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姓名 張立偉(Li-Wei Chang)  查詢紙本館藏   畢業系所 資訊工程學系
論文名稱 利用關聯分析全面性的搜索癌症關聯疾病
(Using Association Rules to Comprehensively Search for the Relations between Malignant Neoplasm and Diseases)
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摘要(中) 隨著台灣人口高齡化和生活習慣的變化,癌症正成為一個重要的健康問題,因此對於癌症的預防和政策是至關重要的。至今還未曾有一個廣泛並同時討論多種疾病與所有癌症的關聯性在同一個人群資料中。本論文旨利用資料探勘的關聯式規則分析,以台灣人口健保資料庫為基底來分析所有疾病與癌症之間的關係。我們將所有疾病根據疾病類型分成 17 群、癌症分成 10 群,為了要更精準地分析他們之間的關係。將已分群的 SAS 資料,利用 SAS 程式碼和 C 語言轉換成 WEKA 的格式,藉由 WEKA 軟體進行關聯式的分析預測。分析後得到的結果,我們針對所有
疾病與特定癌症部位,利用現有發表過的文章來印證結果;並挑選出 6 組值得探討的疾病來更細節的比較現有文獻與我們的差異。雖然我們得到的結果跟現有文獻上的結果有些出入,但相似部分還是占大多數,而且也發現了一些沒有被文獻討論到的關係。本 研究完成了一個利用關聯式分析全面性的探索所有疾病與癌症之間的關係,並整理出癌症的相關文獻,讓大家更注意到台灣癌症預防的重要性。
摘要(英) Introduction: With the issue of cancer is being seriously, more and more cohort studies are concerned about the risk of developing cancer in a particular disease. In recent years, data mining is widely used in large data analysis which is an automatic or semiautomated way to explore and analyze large amounts of data. Therefore, the use of data mining techniques to comprehensively explore the association between all diseases and malignant neoplasms is worth to be concerned. The aim of this study is to use association rule to comprehensively explore the relationship between cancer and other diseases in the same Taiwan population database. Methods: Base on Taiwan population database NHIRD, we use LHID which is a sample of one million beneficiaries randomly sampled from NHIRD for a specific year from 2005 to 2013. After finding the malignant cancer patients above 30 years old with ICD-9-CM 140~209, we divide all diseases into 17 groups and all cancers into 10 groups. Then, we use WEKA to do our association rule to find the relevance of diseases and cancers. Results: After we get the relationship between diseases and cancer, we sort out the results according to the disease groups. In order to verify our results by current knowledges, we tried to compare our results with their difference. Then, we select six diseases worthy of discussion to more detailed comparison the difference between current literatures and our results. Discussions and Conclusions: This study succeeded comprehensive search for all the related diseases before cancers by using data mining method association rule in the same Taiwan population database. Although during verify, there are some difference between our results and previous works, the similar between them are in majority. And also sort out lots of cancer-related studies for cancer prevention.
關鍵字(中) ★ 全民健保資料庫
★ 廣泛搜索
★ 癌症
★ 資料探勘
★ 關聯法則
關鍵字(英) ★ NHIRD
★ comprehensive explore
★ cancer
★ data mining
★ association rule
論文目次 摘要 i
Abstract ii
Table of Contents iii
List of Figures iv
List of Tables v
1. Introduction 1
1.1 Background 1
1.2 Motivation 2
1.3 Research goal 2
2. Related Works 3
2.1 Cancer-related cohort studies 3
2.2 Data mining in Taiwan population database 4
2.3 Data mining in cancer and disease prediction 4
2.4 Association rule method 5
3. Materials and Methods 6
3.1 Data source 6
3.2 Case definition 6
3.3 Analysis 9
4. Results 10
4.1 Population characteristics 10
4.2 Association rule vs. ten cancer sites 12
4.3 Verifying by current knowledges 38
5. Discussions and Conclusions 45
References 49
參考文獻
1. Chiang, C.J., et al., Cancer trends in Taiwan. Jpn J Clin Oncol, 2010. 40(10): p. 897-904.
2. Jemal, A., et al., Global cancer statistics. CA Cancer J Clin, 2011. 61(2): p. 69-90.
3. Chiang, C.L., et al., Spectrum of cancer risk among Taiwanese with chronic obstructive pulmonary disease. Int J Clin Oncol, 2016. 21(5): p. 1014-1020.
