. 木材工业, 1995, 9(2): 14−17, 30.

    Liu Y X, Li J, Wang M D. Analysis on the characteristics of visual environmental science of wood surface (Ⅰ): the relation between visual physical magnitude and visual psychological magnitude of wood surface[J]. China Wood Industry, 1995, 9(2): 14−17, 30.
    [10]
    李坚, 刘一星, 方桂珍. 木材表面视觉环境学特性分析Ⅱ. 木材视觉心理量的解析[J]. 木材工业, 1995, 9(3): 20−23.

    Li J, Liu Y X, Fang G Z. Analysis on the characteristic of visual environmental science of wood surface (Ⅱ): the analysis of visual psychological magnitude of wood[J]. China Wood Industry, 1995, 9(3): 20−23.
    [11]
    Nakamura M, Ikei H, Miyazaki Y. Physiological effects of visual stimulation with full-scale wall images composed of vertically and horizontally arranged wooden elements[J]. Journal of Wood Science, 2019, 65(1): 55. doi: 10.1186/s10086-019-1834-0
    [12]
    Ikei H, Nakamura M, Miyazaki Y. Physiological effects of visual stimulation using knotty and clear wood images among young women[J]. Sustainability, 2020, 12(23): 9898. doi: 10.3390/su12239898
    [13]
    刘一星, 李坚, 王金满, 等. 木材材色与森林地理分布的关系[J]. 东北林业大学学报, 1993, 21(4): 41−46.

    Liu Y X, Li J, Wang J M, et al. The relation between wood color and forest geographic distribution[J]. Journal of Northeast Forestry University, 1993, 21(4): 41−46.
    [14]
    刘光金, 侯佳, 徐建民. 木材材色研究进展[J]. 世界林业研究, 2021, 34(4): 46−53.

    Liu G J, Hou J, Xu J M. A review of the research on wood color[J]. World Forestry Research, 2021, 34(4): 46−53.
    [15]
    张翔, 申宗圻. 木材材色的定量表征[J]. 林业科学, 1990, 26(4): 344−352.

    Zhang X, Shen Z Q. A study on quantitative characterization of wood color[J]. Scientia Silvae Sinicae, 1990, 26(4): 344−352.
    [16]
    刘一星, 李坚, 郭明辉, 等. 中国110树种木材表面视觉物理量的分布特征[J]. 东北林业大学学报, 1995, 23(1): 52−58.

    Liu Y X, Li J, Guo M H, et al. The distribution characteristic of wood surface visual physical magnitude of 110 tree species in China[J]. Journal of Northeast Forestry University, 1995, 23(1): 52−58.
    [17]
    刘一星, 李坚, 徐子材, 等. 我国110个树种木材表面视觉物理量的综合统计分析[J]. 林业科学, 1995, 31(4): 353−359.

    Liu Y X, Li J, Xu Z C, et al. Synthetical statistics analysis on visual physics magnitude (VPM) of the surface of 110 Chinese wood species[J]. Scientia Silvae Sinicae, 1995, 31(4): 353−359.
    [18]
    陈潇俐, 潘彪. 红木类木材表面材色和光泽度的分布特征[J]. 林业科技开发, 2006, 20(2): 29−32. doi: 10.3969/j.issn.1000-8101.2006.02.009

    Chen X L, Pan B. The distribution characteristics of surface visual physical magnitude in 19 rosewood species[J]. China Forestry Science and Technology, 2006, 20(2): 29−32. doi: 10.3969/j.issn.1000-8101.2006.02.009
    [19]
    徐芙姗, 徐海松, 王勇. 孟塞尔色序系统与CIE1931标准色度系统转换新算法[J]. 光子学报, 2007, 36(4): 650−654.

    Xu F S, Xu H S, Wang Y. A new conversion algorithm between Munsell color order system and CIE1931 standard colorimetric system[J]. Acta Photonica Sinica, 2007, 36(4): 650−654.
    [20]
    Mahyar F, Cheung V, Westland S. Different transformation methods between CIELAB coordinates and Munsell hue[J]. Coloration Technology, 2010, 126(1): 31−36. doi: 10.1111/j.1478-4408.2010.00224.x
    [21]
    杨少春, 王克奇, 戴天虹, 等. 基于直方图的木材表面颜色分类研究[J]. 森林工程, 2008, 24(1): 34−36. doi: 10.3969/j.issn.1001-005X.2008.01.009

    Yang S C, Wang K Q, Dai T H, et al. A study of color classification on wood surface based on histogram[J]. Forest Engineering, 2008, 24(1): 34−36. doi: 10.3969/j.issn.1001-005X.2008.01.009
    [22]
    白雪冰, 王克奇, 王业琴, 等. 基于BP神经网络的木材表面颜色特征分类的研究[J]. 森林工程, 2007, 23(1): 24−26. doi: 10.3969/j.issn.1001-005X.2007.01.007

    Bai X B, Wang K Q, Wang Y Q, et al. Research of the feature classification of wood surface colors based on neural network[J]. Forest Engineering, 2007, 23(1): 24−26. doi: 10.3969/j.issn.1001-005X.2007.01.007
    [23]
    戴天虹, 赵贝贝, 王玉珏. 基于提升小波提取木材颜色特征的研究[J]. 机电产品开发与创新, 2010, 23(1): 3−5. doi: 10.3969/j.issn.1002-6673.2010.01.002

    Dai T H, Zhao B B, Wang Y J. Research of wood color features extraction based on lifting wavelet[J]. Development & Innovation of Machinery & Electrical Products, 2010, 23(1): 3−5. doi: 10.3969/j.issn.1002-6673.2010.01.002
    [24]
    戴天虹, 王克奇, 杨少春. 基于颜色特征对木质板材分级的研究[J]. 系统仿真学报, 2008, 20(5): 1372−1376.

    Dai T H, Wang K Q, Yang S C. Research on wooden board classification based on color and texture features[J]. Journal of System Simulation, 2008, 20(5): 1372−1376.
    [25]
    王克奇, 杨少春, 戴天虹, 等. 基于均匀颜色空间的木材分类研究[J]. 计算机工程与设计, 2008, 29(7): 1780−1784.

    Wang K Q, Yang S C, Dai T H, et al. Research on wood classification using uniform color space[J]. Computer Engineering and Design, 2008, 29(7): 1780−1784.
    [26]
    杨少春, 王克奇, 戴天虹, 等. 基于L*a*b*颜色空间对木材分类的研究[J]. 林业机械与木工设备, 2007, 35(10): 28−30. doi: 10.3969/j.issn.2095-2953.2007.10.010

    Yang S C, Wang K Q, Dai T H, et al. Analysis of wood classification using L*a*b* color space[J]. Forestry Machinery & Woodworking Equipment, 2007, 35(10): 28−30. doi: 10.3969/j.issn.2095-2953.2007.10.010
    [27]
    佐藤舞葉, 仲村匡司. ヒノキまさ目面の光沢特性: 変角光沢測定と画像解析の対応[J]. 材料, 2011, 60(4): 282−287. doi: 10.2472/jsms.60.282

    Sato M, Nakamura M. Gloss property of radial surface of Japanese cypress (Chamaecyparis obtusa): relationship between goniometrical gloss measurement and image analyses[J]. Journal of the Society of Materials Science, 2011, 60(4): 282−287. doi: 10.2472/jsms.60.282
    [28]
    刘亚娜, 杨忠, 吕斌, 等. 木材表面光泽度的近红外漫反射光谱技术快速测定研究[J]. 光谱学与光谱分析, 2014, 34(3): 648−651. doi: 10.3964/j.issn.1000-0593(2014)03-0648-04

    Liu Y N, Yang Z, Lü B, et al. Study of rapid prediction of wood surface glossiness by near infrared spectroscopy[J]. Spectroscopy and Spectral Analysis, 2014, 34(3): 648−651. doi: 10.3964/j.issn.1000-0593(2014)03-0648-04
    [29]
    刘一星, 李坚, 于晶, 等. 透明涂饰处理前后木材表面材色和光泽度的变化[J]. 家具, 1995, 66(3): 3−5.

    Liu Y X, Li J, Yu J, et al. The variation of wood surface color and gloss for treated and untreated samples[J]. Furniture, 1995, 66(3): 3−5.
    [30]
    于海鹏, 刘一星, 罗光华. 聚氨酯漆透明涂饰木材的视觉物理量变化规律[J]. 建筑材料学报, 2007, 10(4): 463−468. doi: 10.3969/j.issn.1007-9629.2007.04.016

    Yu H P, Liu Y X, Luo G H. Changing rules of visual physical parameters of wood coated by clear polyurethane lacquer[J]. Journal of Building Materials, 2007, 10(4): 463−468. doi: 10.3969/j.issn.1007-9629.2007.04.016
    [31]
    陈宏伟, 宋魁彦. 木蜡油涂饰对家具表面视觉特性的影响研究[J]. 家具与室内装饰, 2021(4): 43−45.

    Chen H W, Song K Y. Research on the influence of wood wax coating on the visual characteristics of furniture surface[J]. Furniture & Interior Design, 2021(4): 43−45.
    [32]
    刘冰, 王逢瑚, 佟达, 等. 烫蜡与透明涂饰工艺处理前后木材表面材色和光泽度变化规律的对比分析[C]//智能信息技术应用学会会议论文集. 哥打基纳巴卢: 国际工业电子中心, 2011: 546−549.

    Liu B, Wang F H, Tong D, et al. Comparative analysis of the wood surface material chromaticity and gloss changes before and after hot wax and transparent coating process[C]//International Conference on Future Computer Science and Application. Kota Kinabalu: International Industrial Electronic Center, 2011: 546−549.
    [33]
    崔蒙蒙, 吴智慧. 现代上蜡工艺对红木家具用木材材色及光泽的影响[J]. 涂料工业, 2017, 47(2): 67−72.

    Cui M M, Wu Z H. Effect of modern waxing process on surface color and gloss of rosewood furniture[J]. Paint & Coatings Industry, 2017, 47(2): 67−72.
    [34]
    赵广杰. 木材构造和生体节律的1/f型涨落谱[J]. 木材工业, 1997, 11(6): 22−25.

    Zhao G J. Fluctuation spectrum of wood structure and creature physical rhythm[J]. China Wood Industry, 1997, 11(6): 22−25.
    [35]
    仇芝萍. 径向木纹视觉特性研究[D]. 南京: 南京林业大学, 2011.

    Qiu Z P. The study on visual characteristics of radial texture of wood[D]. Nanjing: Nanjing Forestry University, 2011.
    [36]
    苗艳凤. 木材山峰状纹理的视觉特性研究[D]. 南京: 南京林业大学, 2013.

    Miao Y F. Research on visual characteristics of mountain-like texture of wood[D]. Nanjing: Nanjing Forestry University, 2013.
    [37]
    于海鹏, 刘一星, 张斌, 等. 应用空间灰度共生矩阵定量分析木材表面纹理特征[J]. 林业科学, 2004, 40(6): 121−129. doi: 10.3321/j.issn:1001-7488.2004.06.021

    Yu H P, Liu Y X, Zhang B, et al. Application of spatial gray level cooccurrence matrix in wood surface texture quantitative analysis[J]. Scientia Silvae Sinicae, 2004, 40(6): 121−129. doi: 10.3321/j.issn:1001-7488.2004.06.021
    [38]
    刘辉, 谈正. 各向异性纹理的图形参数化表征与综合[J]. 计算机学报, 1998, 21(6): 566−571. doi: 10.3321/j.issn:0254-4164.1998.06.013

    Liu H, Tan Z. Graphical parameter representation and synthesis of anisotropy textures[J]. Chinese Journal of Computers, 1998, 21(6): 566−571. doi: 10.3321/j.issn:0254-4164.1998.06.013
    [39]
    于海鹏, 刘一星, 孙建平. 基于小波的木材纹理分频信息提取与分析[J]. 林业科学, 2005, 41(2): 100−105. doi: 10.3321/j.issn:1001-7488.2005.02.017

    Yu H P, Liu Y X, Sun J P. Separated frequency features extraction and analysis of wood texture based on wavelet[J]. Scientia Silvae Sinicae, 2005, 41(2): 100−105. doi: 10.3321/j.issn:1001-7488.2005.02.017
    [40]
    王克奇, 谢永华, 陈立君. 基于分形理论的木材纹理特征研究[J]. 林业机械与木工设备, 2005, 33(7): 19−20. doi: 10.3969/j.issn.2095-2953.2005.07.007

