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  1. NTU Theses and Dissertations Repository
  2. 理學院
  3. 心理學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/64856
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor徐永豐
dc.contributor.authorChing-Lan Chinen
dc.contributor.author經景蘭zh_TW
dc.date.accessioned2021-06-16T23:02:26Z-
dc.date.available2012-08-10
dc.date.copyright2012-08-10
dc.date.issued2012
dc.date.submitted2012-08-07
dc.identifier.citationAitken, R. C. (1969). Measurement of feelings using visual analogue scales. Proceedings of the Royal Society of Medicine, 16(1), 1-34.
Brand, Y., & Hohmann, V. (2002). An adaptive procedure for categorical loudness scaling. Journal of the Acoustical Society of America, 112(4), 1597-1604.
Chen, Y.-H., & Hsu, Y.-F. (2010). Convergence of non-parametric adaptive threshold estimation in the yes-no task. Chinese Journal of Psychology, 40, 343-367.
Dai, H. (1995). On measuring psychometric functions: A comparison of the constant-stimulus and adaptive up-down methods. Journal of the Acoustical Society of America, 98(6), 3135-3139.
Dixon, W. J., & Mood, A. M. (1948). A method for obtaining and analyzing sensitivity data. Journal of Statistical Association, 43(241), 109-126.
Doble, C. W., Falmagne, J.-C., & Berg, B. G. (2003). Theoretical note: Recasting (the near-miss to) Weber’s law. Psychological Review, 110(2), 365-375.
Faes, L., Nollo, G., Ravelli, F., Ricci, L., Vescovi, M., Turatto, M., et al. (2007). Small-sample characterization of stochastic approximation staircase in forced-choice adaptive threshold estimation. Perception & Psychophysics, 69(2), 254-262.
Freyd, M. (1923). The graphic rating scale. Journal of Educational Psychology, 14(2), 83-102.
Garcia-Perez, M. A. (1998). Forced-choice staircases with fixed step sizes: Asymptotic and small-sample properties. Vision Research, 38(12), 1861-1881.
Garcia-Perez, M. A. (2001). Yes-no staircases with fixed step sizes: Psychometric properties and optimal setup. Optometry and Vision Science, 78(1), 56-64.
Garcia-Perez, M. A. (2002). Properties of some variants of adaptive staircases with fixed step sizes. Spatial Vision, 15(3), 303-321.
Garcia-Perez, M. A., & Alcala-Quintana, R. (2005). Sampling plans for fitting the psychometric function. Spanish Journal of Psychology, 8(2), 256-289.
Garcia-Perez, M. A. (2010). Denoising forced-choice detection data. British Journal of Mathematical and Statistical Psychology, 63(1), 75-100.
Hayes, M. H. S., & Patterson, D. G. (1921). Experimental development of the graphical rating method. Psychological Bulletin, 18, 98-99.
Hesse, A. (1986). Comparison of several psychophysical procedures with respect to threshold estimates, reproducibility and efficiency. Acustica, 59, 263-273.
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Kaernbach, C. (1991). Simple adaptive testing with the weighted up–down method. Perception & Psychophysics, 49(3), 227-229.
Kaernbach, C. (2001). Adaptive threshold estimation with unforced-choice tasks. Perception & Psychophysics, 63(8), 1377-1388.
Klein, S. A. (2001). Measuring, estimating, and understanding the psychometric function: A commentary. Perception & Psychophysics, 63(8), 1421-1455.
Lapid, E., Ulrich, R., & Rammsayer, T. (2008). On estimating the difference limen in duration discrimination tasks: A comparison of the 2 AFC and reminder task. Perception & Psychophysics, 70(2), 291-305.
Leek, M. R. (2001). Adaptive procedures in psychophysical research. Perception & Psychophysics, 63(8), 1279-1292.
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Parkin, D., & Devlin, N. (2006). Is there a case for using visual analogue scale valuations in cost utility analysis? Health Economics, 15(7), 653-664.