4. Chung, S.D., S.P. Liu, and H.C. Lin, Association between prostate cancer and urinary calculi: a population-based study. PLoS One, 2013. 8(2): p. e57743.
5. Hu, L.-Y., et al., The risk of cancer among patients with sleep disturbance: a nationwide retrospective study in Taiwan. Annals of Epidemiology, 2013. 23(12): p. 757-761.
6. Hung, N., et al., Risk of cancer in patients with iron deficiency anemia: a nationwide population-based study. PLoS One, 2015. 10(3): p. e0119647.
7. Kuo, M.C., S.J. Chang, and M.C. Hsieh, Colchicine Significantly Reduces Incident Cancer in Gout Male Patients: A 12-Year Cohort Study. Medicine (Baltimore), 2015. 94(50): p. e1570.
8. Lee, M.Y., et al., The association of diabetes mellitus with liver, colon, lung, and prostate cancer is independent of hypertension, hyperlipidemia, and gout in Taiwanese patients. Metabolism, 2012. 61(2): p. 242-9.
9. Liao, K.F., et al., Diabetes mellitus correlates with increased risk of pancreatic cancer: a population-based cohort study in Taiwan. J Gastroenterol Hepatol, 2012. 27(4): p. 709-13.
10. Sun, L.M., et al., Cancer risk in patients with osteoporosis: a population-based cohort study. Curr Med Res Opin, 2017. 33(4): p. 733-739.
11. Chin, C.Y., et al., Mining disease risk patterns from nationwide clinical databases for the assessment of early rheumatoid arthritis risk. PLoS One, 2015. 10(4): p. e0122508.
12. Huang, L.S., et al., A fast algorithm for mining association rules. Journal of Computer Science and Technology, 2000. 15(6): p. 619-624.
13. Tai, Y.M. and H.W. Chiu, Comorbidity study of ADHD: applying association rule mining (ARM) to National Health Insurance Database of Taiwan. Int J Med Inform, 2009. 78(12): p. e75-83.
14. Yeh, D.-Y., et al., A predictive model for cerebrovascular disease using data mining. Expert Systems with Applications, 2011. 38(7): p. 8970-8977.
15. Shen, C.C., et al., The risk of cancer in patients with generalized anxiety disorder: a nationwide population-based study. PLoS One, 2013. 8(2): p. e57399.
16. Jauhari, S. and S.A. Rizvi, Mining Gene Expression Data Focusing Cancer Therapeutics: A Digest. IEEE/ACM Trans Comput Biol Bioinform, 2014. 11(3): p. 533-47.
17. Jajroudi, M., et al., Prediction of survival in thyroid cancer using data mining technique. Technol Cancer Res Treat, 2014. 13(4): p. 353-9.
18. Klastersky, J., et al., The Multinational Association for Supportive Care in Cancer risk index: A multinational scoring system for identifying low-risk febrile neutropenic cancer patients. J Clin Oncol, 2000. 18(16): p. 3038-51.
19. Ma Yiming, et al., Integrating Classification and Association Rule Mining, in American Association for Artificial Intelligence. 1998.: p. 80-86
20. Hahsler, M., B. Grün, and K. Hornik, Introduction to arules – A computational environment for mining association rules and frequent item sets. ePubWU Institutional Repository, 2005. 14(15)
21. Lee, Y.H., et al., Emergency visits among end-of-life cancer patients in Taiwan: a nationwide population-based study. BMC Palliat Care, 2015. 14: p. 25.
22. Holmes, E.F.G., et al., The WEKA Data Mining Software: An Update. SIGKDD Explorations, 2009. 11(1): p. 10-18.
23. El-Zein, M., et al., History of allergic diseases and lung cancer risk. Ann Allergy Asthma Immunol, 2014. 112(3): p. 230-6.
24. Wang, M., et al., Inverse association between eczema and meningioma: a meta-analysis. Cancer Causes Control, 2011. 22(10): p. 1355-63.
25. Cai, S.C., et al., Topical calcineurin inhibitors in eczema and cancer association: A cohort study. J Dermatolog Treat, 2016. 27(6): p. 531-537.
26. Driessen, C.M.L., et al., Skin lesions in a patient with head and neck cancer. The Netherlands Journal of Medicine, 2013. 71(9).
27. Cheung, M.R., Serum Hepatitis a Antibody Positivity Correlates with Higher Pancreas Cancer Mortality in Adults: Implications for Hepatitis Vaccination in High Risk Areas. Asian Pacific Journal of Cancer Prevention, 2013. 14(5): p. 2707-2710.