    Wang K Q, Xie Y H, Chen L J. A study on the wood texture character based on fractal theory[J]. Forestry Machinery & Woodworking Equipment, 2005, 33(7): 19−20. doi: 10.3969/j.issn.2095-2953.2005.07.007
    [41]
    于海鹏, 刘一星, 刘镇波. 木材纹理的定量化算法探究[J]. 福建林学院学报, 2005, 25(2): 157−162. doi: 10.3969/j.issn.1001-389X.2005.02.014

    Yu H P, Liu Y X, Liu Z B. Some idea and algorithms about quantification of wood texture[J]. Journal of Fujian College of Forestry, 2005, 25(2): 157−162. doi: 10.3969/j.issn.1001-389X.2005.02.014
    [42]
    增田稔. 木目模様その他のパターンの数量化に関する研究: 特に, ちらつきに基づくパターンの数量化について[J]. 材料, 1983, 32(359): 893−898. doi: 10.2472/jsms.32.893

    Masuda M. Studies on numerization of wood pattern and other patterns: especially on numerization of patterns based on flicker[J]. Journal of the Society of Materials Science, 1983, 32(359): 893−898. doi: 10.2472/jsms.32.893
    [43]
    増田稔. 木材のイメージに与える色彩および光沢の影響[J]. 材料, 1985, 34(383): 972−978. doi: 10.2472/jsms.34.972

    Masuda M. Influence of color and glossiness on image of wood[J]. Journal of the Society of Materials Science, 1985, 34(383): 972−978. doi: 10.2472/jsms.34.972
    [44]
    于海鹏, 刘一星, 刘镇波, 等. 基于改进的视觉物理量预测木材的环境学品质[J]. 东北林业大学学报, 2004, 32(6): 39−41. doi: 10.3969/j.issn.1000-5382.2004.06.012

    Yu H P, Liu Y X, Liu Z B, et al. Prediction of wood’s environmental quality by amendatory visual physical parameters[J]. Journal of Northeast Forestry University, 2004, 32(6): 39−41. doi: 10.3969/j.issn.1000-5382.2004.06.012
    [45]
    宋莎莎, 赵广杰. 木材宏观细胞堆砌构造图案的情感心理表达[J]. 北京林业大学学报, 2011, 33(3): 122−126.

    Song S S, Zhao G J. Psychological and emotional expression of macroscopic cell-piled structure patterns of wood[J]. Journal of Beijing Forestry University, 2011, 33(3): 122−126.
    [46]
    孙启祥, 张齐生, 彭镇华. 不同颜色地板的视觉特性研究[J]. 安徽农业大学学报, 2004, 31(4): 431−434. doi: 10.3969/j.issn.1672-352X.2004.04.012

    Sun Q X, Zhang Q S, Peng Z H. Study on visual characteristics of the floor[J]. Journal of Anhui Agricultural University, 2004, 31(4): 431−434. doi: 10.3969/j.issn.1672-352X.2004.04.012
    [47]
    武恒, 汪佑宏, 张令峰, 等. 不同颜色实木地板表面视觉物理量与色彩心理特性相关性分析[J]. 安徽农业大学学报, 2011, 38(4): 504−510.

    Wu H, Wang Y H, Zhang L F, et al. Analysis of the relation between surface visual physical magnitude and color psychological characteristics of the solid wood floor[J]. Journal of Anhui Agricultural University, 2011, 38(4): 504−510.
    [48]
    周橙旻, 吕一心, 詹先旭, 等. 基于HSB的木门用户色彩感性意象研究[J]. 林产工业, 2020, 57(12): 40−44.

    Zhou C M, Lü Y X, Zhan X X, et al. Research on color sensitive image of wooden door user based on HSB[J]. China Forest Products Industry, 2020, 57(12): 40−44.
    [49]
    苏婷婷. 松木表面修饰对视觉特性影响的研究[J]. 家具, 2018, 39(2): 31−35.

    Su T T. The research on the influences of different surface treatments on the visual characteristics of pine wood[J]. Furniture, 2018, 39(2): 31−35.
    [50]
    关瑛, 刘粟瑶, 杜肖叶. 木材表面材色特征色度分析研究[J]. 林产工业, 2021, 58(8): 65−70.

    Guan Y, Liu S Y, Du X Y. Research on color chromaticity of wood surface[J]. China Forest Products Industry, 2021, 58(8): 65−70.
    [51]
    王格格, 宋莎莎. 眼动追踪技术在木质室内装饰环境中的应用[J]. 家具与室内装饰, 2015(7): 92−94. doi: 10.3969/j.issn.1006-8260.2015.07.024

    Wang G G, Song S S. The application of eye tracking technology in wood interior decoration environment[J]. Furniture & Interior Design, 2015(7): 92−94. doi: 10.3969/j.issn.1006-8260.2015.07.024
    [52]
    吉田美音, 仲村匡司, 菊地由衣. 木質壁面パネルが観察者の眼球停留関連電位、眼球運動、および視覚印象に及ぼす影響[J]. 木材学会誌, 2016, 62(6): 275−283.

    Yoshida M, Nakamura M, Kikuchi Y. Effect of observation of wooden wall panels on eye fixation related potentials, eye movement and sensory evaluation[J]. Journal of the Japan Wood Research Society, 2016, 62(6): 275−283.
    [53]
    米山菜乃花, 仲村匡司, 片岡厚, 等. 塗装による木理のコントラスト変化が材面の誘目性に及ぼす影響[J]. 木材学会誌, 2016, 62(6): 293−300.

    Komeyama N, Nakamura M, Kataoka Y, et al. Effect of contrast changes in wood-grain patterns by coating on visual attractiveness[J]. Journal of the Japan Wood Research Society, 2016, 62(6): 293−300.
    [54]
    加藤茉里子, 仲村匡司. ヴァイオリン杢の光反射特性と誘目性の関係: 視線追跡および画像解析による評価[J]. 木材学会誌, 2016, 62(6): 284−292.

    Kato M, Nakamura M. Relationships between reflection properties and visual attractiveness of fiddleback figures: evaluation with eye tracking and image analysis[J]. Journal of the Japan Wood Research Society, 2016, 62(6): 284−292.
    [55]
    Nakamura M, Kondo T. Characterization of distribution pattern of eye fixation pauses in observation of knotty wood panel images[J]. Journal of Physiological Anthropology, 2007, 26(2): 129−133. doi: 10.2114/jpa2.26.129
    [56]
    Nakamura M, Kondo T. Quantification of visual inducement of knots by eye-tracking[J]. Journal of Wood Science, 2008, 54(1): 22−27. doi: 10.1007/s10086-007-0910-z
    [57]
    增田稔, 仲村匡司. 室内空間における木材率とイメ-ジ[J]. 京都大学農学部演習林報告, 1990(62): 297−303.

    Masuda M, Nakamura M. Wood rate and image in indoor space[J]. Bulletin of the Kyoto University Forests, 1990(62): 297−303.
    [58]
    仲村匡司, 増田稔. 住宅内装における木質部材の存在形態と量が心理的イメージに与える影響[J]. 木材学会誌, 2004, 50(6): 376−383.

    Nakamura M, Masuda M. Effect of form and amount of wood-members in interior spaces on psychological images[J]. Journal of the Japan Wood Research Society, 2004, 50(6): 376−383.
    [59]
    Poirier G, Demers C, Potvin A. Wood perception in daylit interior spaces: an experimental study using scale models and questionnaires[J]. Bioresources, 2019, 14(1): 1941−1968.
    [60]
    Dematte M L, Zucco G M, Roncato S, et al. New insights into the psychological dimension of wood-human interaction[J]. European Journal of Wood and Wood Products, 2018, 76(4): 1093−1100. doi: 10.1007/s00107-018-1315-y
    [61]
    于海鹏, 刘一星, 刘镇波. 应用心理生理学方法研究木质环境对人体的影响[J]. 东北林业大学学报, 2003, 31(6): 70−72. doi: 10.3969/j.issn.1000-5382.2003.06.025

