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  1. NTU Theses and Dissertations Repository
  2. 工學院
  3. 醫學工程學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/49084
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor翁昭旼
dc.contributor.authorChen-Yu Kaoen
dc.contributor.author高震育zh_TW
dc.date.accessioned2021-06-15T11:15:33Z-
dc.date.available2016-08-26
dc.date.copyright2016-08-26
dc.date.issued2016
dc.date.submitted2016-08-19
dc.identifier.citation[1]David F.Walnut ,An Introduction To Wavelet Analysis
[2] John Wiley, Biomedical signal processing and Signal modeling
[3] John Vann Jones, Differentiation and Ivestigation of Primary Versus Secondary Hypertension(Cushing Reflex)
[4] C.J DICKINSON, Reappraisal of the Cushing reflex: the most powerful neural blood preesure stabilizing system
[5] Data Mining, Concept and Techniques, Jiawei Han and Micheline Kamber
http://www.cs.sfu.ca
[6] Cushing, H (1901). 'Concerning a definite regulatory mechanism of the vasomotor centre which controls blood pressure during cerebral compression'
[7] Matlab DWT
http://www.mathworks.com/help/wavelet/ref/dwt.html
[8] Beginning Node.js
[9] EMS Recap:Intracranial Pressure and the Cushing Reflex
http://www.emsworld.com/article/10453662/intracranial-pressure-and-cushing-response
[10] Understanding the Cushing Reflex
http://www.jems.com/articles/2007/07/understanding-cushing-reflex.html
[11] Ogilvy, CS; Dubois AB(1987). “Effect of increased interacranial pressure on blood pressure,heart rate,respiration and catecholamine levels in neonatal and adult rabbits”
[12] Fodstad H, Kelly PJ, Buchfelder M(November 2006). “History of the cushing reflex”
[13] Dagal, A; Lam AM(April 2011). “Cerebral blood flow and the injured brain: how should we monitor and manipulate it?”
[14] Wan, WH; BT Ang; E Wang(Jan 7 ,2008) “The cushing response: A case for a review of its role as a physiological reflex”
[15] Kalmar, AF; JV Aken; J Caemaert; et al.(2005). “Value of Cushing Reflex as warning sign for brain ischemia during neuroendoscopy”
[16] Boudraa, A.O.; Cexus, J.C.(2007). “EMD-Based Signal Filtering”
[17] Paul S. Addison, The Illustrated Wavelet Transform Handbook
[18] B. Boashash, “Time-Frequency Signal Analysis and Processing-A Comprehensive Reference”
[19] Intracranial Pressure Monitoring
http://emedicine.medscape.com/article/1829950-overview
[20] Increased Intracranial Pressure
http://www.healthline.com/health/increased-intracranial-pressure
[21] 24-hour ambulatory blood pressure monitoring
http://www.bloodpressureuk.org/BloodPressureandyou/Medicaltests/24-hourtest
[22] Ambulatory Blood Pressure Measurement, What is the International Consensus?
[23] Ambulatory blood pressure monitoring
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/49084-
dc.description.abstract庫欣氏反射(也被稱為血管升壓響應、庫欣效果、庫欣現象、庫欣反映)是一種生理神經系統對於增加的顱內壓(ICP)的響應,其結果是會導致三種情況的產生,分別為血壓升高伴隨著心跳速率增高、心跳速率降低、呼吸不規則的三種情況發生,庫欣氏反射通常是見於急性顱腦損傷的終端階段,除此之外,庫欣氏反射也是判別移植的器官是否出現排斥現象的眾多方法之一,一但全部情況都發生了就表明了可能即將會發生腦疝,它是在1901 年第一次由哈維庫欣醫生所發現。
本研究利用了小波轉換,以symmlet 4 當作其母小波,使用了一維離散的小波轉換對訊號進行濾波與增強特徵,先做庫欣氏反應的證實,最後再從趨勢線去抓取像是心跳速率,血壓那些的特徵,期望能從這些比較輕度侵入式的訊號中去預測出病人目前顱內壓的狀態。
zh_TW
dc.description.abstractCushing reflex (also known as the vasopressor response, the effect of Cushing, Cushing phenomenon, Cushing reaction) is a biological nervous system for increased intracranial pressure (ICP) in response, and the results will lead to three cases generation, which are high blood pressure with high heart rate, reduce heart rate, and irregular breathing.