28. Huang, T., et al., Hypertension, use of antihypertensive medications, and risk of epithelial ovarian cancer. Int J Cancer, 2016. 139(2): p. 291-9.
29. Harding, J.L., et al., Hypertension, antihypertensive treatment and cancer incidence and mortality: a pooled collaborative analysis of 12 Australian and New Zealand cohorts. J Hypertens, 2016. 34(1): p. 149-55.
30. Sanfilippo, K.M., et al., Hypertension and obesity and the risk of kidney cancer in 2 large cohorts of US men and women. Hypertension, 2014. 63(5): p. 934-41.
31. Tseng, C.H., Diabetes and risk of bladder cancer: a study using the National Health Insurance database in Taiwan. Diabetologia, 2011. 54(8): p. 2009-15.
32. Kuo, C.F., et al., Increased risk of cancer among gout patients: a nationwide population study. Joint Bone Spine, 2012. 79(4): p. 375-8.
33. Wang, W., et al., Increased Risk of Cancer in relation to Gout: A Review of Three Prospective Cohort Studies with 50,358 Subjects. Mediators Inflamm, 2015. 2015: p. 680853.
34. Adamson, J.W., The Anemia of Inflammation/Malignancy: Mechanisms and Management. Hematology, 2008.
35. Haurani, F.I., et al., Reutilization of Iron in Anemia Complicating Malignant Neoplasms. Blood, 1963. 22(1): p. 73-81.
36. Ho, C.-H., et al., The Prevalence of Iron Deficiency Anemia and Its Clinical Implications in Patients with Colorectal Carcinoma. Journal of the Chinese Medical Association, 2008. 71(3): p. 119-122.
37. Liebman, H.A., Thrombocytopenia in cancer patients. Thrombosis Research, 2014. 133: p. S63-S69.
38. Tan, S.M., et al., Depression and anxiety in cancer patients in a Tertiary General Hospital in Singapore. Asian J Psychiatr, 2014. 8: p. 33-7.
39. Muller, K.E., et al., Ovarian strumal carcinoid producing peptide YY associated with severe constipation: a case report and review of the literature. Int J Gynecol Pathol, 2015. 34(1): p. 30-5.
40. Power, A.M., N.J. Talley, and A.C. Ford, Association between constipation and colorectal cancer: systematic review and meta-analysis of observational studies. Am J Gastroenterol, 2013. 108(6): p. 894-903; quiz 904.
41. Anderson, J.C. and B.E. Lacy, Editorial: Constipation and colorectal cancer risk: a continuing conundrum. Am J Gastroenterol, 2014. 109(10): p. 1650-2.
42. Foden, N., et al., Concurrent necrotising otitis externa and adenocarcinoma of the temporal bone: a diagnostic challenge. BMJ Case Rep, 2013. 2013.
43. Shikata, K., T. Ninomiya, and Y. Kiyohara, Diabetes mellitus and cancer risk: review of the epidemiological evidence. Cancer Sci, 2013. 104(1): p. 9-14.
44. Delpón, J.T.R.C.E., Cancer Chemotherapy and Cardiac Arrhythmias: A Review. Drug safety, 2015. 38(2): p. 129-152.
45. Lang, A.S.A.D.K.R., Cardiovascular complications of malignant carcinoid disease. American Heart Journal, 1997. 134(4): p. 693-702.
46. Gradel, K.O., et al., Salmonella or Campylobacter gastroenteritis prior to a cancer diagnosis does not aggravate the prognosis: a population-based follow-up study. APMIS, 2010. 118(2): p. 136-42.
47. Waldner, M.J. and M.F. Neurath, Master regulator of intestinal disease: IL-6 in chronic inflammation and cancer development. Semin Immunol, 2014. 26(1): p. 75-9.
48. Chung, S.D., et al., A case-control study on the association between bladder cancer and prior bladder calculus. BMC Cancer, 2013. 13(117).
49. Goyal, S., et al., Ovarian lymphangioma masquerading as ectopic pregnancy: A clinical dilemma. J Obstet Gynaecol, 2015. 35(5): p. 535-6.
50. Chen, Y.-J., et al., Cancer Risk in Patients With Chronic Urticaria. ARCH DERMATOL, 2012. 148(1).
51. O′Donnell, E. and R. Havyer, Breast malignancy masquerading under the cloak of acute urticaria. BMJ Case Rep, 2014. 2014.