    Yu H P, Liu Y X, Liu Z B. The influence of wood environment on physiology and psychology of human body by psychophysiological method[J]. Journal of Northeast Forestry University, 2003, 31(6): 70−72. doi: 10.3969/j.issn.1000-5382.2003.06.025
    [62]
    Sakuragawa S, Miyazaki Y, Kaneko T, et al. Influence of wood wall panels on physiological and psychological responses[J]. Journal of Wood Science, 2005, 51(2): 136−140. doi: 10.1007/s10086-004-0643-1
    [63]
    Tsunetsugu Y, Miyazaki Y, Sato H. Physiological effect in human induced by the visual stimulation of room interiors with different wood quantities[J]. Journal of Wood Science, 2007, 53(1): 11−16. doi: 10.1007/s10086-006-0812-5
    [64]
    Tsunetsugu Y, Miyazaki Y, Sato H. The visual effects of wooden interiors in actual-size living rooms on the autonomic nervous activities[J]. Journal of Physiological Anthropology and Applied Human Science, 2002, 21(6): 297−300. doi: 10.2114/jpa.21.297
    [65]
    Yamaguchi T, Miyazaki Y, Sato H. Effect of visual stimulation by color on sensory evaluation, central and autonomic nervous activities[J]. Journal of Physiological Anthropology and Applied Human Science, 2001, 20(5): 304.
    [66]
    Tsunetsugu Y, Sato H, Miyazaki Y. Correlation among sensory evaluation, autonomic nervous activity, and central nervous activity in visual stimulation[J]. Journal of Physiological Anthropology and Applied Human Science, 2001, 20(5): 302.
    [67]
    叶明权, 蔡宇哲, 林玉丽, 等. 木质地板之材色意象与脑电波视觉反应之探讨[J]. 台湾林业科学, 2014, 29(2): 133−147.

    Ye M Q, Cai Y Z, Lin Y L, et al. Investigation of color images and visual responses of electroencephalograms to wooden flooring[J]. Taiwan Journal of Forest Science, 2014, 29(2): 133−147.
    [68]
    Pollatos O, Kirsch W, Schandry R. On the relationship between interoceptive awareness, emotional experience, and brain processes[J]. Cognitive Brain Research, 2005, 25(3): 948−962. doi: 10.1016/j.cogbrainres.2005.09.019
    [69]
    万千, 费本华, 宋莎莎. 不同木质室内装饰空间审美偏好的ERP研究[J]. 林产工业, 2017, 44(5): 26−30.

    Wan Q, Fei B H, Song S S. An ERP study on aesthetic preference of different wood interior decoration space[J]. China Forest Products Industry, 2017, 44(5): 26−30.
    [70]
    木村彰孝, 杉山浩之, 佐々木靖, 等. ヒバ材を用いた室内空間での視覚·嗅覚刺激が人の心理·生理面に与える影響[J]. 木材学会誌, 2011, 57(3): 150−159.

    Kimura A, Sugiyama H, Sasaki S, et al. Psychological and physiological effects in humans induced by the visual and olfactory stimulations of an interior environment made of hiba (Thujopsis dolabrata) wood[J]. Journal of the Japan Wood Research Society, 2011, 57(3): 150−159.
  • Related Articles

