請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/48514完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 林啟萬 | |
| dc.contributor.author | Tsung-Chi Chen | en |
| dc.contributor.author | 陳琮琪 | zh_TW |
| dc.date.accessioned | 2021-06-15T07:00:02Z | - |
| dc.date.available | 2020-01-01 | |
| dc.date.copyright | 2011-02-09 | |
| dc.date.issued | 2011 | |
| dc.date.submitted | 2011-01-24 | |
| dc.identifier.citation | [1] A. M. Elliott, et al., 'The course of chronic pain in the community: results of a 4-year follow-up study,' Pain, vol. 99, pp. 299-307, 2002.
[2] C. G. Helmick, et al., 'Estimates of the prevalence of arthritis and other rheumatic conditions in the United States: Part I,' Arthritis & Rheumatism, vol. 58, pp. 15-25, 2008. [3] P. Côté, et al., 'The Saskatchewan Health and Back Pain Survey: The Prevalence of Neck Pain and Related Disability in Saskatchewan Adults,' Spine, vol. 23, pp. 1689-1698, 1998. [4] H. B. Bressler, et al., 'The Prevalence of Low Back Pain in the Elderly: A Systematic Review of the Literature,' Spine, vol. 24, p. 1813, 1999. [5] F. Cecchi, et al., 'Epidemiology of Back Pain in a Representative Cohort of Italian Persons 65 Years of Age and Older: The InCHIANTI Study,' Spine, vol. 31, pp. 1149-1155, 2006. [6] M. Mortimer, et al., 'Low Back Pain in a General Population. Natural Course and Influence of Physical Exercise-A 5-Year Follow-up of the Musculoskeletal Intervention Center-Norrtalje Study,' Spine, vol. 31, pp. 3045-3051, 2006. [7] H. R. Guo, et al., 'Back pain prevalence in US industry and estimates of lost workdays,' American Journal of Public Health, vol. 89, pp. 1029-1035, 1999. [8] 張季衡, '植入式脈衝射頻電刺激系統之研發於動物神經疼痛模型之可行性驗證,' 碩士, 醫學工程學研究所, 臺灣大學, 台北, 2009. [9] N. Attal, et al., 'EFNS guidelines on the pharmacological treatment of neuropathic pain: 2010 revision,' European Journal of Neurology, vol. 17, p. 1113, 2010. [10] N. B. Finnerup, et al., 'The evidence for pharmacological treatment of neuropathic pain,' Pain, vol. 150, pp. 573-581, 2010. [11] M. M. Sluijter, PhD; G. Racz, MD, 'Technical Aspects of Radiofrequency,' World Institute of Pain, 2002. [12] E. C. ME Sluijter, WB Rittman, M Van Kleef, 'The effects of pulsed radiofrequency fields applied to the dorsal root ganglion-a preliminary report,' The Pain Clinic, 1998. [13] K. Van Boxem, et al., 'Radiofrequency and Pulsed Radiofrequency Treatment of Chronic Pain Syndromes: The Available Evidence,' Pain Practice, vol. 8, pp. 385-393, 2008. [14] A. Cahana, et al., 'Pulsed Radiofrequency: Current Clinical and Biological Literature Available,' Pain Medicine, vol. 7, pp. 411-423, 2006. [15] J.-m. C. I-Hsiu Ho , Hsiao-Chin Chen , Hung-Wei Chiu, 'A Battery-less Tire Pressure Monitoring System,' presented at the IEEE 69th Vehicular Technology Conference, 2009. [16] 林威佐, '植入式電刺激器脈衝射頻波形於神經性疼痛抑制之效應研究,' 碩士, 醫學工程學研究所, 臺灣大學, 台北, 2010. [17] M.-L. L. Yeong-Ray Wen, Chii-Wann Lin, Shu-Hui Huang, 'he analgesic action of pulsed radiofrequency (PRF) applied to dorsal root ganglion (DRG) neuropathic pain in rats: a pilot “pain chip” study,' presented at the Third International Congress on Neuropathic Pain, Athens, Greece, 2010. [18] H.-W. C. C.