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1. Dekker E, Tanis PJ, Vleugels JLA, Kasi PM, Wallace MB. Colorectal cancer. Lancet. 2019; 394(10207):1467–1480. Search in Google Scholar

2. Fülöp ZZ, Gurzu S, Fülöp RL, Bara T Jr, Tímár J, Drágus E, Jung I. Prognostic Impact of the Neutrophil-to-Lymphocyte and Lymphocyte-to-Monocyte Ratio, in Patients with Rectal Cancer: A Retrospective Study of 1052 Patients. J Pers Med. 2020; 10(4):173. Search in Google Scholar

3. Tamas K, Walenkamp AM, de Vries EG, van Vugt MA, Beets-Tan RG, van Etten B, de Groot DJ, Hospers GA. Rectal and colon cancer: Not just a different anatomic site. Cancer Treat Rev. 2015; 41(8):671–9. Search in Google Scholar

4. Bray F, Ferlay J, Soerjomataram I, Siegel RL, Torre LA, Jemal A. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA Cancer J Clin. 2018; 68(6):394–424. Search in Google Scholar

5. Compton CC. Colorectal carcinoma: diagnostic, prognostic, and molecular features. Mod Pathol. 2003; 16(4):376–88. Search in Google Scholar

6. Y Sun Y, Yang B, Lin M, Yu H, Chen H, Zhang Z. Identification of serum miR-30a-5p as a diagnostic and prognostic biomarker in colorectal cancer. Cancer Biomark. 2019; 24(3):299–305. Search in Google Scholar

7. Okugawa Y, Toiyama Y, Yamamoto A, Shigemori T, Yin C, Narumi A, Omura Y, Ide S, Kitajima T, Fujikawa H, Yasuda H, Hiro J, Yoshiyama S, Kobayashi M, Araki T, McMillan DC, Miki C, Kusunoki M. Clinical Impact of Muscle Quantity and Quality in Colorectal Cancer Patients: A Propensity Score Matching Analysis. JPEN J Parenter Enteral Nutr. 2018; 42(8):1322–1333. Search in Google Scholar

8. Wang W, Wu Q, Wang Z, Ren S, Shen H, Shi W, Xu Y. Development of a Prognostic Model for Ovarian Cancer Patients Based on Novel Immune Microenvironment Related Genes. Front Oncol. 2021; 11:647273. Search in Google Scholar

9. Deng CY, Lin YC, Wu JS, Cheung YC, Fan CW, Yeh KY, McMahon CJ. Progressive Sarcopenia in Patients With Colorectal Cancer Predicts Survival. AJR Am J Roentgenol. 2018; 210(3):526–532. Search in Google Scholar

10. Ojima Y, Harano M, Sumitani D, Okajima M. Impact of Preoperative Skeletal Muscle Mass and Quality on the Survival of Elderly Patients After Curative Resection of Colorectal Cancer. J Anus Rectum Colon. 2019; 3(4):143–151. Search in Google Scholar

11. Uehara H, Yamazaki T, Iwaya A, Kameyama H, Utsumi S, Harada R, Komatsu M, Hirai M, Kubota A, Katada T, Kobayashi K, Sato D, Yokoyama N, Kuwabara S, Otani T. Is radiological psoas muscle area measurement a predictor of postoperative complications after rectal resection for rectal cancer? A retrospective study. Surg Today. 2022; 52(2):306–315. Search in Google Scholar

12. Cruz-Jentoft AJ, Baeyens JP, Bauer JM, Boirie Y, Cederholm T, Landi F, Martin FC, Michel JP, Rolland Y, Schneider SM, Topinková E, Vandewoude M, Zamboni M; European Working Group on Sarcopenia in Older People. Sarcopenia: European consensus on definition and diagnosis: Report of the European Working Group on Sarcopenia in Older People. Age Ageing. 2010; 39(4):412–23. Search in Google Scholar

13. Cruz-Jentoft AJ, Bahat G, Bauer J, Boirie Y, Bruyère O, Cederholm T, Cooper C, Landi F, Rolland Y, Sayer AA, Schneider SM, Sieber CC, Topinkova E, Vandewoude M, Visser M, Zamboni M; Writing Group for the European Working Group on Sarcopenia in Older People 2 (EWGSOP2), and the Extended Group for EWGSOP2. Sarcopenia: revised European consensus on definition and diagnosis. Age Ageing. 2019; 48(4):601. Search in Google Scholar

14. Richards SJG, Senadeera SC, Frizelle FA. Sarcopenia, as Assessed by Psoas Cross-Sectional Area, Is Predictive of Adverse Postoperative Outcomes in Patients Undergoing Colorectal Cancer Surgery. Dis Colon Rectum. 2020; 63(6):807–815. Search in Google Scholar

15. Williams GR, Rier HN, McDonald A, Shachar SS. Sarcopenia & aging in cancer. J Geriatr Oncol. 2019; 10(3):374–377. Search in Google Scholar

16. F Meyer F, Valentini L. Disease-Related Malnutrition and Sarcopenia as Determinants of Clinical Outcome. Visc Med. 2019; 35(5):282–291. Search in Google Scholar

17. Benedek Z, Todor-Boér S, Kocsis L, Bauer O, Suciu N, Coroș MF. Psoas Muscle Index Defined by Computer Tomography Predicts the Presence of Postoperative Complications in Colorectal Cancer Surgery. Medicina (Kaunas). 2021; 57(5):472. Search in Google Scholar

18. Vergara-Fernandez O, Trejo-Avila M, Salgado-Nesme N. