博碩士論文 100521070 詳細資訊




以作者查詢圖書館館藏 以作者查詢臺灣博碩士 以作者查詢全國書目 勘誤回報 、線上人數:32 、訪客IP:52.14.240.57
姓名 何明珊(Ming-Shan Ho)  查詢紙本館藏   畢業系所 電機工程學系
論文名稱 使用獨立成份分析法於視覺誘發紅外光血流反應分析
(Analysis of Visual-Related Near-Infrared Response Using Independent Component Analysis)
相關論文
★ 使用梳狀濾波器於相位編碼之穩態視覺誘發電位腦波人機介面★ 應用電激發光元件於穩態視覺誘發電位之腦波人機介面判斷
★ 智慧型手機之即時生理顯示裝置研製★ 多頻相位編碼之閃光視覺誘發電位驅動大腦人機介面
★ 以經驗模態分解法分析穩態視覺誘發電位之大腦人機界面★ 利用經驗模態分解法萃取聽覺誘發腦磁波訊號
★ 明暗閃爍視覺誘發電位於遙控器之應用★ 使用整體經驗模態分解法進行穩態視覺誘發電位腦波遙控車即時控制
★ 使用模糊理論於穩態視覺誘發之腦波人機介面判斷★ 利用正向模型設計空間濾波器應用於視覺誘發電位之大腦人機介面之雜訊消除
★ 智慧型心電圖遠端監控系統★ 使用隱馬可夫模型於穩態視覺誘發之腦波人機介面判斷 與其腦波控制遙控車應用
★ 使用類神經網路於肢體肌電訊號進行人體關節角度預測★ 使用等階集合法與影像不均勻度修正於手指靜脈血管影像切割
★ 應用小波編碼於多通道生理訊號傳輸★ 結合高斯混合模型與最大期望值方法於相位編碼視覺腦波人機介面之目標偵測
檔案 [Endnote RIS 格式]    [Bibtex 格式]    [相關文章]   [文章引用]   [完整記錄]   [館藏目錄]   至系統瀏覽論文 ( 永不開放)
摘要(中) 近年來,隨著腦造影技術的進步,大腦的探索成為熱門的研究議題。尤其是非侵入式腦影像的發展,更進一步幫助人們了解腦部特定區域運作與其主要功能之間的關係。而近紅外光譜(Near-infrared spectroscopy,NIRS)是近年來受到注視的一種非侵入式腦影像技術,因為其具有靈敏的時間解析度及高空間解析度,並且能在開放空間中做動態實驗量測不同作業下的血流反應,因此受到許多研究團隊的採用。
本研究提出一套運用獨立成份分析法(Independent Componenet Analysis, ICA)於視覺誘發血流訊號的紅外光光譜分析方法,藉由獨立成份分析法,多通道紅外光血流訊號被分解成許多獨立成份(Independent component,IC),每一個獨立成份接著與經由傳統平均方法所建立樣版模型訊號進行比對,選擇適當的獨立成份,進一步進行訊號重建,萃取出與視覺刺激相關的紅外光血流訊號。
本研究量測受視覺刺激誘發的紅外光訊號,並比較不同頻率和不同大小視覺刺激源的訊號。實驗結果證實,獨立成份分析法可有效的分離萃取出視覺訊號,進而提升訊號訊雜比。
摘要(英) With the advanced developments of brain imaging technologies, brain exploration has become a popular research field in recent years. Especially, the developments in noninvasive brain imaging techniques enable people to understand the functions of specific brain regions and the connectivities among different brain areas. Near infrared spectroscopy (NIRS) is a novel non-invasive brain imaging tool which measures hemodynamic response in accordance with subject’s specific performing tasks. It has the advantages of high temporal and high spatial resultions, and capability of being operated in open-space environment. Therefore, the NIRS has been chosen as an important tool by several research group for functional brain studies.
In this study, we have proposed an independent component (ICA) – based analysis method for extracting visual-induced near infrared oxygen and deoxygen hemodynamic signals. With ICA, the multi-channel NIRS signals were first decomposed into a series of independent components (IC), and these ICs were correlated with a signal template, generated from traditional averaging method. Those ICs, which had high correlation values, were chosen as task-related components for constructing noise-suppressed hemodynamic response.
This thesis studied visual-related near-infrared responses under visual stimuli with distinct sizes and frequencies. Our study results have shown the ICA is an effective tool to improve the signal-to-noise ratio (SNR) in visual-related NIRS signals.