-W. Lin, Mu-Lien Lin, Chi-Heng Chang,I-Hsiu Ho, Po Hsiang Fang, Yi Chin Li, Chang Lun Wang, Yao-Chuan Tsai, Yeong-Ray Wen, Win-Pin Shih, Yao-Joe Yang, Shey-Shi Lu, , 'Pain Control On Demand Based on Pulsed Radio-Frequency Stimulation of the Dorsal Root Ganglion Using a Batteryless Implantable CMOS SoC,' ISSCC, vol. 12, pp. 234-235, 2010. [19] M.-L. L. Hung-Wei Chiu, Chii-Wann Lin, I-Hsiu Ho, Wei-Tso Lin, Po-Hsiang Fang, Yi-Chin Lee, Yeong-Ray Wen, and Shey-Shi Lu, 'Pain Control on Demand Based on Pulsed Radio-Frequency Stimulation of the Dorsal Root Ganglion Using a Batteryless Implantable CMOS SoC,' IEEE TRANSACTIONS ON BIOMEDICAL CIRCUITS AND SYSTEMS, vol. 4, 2010. [20] L. D. C.-T. Wu, Y.-C. Tsai, W.-T. Lin, T.-C. Chen, W.-P. Shih, and C.-W. Lin, 'An implantable bipolar spin stimulating probe with bio-inspired adhesive microtubes,' presented at the IEEE International Conference on Micro Electro Mechanical Systems (MEMS 2011), Cancun, Mexico, 2011. [21] D. Bowsher, 'Neurogenic pain syndromes and their management,' British Medical Bulletin, vol. 47, pp. 644-666, 1991. [22] K. J. J. Verhaak P.F., Dekker J., Sorbi M.J., Bensing J.M., 'Prevalence of chronic benign pain disorder among adults:a review of the literature,' pain, vol. 77, pp. 231-239, 1998. [23] R. C. Lawrence, et al., 'Estimates of the prevalence of arthritis and other rheumatic conditions in the United States: Part II,' Arthritis & Rheumatism, vol. 58, pp. 26-35, 2008. [24] S. J. Linton, et al., 'A Population-Based Study of Spinal Pain Among 35-45-Year-Old Individuals: Prevalence, Sick Leave, and Health Care Use,' Spine, vol. 23, pp. 1457-1463, 1998. [25] F. M. Blyth, et al., 'Chronic pain in Australia: a prevalence study,' Pain, vol. 89, pp. 127-134, 2001. [26] N. Torrance, et al., 'The Epidemiology of Chronic Pain of Predominantly Neuropathic Origin. Results From a General Population Survey,' The Journal of Pain, vol. 7, pp. 281-289, 2006. [27] C. I. K. Davies H. T. O., Macrae W. A., Rogers K. M., 'Pain clinic patients in northern Britain,' Pain clinic vol. 5, pp. 129-135, 1991. [28] D. Bouhassira, et al., 'Prevalence of chronic pain with neuropathic characteristics in the general population,' Pain, vol. 136, pp. 380-387, 2008. [29] A. M. McDermott, et al., 'The burden of neuropathic pain: results from a cross-sectional survey,' European Journal of Pain, vol. 10, pp. 127-135, 2006. [30] M. P. Jensen, et al., 'The impact of neuropathic pain on health-related quality of life,' Neurology, vol. 68, pp. 1178-1182, 2007. [31] A. B. O'Connor, 'Neuropathic Pain: Quality-of-Life Impact, Costs and Cost Effectiveness of Therapy,' PharmacoEconomics, vol. 27, pp. 95-112, 2009. [32] A. B. O'Connor and R. H. Dworkin, 'Treatment of Neuropathic Pain: An Overview of Recent Guidelines,' The American Journal of Medicine, vol. 122, pp. S22-S32, 2009. [33] M. Haanpää, et al., 'NeuPSIG guidelines on neuropathic pain assessment,' Pain, 2010. [34] J. Campbell and R. Meyer, 'Mechanisms of Neuropathic Pain,' Neuron, vol. 52, pp. 77-92, 2006. [35] R. Baron, 'Mechanisms of Disease: neuropathic pain—a clinical perspective,' Nature Clinical Practice Neurology, vol. 2, pp. 95-106, 2006. [36] R. H. Dworkin, et al., 'Advances in Neuropathic Pain: Diagnosis, Mechanisms, and Treatment Recommendations,' Archives of Neurology, vol. 60, pp. 1524-1534, 2003. [37] M. Costigan, et al., 'Neuropathic Pain: A Maladaptive Response of the Nervous System to Damage,' Annual Review