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dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/64856-
dc.description.abstract在心理物理學中,無母數適測方法可應用於測量偵測與區辨閾值。在閾值研究中,多數研究使用兩選項強迫選擇作業(2-alternative forced-choice paradigm),配合此作業,受試者必須從兩個選項之中強迫選出包含目標刺激者或刺激強度較大者。近來,有一些學者開始討論配合無母數適測方法進行實驗,且提供受試者更多的反應選項來收集受試者對反應的信心,透過收集反應的信心能夠增進閾值或參數估計的效率(Kaernbach, 2001; Klein, 2001; Garcia-Perez, 2010)。
在本篇研究中,將選用無母數適測方法中之「上下加權調整法」(weighted up-down procedure)進行實驗,並使用反應工具─鍵盤或視覺類比量尺(visual analogue scale)─配合兩、三或四點之反應信心量尺來估計區辨閾值,比較不同反應信心量尺之閾值估計效率。另一方面,本篇研究也使用預先選定刺激強度之非適測方法進行閾值估計,用以比較上下加權調整法與非適測方法兩者在不同反應信心量尺中閾值估計的一致性。
結果顯示,以非適測方法估計結果為基準,上下加權調整法在不同反應信心量尺中,閾值估計都有些微偏差,支持過去模擬研究之結論。另外,單看上下加權調整法在不同反應信心量尺中之閾值估計,結果顯示,三或四點之反應信心量尺在估計效率上些微勝過兩點。最後,視覺類比量尺作為反應工具需要配合較多點數之反應信心量尺,才能得到與鍵盤反應一致之估計結果。
zh_TW
dc.description.abstractIn the psychophysical research field, detection or discrimination thresholds can be estimated by non-parametric adaptive procedures. The two-alternative forced-choice paradigm is commonly used for the experiment. In this paradigm, participants have to choose the alternative that contains the target stimulus. Recently, some researchers conducted psychophysical experiments using non-parametric adaptive procedures that incorporate the confidence rating of responses from participants. The efficiency of thresholds and parameters estimations was enhanced by the confidence rating of responses (Kaernbach, 2001; Klein, 2001; Garcia-Perez, 2010).
In this thesis, the weighted up-down procedure, a non-parametric adaptive procedure, was used to conduct experiments. Two response tools - keyboard and visual analogue scale — and the confidence rating of two-, three-, and four-response options were used to collect responses, comparing the efficiency of discrimination threshold estimations among different options of the confidence rating. We also used a non-adaptive procedure to measure the thresholds and tested the consistency of threshold estimations between the non-adaptive and weighted up-down procedures.
To conclude, threshold estimations by the weighted up-down procedure were biased compared to the estimations by the non-adaptive procedure. And this result was consistent with previous simulation studies. The results in the weighted up-down procedure showed that tasks with three-, and four-response options were more efficient methods on estimating thresholds than the task with the two-response option. Moreover, threshold estimations by the visual analogue scale were inconsistent with those with keyboard, unless the former was incorporated with more response options of confidence rating.
en
dc.description.provenanceMade available in DSpace on 2021-06-16T23:02:26Z (GMT). No. of bitstreams: 1
ntu-101-R99227111-1.pdf: 1246614 bytes, checksum: 48b9d8f8fa1cfc90c18711577ec615aa (MD5)
Previous issue date: 2012
en
dc.description.tableofcontents誌謝 i
中文摘要 ii
Abstract iii
Introduction 1
Weighted Up-down Procedure (WUD) 5
Unforced-choice WUD (UWUD) and De-noising Force-choice Procedure (DFC) 6
Increasing the Number of Response Options 9
Visual Analogue Scale (VAS) 11
Experiments 14
Participants 14
Apparatus and Stimuli 14
Procedure 15
The Non-adaptive procedure with different response options. 15
WUD with different response options 18
Results 23
Threshold Estimation 23
Biased estimations in WUD-VAS tasks 28
Biased estimations in WUD-Keyboard tasks 33
Standard Deviation of Threshold Estimation 36
Summary 44
References 46
dc.language.isoen
dc.subject無母數適測方法zh_TW
dc.subject上下加權調整法zh_TW
dc.subject視覺類比量尺zh_TW
dc.subject區辨閾值zh_TW
dc.subjectdiscrimination thresholden
dc.subjectnon-parametric adaptive procedureen
dc.subjectweighted up-down procedureen
dc.subjectvisual analogue scaleen
dc.title無母數適測方法結合信心水準評定在閾值研究之應用zh_TW
dc.titleAn Application of Confidence Rating for a Non-parametric Adaptive Procedure: A Weighted Up-down Procedure with Visual Analogue Scaleen
dc.typeThesis
dc.date.schoolyear100-2
dc.description.degree碩士
dc.contributor.oralexamcommittee姚開屏,袁之琦
dc.subject.keyword無母數適測方法,上下加權調整法,視覺類比量尺,區辨閾值,zh_TW
dc.subject.keywordnon-parametric adaptive procedure,weighted up-down procedure,visual analogue scale,discrimination threshold,en
dc.relation.page49
dc.rights.note有償授權
dc.date.accepted2012-08-07
dc.contributor.author-college理學院zh_TW
dc.contributor.author-dept心理學研究所zh_TW
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