跳到主要內容

臺灣博碩士論文加值系統

(216.73.216.246) 您好!臺灣時間:2026/07/01 06:43
字體大小: 字級放大   字級縮小   預設字形  
回查詢結果 :::

詳目顯示

: 
twitterline
研究生:謝奇帆
研究生(外文):Chi-Fan Hsieh
論文名稱:針刺心包經內關穴對脈波與自主神經系統之影響
論文名稱(外文):Effects of Acupuncture at Neiguan (PC 6) of the Pericardial Meridian on Pulse Wave and Autonomic Nervous System
指導教授:張翔張翔引用關係
指導教授(外文):Shyang Chang
學位類別:碩士
校院名稱:國立清華大學
系所名稱:電機工程學系
學門:工程學門
學類:電資工程學類
論文種類:學術論文
論文出版年:2008
畢業學年度:96
語文別:中文
論文頁數:64
中文關鍵詞:針灸脈波脈壓分數布朗運動分形維度自主神經系統
外文關鍵詞:acupuncturepulse wavepulse pressurefractional Brownian motionfractal dimensionautonomic nervous system
相關次數:
  • 被引用被引用:1
  • 點閱點閱:2385
  • 評分評分:
  • 下載下載:50
  • 收藏至我的研究室書目清單書目收藏:0
  本研究之目的在於探討人體內脈波(Pulse Wave)與自主神經系統(Autonomic Nervous System) 於針刺內關穴之前、之中、之後的動態變化與關係。
  此次研究共有三位沒有神經疾病的自願者參與,實驗一共進行了十五次。為了降低人為因素之影響,實驗之受測者均處於閉目但意識清醒的輕鬆狀態。實驗是將針垂直刺入內關穴,並以手動操作之方式(捻針)達到得氣狀態,三十分鐘後將針拔出。實驗記錄包括針刺前、中、後的生理電訊號,包括:心電圖(Electrocardiogram, ECG)、橈動脈(Radial Artery)脈壓及足背動脈(Dorsal Pedis Artery)脈壓。
  本研究之所以選擇內關穴是因為它與心血管循環系統有關,而且在中醫的臨床治療上,內關穴對於心血管疾病的治療過程具有一定程度的療效。本研究希望從內關穴出發,探討針炙對人體的影響,並藉此了解中醫在針炙治療上的生理變化與其意義。
  為了研究脈波與自主神經系統的關係,我們將針刺中及針刺後的所得到的數據與基線資料(針刺前)進行分析並比較之。分析的方法分為以下三類:統計分析、頻譜分析、分形維度分析。每一種的分析方法對於本研究均有顯著的意義。
  本研究的實驗結果如後所示:第一、脈波在頻譜上的明確變化可以證明針灸具有影響自主神經系統的能力;第二、人體內不同部分的脈壓變化趨勢於針灸刺激後並不會完全同步;第三、脈波的分形維度於針灸刺激後大多會下降。我們認為這些影響均是自主神經系統為了達到人體內的生理平衡而做的調控。未來將會繼續研究這些生理現象的意義。
摘要………………………………………………………i
致謝………………………………………………………ii
目錄………………………………………………………ii
第一章 簡介……………………………………………1
第二章 研究方法與實驗配置…………………………2
第三章 實驗結果與討論………………………………3
第四章 實驗結論………………………………………4
第五章 未來研究方向…………………………………5
英文附錄…………………………………………………6
[1] Z. Y. Li, K. Jiao, M. Chen, C. T. Wang, “Reducing the effect of driving fatigue with magnitopuncture,” Accid Anal Prev, vol. 36, pp. 501–505, 2004.
[2] Z. Li, C. Wang, A. F. Mak, and D. H. Chow, “Effects of acupuncture on heart rate variability in normal subjects under fatigue and non-fatigue state,” Eur J Appl Physiol, vol. 94, pp. 633-640, 2005.
[3] L. C. Cheung, A. Y. Jones, “Effect of Acu-TENS on recovery heart rate after treadmill running exercise in subjects with normal health,” Complement Ther Med, vol. 15, pp. 109-144, 2007.
[4] J. C. Longhurst, “Acupuncture’s beneficial effects on the cardiovascular system,” Prev Cardiol, vol. 1, pp. 21-23, 1998.
[5] Y. J. Chiu, A. Chi, I. A. Reid, “Cardiovascular and endocrine effects of acupuncture in hypertensive patients,” Clin ExpHypertens, vol. 19, pp. 1047-1063, 1997.
[6] Y. Syuu, H. Matsubara, S. Hosogi, H. Suga. “Pressor effect of electroacupuncture on hemorrhagic hypotension,” Am J Physiol Regul Integr Comp Physiol, vol. 285, pp. 1446-1452, 2003.
[7] N. Weil, M. Friger, Y. Press, D. Tror. “The Effect of Acupuncture on Blood Pressure in Hypertensive Patients Treated in a Complementary Medicine Clinic,” Integrative Medicine Insights, vol. 2, pp. 1-5, 2007.
[8] T. Williams, K. Mueller, M. W. Cornwall, “Effect of Acupuncture-Point Stimulation on Diastolic Blood-Pressure in Hypertensive Subjects: a preliminary study,” Physical Therapy, vol. 71, pp. 523-529, 1991.
[9] J. D. Wang, T. B. J. Kuo, and C. C. H. Yang, “An alternative method to enhance vagal activities and suppress sympathetic activities in humans,” Autonomic Neuroscience-Basic & Clinical, vol. 100, pp. 90-95, 2002.
[10] D. Tsunami, A. Colbert, Z. Lu, S. Pearson, J. McNames, R. Hammerschlag, “Physiologic Responses to Acupuncture Point Stimulation: A Pilot Study to Evaluate Methods and Instrumentation,” Proceedings of the 26th Annual International Conference of the IEEE EMBS, vol. 2, pp. 3611-3614, 2004.
[11] S. Chang, W. L. Chao, M. J. Chiang, S, J, Li, Y. T. Lu, C. M. Ma, S. H. Hsieh, “Effects of Acupuncture at Neiguan (PC 6) of the Pericardial Meridian on