of Neuroscience, vol. 32, pp. 1-32, 2009. [38] G. Moalem and D. Tracey, 'Immune and inflammatory mechanisms in neuropathic pain,' Brain Research Reviews, vol. 51, pp. 240-264, 2006. [39] K. Chung, et al., 'Sympathetic sprouting in the dorsal root ganglia of the injured peripheral nerve in a rat neuropathic pain model,' The Journal of Comparative Neurology, vol. 376, pp. 241-252, 1996. [40] K. Omarker and R. R. Myers, 'Pathogenesis of sciatic pain: role of herniated nucleus pulposus and deformation of spinal nerve root and dorsal root ganglion,' Pain, vol. 78, pp. 99-105, 1998. [41] I. Gilron, 'Neuropathic pain: a practical guide for the clinician,' Canadian Medical Association Journal, vol. 175, pp. 265-275, 2006. [42] G. Cruccu, et al., 'EFNS guidelines on neuropathic pain assessment: revised 2009,' European Journal of Neurology, vol. 17, pp. 1010-1018, 2010. [43] B. Didier, et al., 'Development and validation of the Neuropathic Pain Symptom Inventory,' Pain, vol. 108, pp. 248-257, 2004. [44] P. V. Rasmussen, et al., 'Symptoms and signs in patients with suspected neuropathic pain,' Pain, vol. 110, pp. 461-469, 2004. [45] M. I. Bennett, et al., 'Using screening tools to identify neuropathic pain,' Pain, vol. 127, pp. 199-203, 2007. [46] H. Per, et al., 'Usefulness and limitations of quantitative sensory testing: Clinical and research application in neuropathic pain states,' Pain, vol. 129, pp. 256-259, 2007. [47] R. H. Dworkin, et al., 'Pharmacologic management of neuropathic pain: Evidence-based recommendations,' Pain, vol. 132, pp. 237-251, 2007. [48] R. Melzack and P. D. Wall, 'Pain Mechanisms: A New Theory A Gate Control System Modulates Sensory Input From the Skin Before It Evokes Pain Perception and Response,' Survey of Anesthesiology, vol. 16, pp. 583-600, 1972. [49] R. MELZACK and P. D. WALL, 'Pain Mechanisms: A New Theory,' Survey of Anesthesiology, vol. 11, pp. 89-90, 1967. [50] M. Sluijter and G. Racz, 'Technical Aspects of Radiofrequency,' Pain Practice, vol. 2, pp. 195-200, 2002. [51] C. E. Sluijter ME, Rittman WB III, van Kleef M., 'The effects of pulsed radiofrequency field applied to the dorsal root ganglion—A preliminary report,' Pain Clinic, vol. 11, pp. 109-117, 1998. [52] R. Slappendel, et al., 'The efficacy of radiofrequency lesioning of the cervical spinal dorsal root ganglion in a double blinded randomized study: no difference between 40°C and 67°C treatments,' Pain, vol. 73, pp. 159-163, 1997. [53] R. Munglani, 'The longer term effect of pulsed radiofrequency for neuropathic pain,' Pain, vol. 80, pp. 437-439, 1999. [54] J. Van Zundert, et al., 'Pulsed radiofrequency treatment of the Gasserian ganglion in patients with idiopathic trigeminal neuralgia,' Pain, vol. 104, pp. 449-452, 2003. [55] J. Van Zundert, et al., 'Percutaneous Pulsed Radiofrequency Treatment of the Cervical Dorsal Root Ganglion in the Treatment of Chronic Cervical Pain Syndromes: A Clinical Audit,' Neuromudulation: Technology at the Neural Interface, vol. 6, pp. 6-14, 2003. [56] A. Cahana, et al., 'Pulsed Radiofrequency: Current Clinical and Biological Literature Available,' Pain Medicine, vol. 7, pp. 411-423, 2006. [57] Y. Higuchi, et al., 'Exposure of the Dorsal Root Ganglion in Rats to Pulsed Radiofrequency Currents Activates Dorsal Horn Lamina I and II