52. Gandini, S., et al., Allergies and the risk of pancreatic cancer: a meta-analysis with review of epidemiology and biological mechanisms. Cancer Epidemiol Biomarkers Prev, 2005. 14(8): p. 1908-16.
53. Cheung, A.M., R. Heisey, and J. Srighanthan, Breast cancer and osteoporosis. Current Opinion in Endocrinology Diabetes and Obesity, 2013. 20(6): p. 532-538.
54. Boffetta, P., et al., A prospective study of gout and cancer. Eur J Cancer Prev, 2009. 18(2): p. 127-32.
55. Kawano, K., et al., Peptide YY producing strumal carcinoid of the ovary as the cause of severe constipation with contralateral epithelial ovarian cancer. J Obstet Gynaecol Res, 2007. 33(3): p. 392-6.
56. Chung, S.-D., et al., A case-control study on the association between bladder cancer and prior bladder calculus. BMC Cancer, 2013. 13(117).
57. Lin, Y.J., et al., Chinese Herbal Medicine Treatment Improves the Overall Survival Rate of Individuals with Hypertension among Type 2 Diabetes Patients and Modulates In Vitro Smooth Muscle Cell Contractility. PLoS One, 2015. 10(12): p. e0145109.
58. Jiang, Y.D., et al., Incidence and prevalence rates of diabetes mellitus in Taiwan: analysis of the 2000-2009 Nationwide Health Insurance database. J Formos Med Assoc, 2012. 111(11): p. 599-604.
59. Kuo, C.F., et al., Risk of myocardial infarction among patients with gout: a nationwide population-based study. Rheumatology, 2012. 52(1): p. 111-117.
60. Victor C Kok, et al., Gout and subsequent increased risk of cardiovascular mortality in non-diabetics aged 50 and above: a population-based cohort study in Taiwan. BMC Cardiovascular Disorders, 2012. 12(108).
61. Atamna, H., J. Liu, and B.N. Ames, Heme deficiency selectively interrupts assembly of mitochondrial complex IV in human fibroblasts: revelance to aging. J Biol Chem, 2001. 276(51): p. 48410-6.
62. Payne, C.M., et al., Crypt-restricted loss and decreased protein expression of cytochrome C oxidase subunit I as potential hypothesis-driven biomarkers of colon cancer risk. Cancer Epidemiol Biomarkers Prev, 2005. 14(9): p. 2066-75.
63. Harhaji, L., et al., Iron down-regulates macrophage anti-tumour activity by blocking nitric oxide production. Clin Exp Immunol, 2004. 137(1): p. 109-16.
64. Tatemichi, M., et al., Increased risk of intestinal type of gastric adenocarcinoma in Japanese women associated with long forms of CCTTT pentanucleotide repeat in the inducible nitric oxide synthase promoter. Cancer Lett, 2005. 217(2): p. 197-202.
65. Yao, Q.W., et al., Association of periodontal disease with oral cancer: a meta-analysis. Tumour Biol, 2014. 35(7): p. 7073-7.
66. Freudenheim, J.L., et al., Periodontal Disease and Breast Cancer: Prospective Cohort Study of Postmenopausal Women. Cancer Epidemiol Biomarkers Prev, 2016. 25(1): p. 43-50.
67. Chang, J.S., et al., Investigating the Association Between Periodontal Disease and Risk of Pancreatic Cancer. Pancreas, 2016. 45(1): p. 134-141.
68. Mai, X., et al., History of periodontal disease diagnosis and lung cancer incidence in the Women′s Health Initiative Observational Study. Cancer Causes Control, 2014. 25(8): p. 1045-53.
69. Zeng, X.T., et al., Periodontal disease and risk of head and neck cancer: a meta-analysis of observational studies. PLoS One, 2013. 8(10): p. e79017.
70. F, B.P.N., Contribution of environmental factors to cancer risk. Br Med Bull, 2003.
71. Shirai T., et al., The prostate: a target for carcinogenicity of 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) derived from cooked foods. Cancer Res., 1997. 15(57): p. 195-198.
72. Baker, F., et al., Health risks associated with cigar smoking. JAMA, 2000. 284(6): p. 735-40.
73. Baan, R., et al., Carcinogenicity of alcoholic beverages. Lancet Oncol, 2007. 8(4): p. 292-3.
指導教授 洪炯宗、吳立青(Jorng-Tzong Horng Li-Ching Wu) 審核日期 2017-7-26
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