Blood Pressure and Heart Rate Variability”, to be published in The Chinese Journal of Physiology.
[12] Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology, “Heart Rate Variability: Standards
of Measurements, Physiological Interpretation, and Clinical Use,” Circulation,
vol. 93, pp. 1043-1065, 1996.
[13] A. Malliani, M. Pagani, E. Lombardi, S. Cerutti, “Cardiovascular Neural Regulation Explored in the Frequency-Domain,” Circulation, vol. 84, pp. 482-492, 1991.
[14] N. Montano, T.G. Ruscone, A. Porta, F. Lombardi, M. Pagani, A. Malliani, “Power Spectrum Analysis of Heart-Rate-Variability to Assess the Changes in Sympathovagal Balance during Graded Orthostatic Tilt,” Circulation, vol. 90, pp. 1826-1831, 1994.
[15] M. Pagani, N. Montano, A. Porta, A. Malliani, F. M. Abboud, C. Birkett, V. K. Somers, “Relationship between spectral components of cardiovascular variabilities and direct measures of muscle sympathetic nerve activity in humans,” Circulation, vol. 95, pp. 1441-1448, 1997.
[16] D. Liao, R. W. Barnes, L. E. Chambless, R. J. Simpson Jr., P. Sorlie, G. Heiss, “Age, Race, and Sex-Differences in Autonomic Cardiac-Function Measured by Spectral-Analysis of Heart-Rate-Variability - the Aric Study.” Am J Cardiol, vol. 76, pp. 906-912, 1995.
[17] A.C. Guyton, J.E. Hall, Textbook of medical physiology, 11th ed, Elsevier Saunders, Philadelphia, 2006.
[18] D. Kaplan, L. Glass, Understanding nonlinear dynamics, Springer-Verlag New York, Inc, 1995.
[19] G. Henderson, E. Ifeachor, N. Hudson, C. Goh, N. Outram, S. Wimalaratna, C.D. Percio, F. Vecchio, “Development and Assessment of Methods for Detecting Dementia Using the Human Electroencephalogram,” IEEE Trans Biomed Eng, vol. 53, pp. 1557- 1568 ,2006.
[20] R. Ferenets, T. Lipping, A. Anier, V. Jantti, S. Melto, and S. Hovilehto, “Comparison of entropy and complexity measures for the assessment of depth of sedation,” IEEE Trans Biomed Eng, vol. 53, pp. 1067-1077, 2006.
[21] S. C. Liu and S. Chang, “Dimension estimation of discrete-time fractional Brownian motion with applications to image texture classification,” IEEE Trans Image Process, vol. 6, pp. 1176-1184, 1997.
[22] O. I. Craciunescu, S. K. Das, J. M. Poulson, and T. V. Samulski, “Three-dimensional tumor perfusion reconstruction using fractal interpolation functions,” IEEE Trans Biomed Eng, vol. 48, pp. 462-473, 2001.
[23] K. L. Chan, “Quantitative Characterization of Electron Micrograph Image Using Fractal Feature,” IEEE Trans Biomed Eng, vol. 42, pp. 1033-1037, 1995.
[24] T. E. Southard, K. A. Southard, J. R. Jakobsen, S. L. Hillis, and C. A. Najim, “Fractal dimension in radiographic analysis of alveolar process bone,” Oral Surg Oral Med Oral Pathol Oral Radiol Endod, vol. 82, pp. 569-576, 1996.
[25] S. Chang, S. J. Hu, W. C. Lin, “Fractal dynamics and synchronization of rhythms in urodynamics of female Wistar rats,” Journal of Neuroscience Methods, vol. 139, pp. 271-279, 2004.
[26] S. Chang, S. J. Li, M. J. Chiang, S. J. Hu, M. C. Hsyu, “Fractal Dimension Estimation via Spectral Distribution Function and Its Application to Physiological Signals.” IEEE Trans Biomed Eng, vol. 54, pp. 1895-1898, 2007.
QRCODE
 
 
 
 
 
                                                                                                                                                                                                                                                                                                                                                                                                               
第一頁 上一頁 下一頁 最後一頁 top