Neurons,' Neurosurgery, vol. 50, pp. 850-856, 2002. [58] A. Cahana, et al., 'Acute differential modulation of synaptic transmission and cell survival during exposure to pulsed and continuous radiofrequency energy,' The Journal of Pain, vol. 4, pp. 197-202, 2003. [59] M. Protasoni, et al., 'Pulsed radiofrequency effects on the lumbar ganglion of the rat dorsal root: a morphological light and transmission electron microscopy study at acute stage,' European Spine Journal, vol. 18, pp. 473-478, 2009. [60] R. Vallejo, et al., 'Radiofrequency vs. pulse radiofrequency: The end of the controversy,' Techniques in Regional Anesthesia and Pain Management, vol. 14, pp. 128-132, 2010. [61] R. S. Burnham, et al., 'A Prospective Outcome Study on the Effects of Facet Joint Radiofrequency Denervation on Pain, Analgesic Intake, Disability, Satisfaction, Cost, and Employment,' Archives of Physical Medicine and Rehabilitation, vol. 90, pp. 201-205, 2009. [62] C. N. Shealy, Mortimer, J.T., Reswick, J.B., 'Electrical inhibition of pain by stimulation of the dorsal columns: Preliminary clinical report.,' Anesth Analg, vol. 46, pp. 489-491, 1967. [63] R. North and J. Shipley, 'Practice Parameters for the Use of Spinal Cord Stimulation in the Treatment of Chronic Neuropathic Pain,' Pain Medicine, vol. 8, pp. S200-S275, 2007. [64] A. T. Judith, et al., 'Spinal cord stimulation for patients with failed back surgery syndrome or complex regional pain syndrome: a systematic review of effectiveness and complications,' Pain, vol. 108, pp. 137-147, 2004. [65] E. F. Michael, Laxmaiah M., Ramsin, M. B., David, M. S., Howard, S. S. and Steven P. C., 'Spinal Cord Stimulation for Patients with Failed Back Surgery Syndrome: A Systematic Review,' Pain Physician, vol. 12, pp. 379-397, 2009. [66] D. R. Wenger, 'Spine Surgery at a Crossroads: Does Economic Growth Threaten Our Professionalism?,' Spine, vol. 32, pp. 2158-2165, 2007. [67] R. A. Deyo and S. K. Mirza, 'Trends and Variations in the Use of Spine Surgery,' Clinical Orthopaedics and Related Research, vol. 443, pp. 139-146, 2006. [68] L. a. B. Manchikanti, M. V., 'Interventional techniques in ambulatory surgical centers: a look at the new payment system.,' Pain Physician, vol. 10, pp. 627-650, 2007. [69] L. Manchikanti, Singh, V., Pampati, V., and H. S. a. H. Smith, J., 'Analysis of growth in interventional techniques in managing chronic pain in Medicare population: A 10-year evaluation from 1997 to 2006,' Pain Physician, vol. 12, pp. 9-34, 2009. [70] A. T. Judith, William, H., Bryan, A. C., Richard, A. D., 'Spinal Cord Stimulators (SCS) for Injured Workers with Chronic Back and Leg Pain after Lumbar Surgery - A Prospective Study to Describe Costs, Complications, and Patient Outcomes: Final Report ', S. D. o. L. Industries, Ed., ed. Washington Judith, A.T., 2008, pp. 1-74. [71] J. A. Simpson, 'Pain and the neurosurgeon. A Forty-Year Experience,' Journal of Neurology, Neurosurgery & Psychiatry, vol. 33, pp. 129-129, 1970. [72] B. Nashold, et al., 'Long-term pain control by direct peripheral-nerve stimulation,' J Bone Joint Surg Am, vol. 64, pp. 1-10, January 1, 1982 1982. [73] K. Bergmann, et al., 'Long-term implantation of a system of electrical stimulation of paralyzed laryngeal muscles in dogs,' The Laryngoscope, vol. 98, pp. 455-459, 