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完整後設資料紀錄
DC 欄位 | 值 | 語言 |
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dc.contributor.advisor | 彭志維(Chih-Wei Peng),郭德盛(Te-Son Kuo) | |
dc.contributor.author | Tzu-Cheng Hsu | en |
dc.contributor.author | 許自程 | zh_TW |
dc.date.accessioned | 2021-06-16T13:04:56Z | - |
dc.date.available | 2015-08-09 | |
dc.date.copyright | 2013-08-09 | |
dc.date.issued | 2013 | |
dc.date.submitted | 2013-08-05 | |
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[22] 許自程, 林穎聰, 郭德盛, 彭志維, '外尿道括約肌肌電圖用於偵測脊髓損傷鼠的膀胱狀態,' in 生物醫學工程科技研討會, 2012. [23] T. Hamilton and A. Sedra, 'Some new configurations for active filters,' Circuit Theory, IEEE Transactions on, vol. 19, pp. 25-33, 1972. [24] N. K. Swain, J. A. Anderson, A. Singh, M. Swain, M. Fulton, J. Garrett, et al., 'Remote data acquisition, control and analysis using LabVIEW front panel and real time engine,' in SoutheastCon, 2003. Proceedings. IEEE, 2003, pp. 1-6. [25] R. J. Tallarida and R. B. Murray, 'Area under a Curve: Trapezoidal and Simpson’s Rules,' in Manual of Pharmacologic Calculations, ed: Springer, 1986, pp. 77-81. [26] D. Newman, 'The distribution of range in samples from a normal population, expressed in terms of an independent estimate of standard deviation,' Biometrika, vol. 31, pp. 20-30, 1939. [27] T. Fawcett, 'An introduction to ROC analysis,' Pattern recognition letters, vol. 27, pp. 861-874, 2006. [28] C. E. Metz, 'Basic principles of ROC analysis,' in Seminars in nuclear medicine, 1978, pp. 283-298. [29] J. A. Hanley, 'Characteristic (ROC) Curvel,' Radiology, vol. 743, pp. 29-36, 1982. [30] G. Loeb, C. Zamin, J. Schulman, and P. Troyk, 'Injectable microstimulator for functional electrical stimulation,' Medical and Biological Engineering and Computing, vol. 29, pp. NS13-NS19, 1991. | |
dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/61523 | - |
dc.description.abstract | 脊髓損傷病人常會伴隨著膀胱與外尿道括約肌共濟失調之現象,造成排尿功能低落,排尿不淨,增加尿路感染之風險。若長時間處在此病癥下,也容易造成腎臟及輸尿管水腫和腎功能病變,更甚者,導致慢性腎衰竭。
電刺激神經調控為一種新的治療方向,可取代受損神經來調控膀胱排尿功能,而偵測膀胱狀態進而在適當的時間點給電就顯得相當重要。目前臨床上是以尿道動力學檢查來偵測膀胱狀態,如體外超音波量測膀胱體積,或尿道插管量測膀胱內壓;但體外超音波無法對電刺激調控即時回饋,患者也無法長期尿道插管。本研究希望以外尿道括約肌肌電圖做為即時偵測膀胱狀態之依據,經過自製五級濾波放大器,由NI USB-6212資料擷取卡送入以LabVIEW撰寫的演算法,以移動視窗的方式處理,維持演算法適當的靈敏度並減少時間延遲,建立一套即時偵測膀胱狀態的系統,並以正常及脊髓損傷大白鼠進行實驗。 由ROC實驗結果統計,以外尿道括約肌肌電圖偵測膀胱狀態,與真實排尿狀態相比,在正常鼠方面精確度高達97%,而在脊髓損傷鼠方面則為90.3%,兩者皆相較於以膀胱內壓作為判斷依據來的高,由此證實了以外尿道括約肌肌電訊號取代膀胱內壓,作為膀胱狀態即時偵測的可行性,並可搭配資料擷取卡數位輸出功能,將偵測結果做為功能性電刺激器觸發給電依據,以期能對脊髓損傷病人的排尿功能改善做出貢獻。 | zh_TW |
dc.description.abstract | Spinal cord injury is often accompanied with detrusor external urethral sphincter (EUS) dyssynergia, which may lead to low efficiency of micturition function and incomplete voiding, and increase the risk of urinary tract infection in the patients. Being under this symptom for a long period, a patient may also develop ureteral edema, renal damage, and even renal failure.