Cushing's reflex is usually found in the terminal stage of acute brain injury;in addition, Cushing's reflection is one of many ways to determine whether the transplanted organ appears exclusion phenomenon. When a whole case takes place ,it shows that the hernia may be going to happen. It was first described in detail by American neurosurgeon Harvey Cushing in 1901.
In this study, the researcher used the wavelet to calculate patient signals. With symmlet 4 as a mother wavelet, the researcher used a one-dimensional discrete wavelet conversion of signal to filter and enhance features.
First, the researcher had to confirm Cushing reflex. Finally, the researcher derived the features like heart rate or blood pressure from the trend line and expected it can predict the trend of intracranial pressure state through these less-invasive signals.
en
dc.description.provenanceMade available in DSpace on 2021-06-15T11:15:33Z (GMT). No. of bitstreams: 1
ntu-105-R03548054-1.pdf: 2088547 bytes, checksum: 3eeee01b6ccdefd5413a6decb2acbe85 (MD5)
Previous issue date: 2016
en
dc.description.tableofcontents中文摘要 I
ABSTRACT II
目錄 III
圖目錄 V
表目錄 VII
第一章 緒論 1
1-1研究背景與動機 1
1-2研究目的 3
1-3研究流程 4
第二章 相關文獻探討 6
2-1訊號分析 6
2-2庫欣氏反應 8
第三章 研究材料 10
3-1 現實加護病房資料(ICU DATA) 10
3-2 研究平台及架構 12
3-2-1 NoSQL資料庫 12
3-2-2 MongoDB 13
3-2-3 系統架構 15
第四章 研究方法 16
4-1 小波轉換 16
4-2 相關係數 23
第五章 資料呈現與數據結果 25
5-1資料呈現 25
5-1-1 首頁 25
5-1-2 CSV檔讀取 26
5-1-3 分析資料 27
5-1-4 呈現結果資料 29
5-1-5 運算趨勢線關聯性 30
5-1-6 訊號分析與趨勢線呈現 32
5-2病人資料分析結果 34
5-2-1 不處於庫欣氏反應下的階段:顱內壓(ICPm)與血壓(ABPm)的關係 34
5-2-2 庫欣氏反應第一階段:顱內壓(ICPm)與血壓(ABPm)的關係 36
5-2-3 庫欣氏反應第二階段:顱內壓(ICPm)與心跳速率(HR)的關係 37
5-2-4 庫欣氏反應第三階段:呼吸(HR)不規則 41
5-2-5 預測顱內壓 43
第六章 結論與展望 48
6-1結論 48
6-1-1 庫欣氏反應第一階段 48
6-1-2 庫欣氏反應第二階段 48
6-1-3 庫欣氏反應第三階段 49
6-2未來展望 50
dc.language.isozh-TW
dc.subject小波轉換zh_TW
dc.subject生理訊號zh_TW
dc.subject庫欣氏反射zh_TW
dc.subjectphysiological signal dataen
dc.subjectWaveleten
dc.subjectCushing Reflexen
dc.title加護病房生理訊號相關性分析zh_TW
dc.titleCorrelation Analysis of
Intensive Care Unit physiological signal data
en
dc.typeThesis
dc.date.schoolyear104-2
dc.description.degree碩士
dc.contributor.coadvisor蔣以仁
dc.contributor.oralexamcommittee陳中明
dc.subject.keyword生理訊號,庫欣氏反射,小波轉換,zh_TW
dc.subject.keywordphysiological signal data,Cushing Reflex,Wavelet,en
dc.relation.page52
dc.identifier.doi10.6342/NTU201603426
dc.rights.note有償授權
dc.date.accepted2016-08-21
dc.contributor.author-college工學院zh_TW
dc.contributor.author-dept醫學工程學研究所zh_TW
顯示於系所單位:醫學工程學研究所

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