1988. [74] W. M. Grill and J. T. Mortimer, 'Neural and connective tissue response to long-term implantation of multiple contact nerve cuff electrodes,' Journal of Biomedical Materials Research, vol. 50, pp. 215-226, 2000. [75] A. Branner, et al., 'Long-term stimulation and recording with a penetrating microelectrode array in cat sciatic nerve,' Biomedical Engineering, IEEE Transactions on, vol. 51, pp. 146-157, 2004. [76] F. Gekeler, et al., 'Compound subretinal prostheses with extra-ocular parts designed for human trials: successful long-term implantation in pigs,' Graefe's Archive for Clinical and Experimental Ophthalmology, vol. 245, pp. 230-241, 2007. [77] L. Sherwood, Human Physiology: From Cells to Systems 7ed. USA: Yolanda, Cossio, 2009. [78] J. L. Echternach, Introduction to electromyography and conduction nerve testing, 2nd ed. Thorofare, SLACK, 2003. [79] J. Kimura, Electrodiagnosis in diseases of nerve and muscle: principles and practice, 3nd ed. New York, Oxford University Press, 2001. [80] S. Ho Kim and J. Mo Chung, 'An experimental model for peripheral neuropathy produced by segmental spinal nerve ligation in the rat,' Pain, vol. 50, pp. 355-363, 1992. [81] P. D. Wall, et al., 'Autotomy following peripheral nerve lesions: experimental anesthesia dolorosa,' Pain, vol. 7, pp. 103-113, 1979. [82] G. J. Bennett and Y. K. Xie, 'A peripheral mononeuropathy in rat that produces disorders of pain sensation like those seen in man,' Pain, vol. 33, pp. 87-107, 1988. [83] Z. e. Seltzer, et al., 'A novel behavioral model of neuropathic pain disorders produced in rats by partial sciatic nerve injury,' Pain, vol. 43, pp. 205-218, 1990. [84] C. J. W. Isabelle Decosterd, 'Spared nerve injury: an animal model of persistent peripheral neuropathic pain,' Pain, vol. 87, pp. 149-158, 2000. [85] W. J. Dixon, 'Efficient Analysis of Experimental Observations,' Annual Review of Pharmacology and Toxicology, vol. 20, pp. 441-462, 1980. [86] S. R. Chaplan, et al., 'Quantitative assessment of tactile allodynia in the rat paw,' Journal of Neuroscience Methods, vol. 53, pp. 55-63, 1994. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/48514 | - |
| dc.description.abstract | 依據文獻指出脊柱相關的慢性背痛,於一生中的盛行率高達60~80 %,每年美國治療背痛所耗費的醫療成本約為1000億美金,除了影響病患生活品質、也降低個人社會生產力;目前臨床於疼痛控制上,以止痛藥物治療為主、物理及心理治療為輔,而其藥物副作用較大且有其限制,近十年來新興的治療選擇 ─ 脈衝射頻電刺激治療,低風險且疼痛緩解效果佳,雖然機轉至今仍有待釐清,但也讓受疼痛所苦的病患重新燃起一線希望。
因此本研究透過模擬臨床神經病變疼痛模式,將電極或電刺激器整體長期植入,每周固定給予一次PRF電刺激治療5分鐘、刺激腰椎第5節的背根神經節、共持續4個療程達35天,以觀察接受脈衝射頻電刺激的長期疼痛抑制效果,結果顯示神經病變大鼠疼痛閾值提升;另外臨床上使用神經傳導速率進行神經病變與傳導的檢查,本研究也透過電生理進行神經傳導與阻斷的驗證,結果證明PRF電刺激影響神經疼痛的傳導、且具有疼痛緩解的效果。 | zh_TW |
| dc.description.abstract | According to literatures, the prevalence of spine-related back pain is up to 60~80% in human whole life. In America, the medical-cost of back pain treatment is around 100 billion USD annual. However, Back pain not only affects patients' life quality but reduce personal productivity. From now on, medical treatment is the primary choice to pain control, physical and psychological treatments are second opinions, but medical treatment has its side effects and limitations. Decades, the new alternative treatment - Pulse radiofrequency (PRF), has less risks and better effects to pain relief. Although PRF mechanism is still needs to be proven, but that give hopes to those suffered from pain.