    [1]Zhang Lingling, Ren Ruifen, Jiang Xueru, Zhou Hao, Liu Yan. Effects of ethylene on the viability of cryopreserved Dendrobium protocorm-like bodies[J]. Journal of Beijing Forestry University, 2021, 43(6): 101-107. DOI: 10.12171/j.1000-1522.20200308
    [2]Kang Xiangyang. Thoughts on tree breeding strategies[J]. Journal of Beijing Forestry University, 2019, 41(12): 15-22. DOI: 10.12171/j.1000-1522.20190412
    [3]MIAO Yu-bo, ZHU Xiao-mei, LI Zhi-juan, JIA Feng-ling, LI Wei. Genetic evaluation of breeding resources of Pinus sylvestris var. mongolica from different improved generations[J]. Journal of Beijing Forestry University, 2017, 39(12): 71-78. DOI: 10.13332/j.1000-1522.20170194
    [4]ZHANG Zi-bin, CHENG Jin, YANG Mei, CUI Jing, CHEN Yun-meng, DENG Zhen-hai, ZHAO Xiu-hai. Food-deceptive pollination of Vanda concolor (Orchidaceae)[J]. Journal of Beijing Forestry University, 2015, 37(6): 100-106. DOI: 10.13332/j.1000-1522.20140020
    [5]HAN Xin, CHENG Fang-yun, XIAO Jia-jia, WANG Yue-lan, ZHANG Dong, WANG Ying, ZHONG Yuan. Crosses of Paeonia ostii Feng Dan Bai'as maternal parents and an analysis on the potential in tree peony breeding[J]. Journal of Beijing Forestry University, 2014, 36(4): 121-125. DOI: 10.13332/j.cnki.jbfu.2014.04.022
    [6]OUYANG Ying, LI Bing-ling, LIU Yan. Preservation of Dendrobium densiflorum pollen.[J]. Journal of Beijing Forestry University, 2010, 32(6): 151-154.
    [7]ZHANG Yu, ZHANG Qi-xiang, ZHAO Shi-wei, LING Chun-ying. Morphological characteristics and viability testing of Cypripedium macranthos seed[J]. Journal of Beijing Forestry University, 2010, 32(1): 69-73.
    [8]QIAN Hua, LIU Yan, ZHENG Yong-ping, YU Ji-ying, FAN Wen-feng. Effects of applying 6-BA on the Nobiletype Dendrobium flower bud differentiation and changes of hormones.[J]. Journal of Beijing Forestry University, 2009, 31(6): 27-31.
    [9]LI Zhen-jian, WANG Yan, PENG Zhen-hua, MIAO Kun, WANG Cai-yun, YU Yao. Effects of plant growth regulators on controlling pseudobulb and keikis of nobile type dendrobium.[J]. Journal of Beijing Forestry University, 2009, 31(1): 79-83.
  • Cited by

    Periodical cited type(11)

    1. 胡梦露,李宗艳,任书娴,杨建伟,伍倩,冯尧,叶松菩. 云南26种石斛种质资源的形态分类与亲缘关系. 江苏农业科学. 2025(01): 191-200 .
    2. 陈小玲,黄佳维,陈前程,杨碧云,余松金. 石斛兰遗传育种和栽培技术研究进展. 北方园艺. 2025(06): 130-135 .
    3. 江荣慧,杨焱冰,颜凤霞,田凡,许志高,王莲辉. 3种杂交石斛种子无菌播种快繁技术. 贵州林业科技. 2024(03): 13-19 .
    4. 刘靓,庄卫东,马晓娟,尤桂春,汤红玲,陈品品. 春石斛种质资源的表型性状及聚类分析. 热带农业科学. 2023(03): 1-10 .
    5. 崔学强,黄昌艳,邓杰玲,李先民,李秀玲,张自斌. 基于SLAF-seq技术的石斛兰SNP标记开发及亲缘关系分析. 生物技术通报. 2023(06): 141-148 .
    6. 彭婵,张新叶,刘宗坤,马林江,陈慧玲. 石斛属植物SSR分子标记的研究进展. 中国农学通报. 2022(13): 36-40 .
    7. 刘怡,王玥瑶,杨柳青,操赛雨,燕鑫,何碧珠,郭梨锦. 天宫石斛快繁技术研究. 种子. 2022(07): 138-143+149 .
    8. 崔学强,唐璇,黄昌艳,邓杰玲,李秀玲,卢家仕,张自斌. 基于iPBS标记的石斛兰种质资源遗传多样性分析及DNA指纹图谱构建. 热带作物学报. 2021(02): 317-324 .
    9. 杨红旗,许兰杰,李磊,董薇,梁慧珍,郝仰坤. 我国石斛新品种选育进展、存在问题及发展对策. 中国种业. 2021(11): 26-30 .
    10. 李娜,杨蕾蕾,陈朋,李凌飞. 蜻蜓石斛类原球茎的诱导与植株再生系统建立. 植物生理学报. 2021(12): 2387-2392 .
    11. 李桂琳,姜艳,刘林,李泽生,高燕,郭彩留,周侯光. 5种石斛花器官特性及人工授粉研究. 热带农业科技. 2019(04): 32-37+44 .

    Other cited types(2)

Catalog

    Article views PDF downloads Cited by(13)

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return