關鍵字(中) ★ 近紅外光譜
★ 獨立成份分析法
★ 視覺誘發血流反應
關鍵字(英) ★ Near-infrared spectroscopy (NIRS)
★ Independent Component Analysis (ICA)
★ visual induced hemodynamic response
論文目次 目錄
中文摘要 I
英文摘要 II
致謝 III
目錄 IVI
圖目錄 VI
表目錄 IX
第一章、緒  論 1
1-1  非侵入式醫學影像技術 1
1-1-1  正子斷層造影 1
1-1-2  腦電圖 1
1-1-3  腦磁圖 2
1-1-4  磁振造影 2
1-1-5  近紅外光譜 2
1-1-6 小結 3
1-2  研究動機 3
1-3  文獻回顧 3
1-4  研究目的 4
1-5  論文架構 4
第二章、理論介紹 5
2-1  大腦與視覺系統 5
2-1-1 大腦結構與功能 5
2-1-2 視覺系統 7
2-2  近紅外光光譜學 10
2-3  Beer-Lambert Law 12
2-4  獨立成份分析法 14
2-4-1 獨立成份分析法理論 14
2-4-2 獨立成份分析法演算流程 16
第三章、材料與方法 23
3-1  儀器設備 23
3-1-1 近紅外光量測設備 23
3-1-2 近紅外光量測光極帽 25
3-1-3 視覺刺激來源 28
3-2  系統架構 28
3-3  實驗設計 28
3-4  訊號分析 30
3-4-1 訊號前處理 31
3-4-2 建立血氧濃度反應模型 33
3-4-3 獨立成份分析法 37
第四章、結果與討論 39
4-1  實驗結果 39
4-1-1 ICA分析結果 39
4-1-2 Topography比較 42
4-1-3 視覺刺激源圖形大小比較 44
4-1-4 視覺刺激頻率比較 44
第五章、結論與未來展望 45
參考文獻 46
參考文獻 〔1〕 Wikipedia : Positron Emission Tomography,http://en.wikipedia.org/wiki/Positron_emission_tomography
〔2〕 吳峻名,擴散光學斷層掃描術:系統設計以及臨床量測研究,國立台灣大學碩士論文,民國96年。
〔3〕 科學人雜誌:何謂腦波,http://sa.ylib.com/MagCont.aspx?Unit=easylearn&id=1820
〔4〕 Wikipedia : 神經成像,http://zh.wikipedia.org/wiki/%E7%A5%9E%E7%BB%8F%E6%88%90%E5%83%8F
〔5〕 台北榮民總醫院教學研究部-整合性腦功能研究小組:腦磁波儀,http://ibru.vghtpe.gov.tw/meg.htm
〔6〕 Wikipedia : 核磁共振成像,https://zh.wikipedia.org/wiki/%E6%A0%B8%E7%A3%81%E5%85%B1%E6%8C%AF%E6%88%90%E5%83%8F
〔7〕 Wikipedia : 功能性磁振造影,http://zh.wikipedia.org/wiki/%E5%8A%9F%E8%83%BD%E6%80%A7%E7%A3%81%E5%85%B1%E6%8C%AF%E6%88%90%E5%83%8F
〔8〕 台北榮民總醫院教學研究部-整合性腦功能研究小組:近紅外光光譜儀, http://ibru.vghtpe.gov.tw/fNIRS.htm
〔9〕 Lloyd-Fox S., Blasi, Elwell C.E., “Illuminating the developing brain: The past, present and future of functional near infrared spectroscopy”, Neuroscience & Biobehavioral Reviews, vol.34, pp. 269-284, 2010.
〔10〕Jöbsis F.F., “Noninvasive, infrared monitoring of cerebral and myocardial oxygen sufficiency and circulatory parameter ”, Science , vol.198, pp. 1264-1267, 1977.
〔11〕Yu G., Durduran T., Lech G., Zhou C., Chance B., Yodh A.G., “Time dependent blood flow and oxygenation in human skeletal muscles by noninvasive near-infrared diffuse optical spectroscopies ” , Journal of Biomedical Optics, vol.10, 2005.
〔12〕Chance B., Zhuang Z., UnAh C., Alter C., Lipton L., “Cognition-activated low-frequency modulation of light absorption in human brain ”, Proceedings of the National Academy of Sciences of the United States of America, vol. 90 ,pp. 3770-3774, 1993.
〔13〕Hoshi Y. and Tamura M., “Detection of dynamic changes in cerebral oxygenation coupled to neuronal function during mental work in man”, Neuroscience letter, vol. 150, pp. 5-8, 1993.
〔14〕Shimada S., Hiraki K., Matsuda G., and Oda I. , “Decrease in prefrontal hemoglobin oxygenation during reaching tasks with delayed visual feedback : A near-infrared spectroscopy study”, Brain Rearch Cognitive Brain Research, vol.20, pp.480-490, 2004.