Thus, this research performs a clinical pain model to observe the long-term effect of pain relief with PRF. We stimulate the dorsal root ganglion (DRG) of lumbar of 5th (L5) with long-term implanted electrode or stimulator. The PRF procedures intervene 5 minutes per week, total 4 times PRF treatment course till 35 days. The result reveals the improvement of pain threshold in neuropathy rats. In the other hand, the nerve conduction velocity is usually used to examine the clinic patients of neuropathy and nerve conduction dysfunction. Therefore, we use electrophysiological (EPS) technique to validate the nerve modulation after PRF intervention. The outcome proves PRF affects the pain conduction and achieves pain relief. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-15T07:00:02Z (GMT). No. of bitstreams: 1 ntu-100-R98548005-1.pdf: 3862111 bytes, checksum: 2e33a092cc13761159e4c757a4a6e7cf (MD5) Previous issue date: 2011 | en |
| dc.description.tableofcontents | 目錄
口試委員會審定 I 目錄 II 圖目錄 IV 表目錄 VII 致謝 VIII 摘要 X ABSTRACT XI 第一章 緒論 1 1.1 研究背景與動機 1 1.2 研究目的 2 第二章 文獻探討 3 2.1 神經病變疼痛 3 2.1.1 臨床疼痛機制與症狀評估 5 2.1.2 神經病變性疼痛之治療 10 2.2 射頻與脈衝射頻電刺激於疼痛治療 12 2.2.1 射頻與脈衝射頻電刺激 12 2.2.2 射頻與脈衝射頻電刺激於臨床應用 13 2.3 電刺激器之長期植入 15 2.4 神經電生理 18 第三章 研究方法 20 3.1 脈衝射頻電刺激器 20 3.2 刺激電極與封裝 21 3.2.1 單次刺激電極 22 3.2.2 植入用刺激電極 23 3.2.3 植入物封裝包覆與前處理 27 3.3 動物長期植入行為觀察實驗 28 3.3.1 動物準備與實驗分組 28 3.3.2 建立大鼠疼痛模型之手術流程 32 3.3.3 植入電極(或包含SOC模組)之手術流程 34 3.3.4 長期疼痛行為觀察測試 38 3.3.5 長期植入定位測試與犧牲取樣觀察 45 3.4 動物神經電生理實驗 48 3.4.1 實驗架設與分組 48 3.4.2 大鼠手術流程 49 3.4.3 神經訊號紀錄與分析 54 第四章 研究結果與討論 58 4.1 長期植入電極定位測試與觀察 58 4.2 長期疼痛行為測試實驗 66 4.3 神經電生理實驗 71 4.4 實驗結果討論 80 第五章 結論與未來展望 83 5.1 結論 83 5.2 未來展望 85 第六章 參考文獻 88 | |
| dc.language.iso | zh-TW | |
| dc.subject | 電生理 | zh_TW |
| dc.subject | 神經病變性疼痛 | zh_TW |
| dc.subject | 疼痛緩解 | zh_TW |
| dc.subject | 脈衝射頻電刺激 | zh_TW |
| dc.subject | 長期植入 | zh_TW |
| dc.subject | Pain relief | en |
| dc.subject | Long-term implantation | en |
| dc.subject | Neuropathic pain | en |
| dc.subject | Pulse radiofrequency | en |
| dc.subject | Electorphysiology | en |
| dc.title | 脈衝射頻治療於神經病變性疼痛電生理學探討及長期植入之行為研究 | zh_TW |
| dc.title | Electrophysiological Study of Pulsed Radiofrequency Treatment in Neuropathic Pain Model and Behavior Study of Long-term Implantation | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 99-1 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 呂學士,邱弘緯,施文彬,溫永銳,楊燿州 | |
| dc.subject.keyword | 神經病變性疼痛,疼痛緩解,脈衝射頻電刺激,長期植入,電生理, | zh_TW |
| dc.subject.keyword | Neuropathic pain,Pain relief,Pulse radiofrequency,Long-term implantation,Electorphysiology, | en |
| dc.relation.page | 97 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2011-01-25 | |
| 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 | |
文件中的檔案:
| 檔案 | 大小 | 格式 | |
|---|---|---|---|
| ntu-100-1.pdf 未授權公開取用 | 3.77 MB | Adobe PDF |
系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。