Electrical neural moderation is one of the new treatment directions. It can provide the function that the damaged nerve originally does and improve the voiding efficiency. So it is critical to detect the status of bladder and give the muscle electrical stimulation at the right time. Nowadays clinical detection of the bladder status depends on urodynamic study, such as using external ultrasound to estimate the volume of the bladder, or placing a catheter through the urinary tract to measure the intravesical pressure. But external ultrasound can-not give the electrical neural moderation an immediate feedback; neither is it suitable for patients to catheterize for a long period. The objective of this study is to use EUS-electromyography (EMG) as detector of the bladder status. EMG signal is filtered and amplified by a 5-stage circuit, and processed by using a LabVIEW algorithm. A moving window method is used to decrease time delay and maintain moderated sensitivity of the algorithm, realizing a real-time detection of the bladder status. The algorithm is applied on normal rats and rats with spinal cord injury experimentally. From experimental result analyzed by ROC method, using EUS-EMG to detect the bladder status compared with real voiding status, the accuracies of voiding detection exhibit 97% in normal rats and 90.3% in those with spinal cord injury. The accuracies of both results are better than that from using intravesical pressures as detector. Those findings demonstrate the feasibility of this study. Signal output function of the DAQ card can be used to trigger functional electrical stimulation, which improves voiding function of patients with spinal cord injury. | en |
dc.description.provenance | Made available in DSpace on 2021-06-16T13:04:56Z (GMT). No. of bitstreams: 1 ntu-102-R00945023-1.pdf: 4604257 bytes, checksum: d205769a5021843d2a70d24e56064f9b (MD5) Previous issue date: 2013 | en |
dc.description.tableofcontents | 誌謝 i
中文摘要 ii ABSTRACT iii 目錄 v 圖目錄 vii 表目錄 x 第一章 諸論 1 1.1 脊髓損傷對於下泌尿系統之影響 1 1.2 現行治療方式 2 1.3 研究動機與目標 7 第二章 材料與方法 9 2.1 MATLAB前期外尿道括約肌肌電訊號處理 9 2.1.1 MATLAB分析軟體介紹 9 2.1.2 MATLAB演算法架構與思維 9 2.2 五級類比濾波放大器開發 11 2.3 LabVIEW即時判斷演算法開發 13 2.3.1 LabVIEW開發軟體介紹 13 2.3.2 LabVIEW演算法架構與思維 14 2.4 大白鼠動物實驗驗證 19 2.4.1 實驗設備 19 Biopac MP36 20 National Instruments USB-6212 20 2.4.2 實驗系統架構 20 2.5 資料分析 22 第三章 實驗結果與討論 24 3.1 前期外尿道括約肌肌電訊號處理結果 24 3.2 五級類比濾波放大器開發結果 26 3.3 LabVIEW即時判斷演算法開發結果 27 3.4 大白鼠動物實驗驗證結果 29 3.4.1 外尿道括約肌肌電訊號與膀胱內壓處理結果 29 3.4.2 膀胱狀態判別與真實結果比較 32 3.4.3 ROC分析圖 34 a. 正常鼠ROC分析圖 34 b. 脊髓損傷鼠ROC分析圖 36 第四章 結論與展望 39 參考文獻 41 | |
dc.language.iso | zh-TW | |
dc.title | 外尿道括約肌肌電圖用於偵測脊髓損傷鼠的膀胱狀態 | zh_TW |
dc.title | Using EUS-EMG to Detect the Status of Urinary Bladder in Spinal Cord Injured Rats | en |
dc.type | Thesis | |
dc.date.schoolyear | 101-2 | |
dc.description.degree | 碩士 | |
dc.contributor.oralexamcommittee | 賴金鑫(Jin-Shin Lai),林啟萬(Chii-Wann Lin),陸哲駒(Jer-Junn Luh),陳友倫(Yu-Luen Chen) | |
dc.subject.keyword | 脊髓損傷,膀胱,外尿道括約肌,電刺激神經調控,肌電圖,ROC曲線, | zh_TW |
dc.subject.keyword | Spinal Cord Injured,Bladder,External Urethral Sphincter,Electrical neural moderation,EMG,Receiver Operating Characteristic, | en |
dc.relation.page | 44 | |
dc.rights.note | 有償授權 | |
dc.date.accepted | 2013-08-05 | |
dc.contributor.author-college | 電機資訊學院 | zh_TW |
dc.contributor.author-dept | 生醫電子與資訊學研究所 | zh_TW |
顯示於系所單位: | 生醫電子與資訊學研究所 |
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