〔15〕 Meek J.H., Elwell C.E., Khan M.J., Romaya J., Wyatt J.D., Delpy D.T., and Zeki, S., “Regional changes in cerebral hemodynamics as a result of a visual stimulus measured by near infrared spectroscopy”, Proceedings of Royal Societyof London, vol.261, pp. 351–356, 1995.
[16〕 Heekeren H. R., Obrig H., Wenzel R., Eberle K., Ruben J., Villringer K., Kurth R., and Villringer A.,“Cerebral haemoglobin oxygenation during sustained visual stimulation - a near-infrared spectroscopy study”, Philosophical Transactions: Biological Sciences, vol.352, pp.743–750, 1997.
[17]Jasdzewski G., Strangman G., Wagner J., Kwong K.K., Poldrack R. A., Boas D.A., “Differences in the hemodynamic response to event-related motor and visual paradigms as measured by near-infrared spectroscopy”, NeuroImage, vol.20, pp. 479–488, 2003.
[18]Sato H., Kiguchi M., Kawaguchi F., Maki A., ”Practicality of wavelength selection to improve signal-to-noise ratio in near-infrared spectroscopy”, NeuroImage, vol.21, pp. 1554–1562, 2004.
〔19〕Wikipedia : 腦,http://zh.wikipedia.org/wiki/%E8%84%91
[20]Wikipedia : 白質,http://zh.wikipedia.org/wiki/%E7%99%BD%E8%B3%AA
[21]Wikipedia : 基底核,http://zh.wikipedia.org/wiki/%E5%9F%BA%E5%BA%95%E6%A0%B8.
[22]Wikipedia : 大腦,http://zh.wikipedia.org/wiki/%E5%A4%A7%E8%84%91
[23]新化高中生物網路教室 : 大腦,http://210.60.246.140/bio/2010/PDF/6-3(2).pdf
[24]Bear M.F., Connor B.W., and Paradiso M.A., Neuroscience Exploring the Brain,3/e, Lippincott Williams & Wilkins, 2006
〔25〕Seeley R.R., Tate P., and Stephens T.D., Essentials of Anatomy and Physiology, 6/e, Boston: McGraw-Hill, 2007.
[26]Measuring Vegetation Health: Near Infrared and the Electromagnetic Spectrum, http://mvh.sr.unh.edu/mvhtools/near_ir.htm..
[27]Son I.Y., Yazıcı B., “Near Infrared Imaging and Spectroscopy for Brain Activity Monitoring.”, Advances in Sensing with Security Applications NATO Security Through Science Series, vol.2, pp. 341-372, 2006.
[28]Wikipedia : Beer–Lambert law,http://en.wikipedia.org/wiki/Beer%27s_Law
[29]Hyvärinen. A., “Fast and Robust Fixed-Point Algorithms for Independent Component Analysis”, IEEE Transactions on Neural Networks, vol. 10, no. 3, pp.626-634, 1999.
〔30〕Hyvärinen A. and Oja E., “Independent Component Analysis: Algorithms and Applications ”, Neural Networks, vol. 13, no. 4, pp.411-430, 2000.
〔31〕Comon P., “Independent Component Analysis, a new concept ?”, Signal Processing Elsevier, vol.36, pp.287-314, 1994.
〔32〕Yates R.D. and Goodman D.J., “Probility and Stochastic Process”, John Wiley & Sons, Inc., New York, 1999.
〔33〕NIRx Medical Technologies: NIRScout , http://www.nirx.net/imagers/nirscout.
〔34〕Malmivuo J. and Plonsey R., Bioelectromagnetism: Principles and Applications of Bioelectric and Biomagentic Fields, Oxford University Press, USA, 1955.
〔35〕Wylie G.R., Graber H.L., Voelbel G.T., Kohl A.D., DeLuca J., Pei Y., Xu Y., Barbour R.L., “ Using co-variations in the Hb signal to detect visual activation:A near infrared spectroscopic imaging study”, NeuroImage, vol.47, no. 2, pp. 473–481, 2009.
〔36〕鄧華婷,應用獨立成份分析法於大腦運動區近紅外光譜分析,國立中央大學碩士論文,民國101年。
指導教授 李柏磊(Po-Lei Lee) 審核日期 2013-8-9
推文 facebook   plurk   twitter   funp   google   live   udn   HD   myshare   reddit   netvibes   friend   youpush   delicious   baidu   
網路書籤 Google bookmarks   del.icio.us   hemidemi   myshare   

若有論文相關問題,請聯絡國立中央大學圖書館推廣服務組 TEL:(03)422-7151轉57407,或E-mail聯絡  - 隱私權政策聲明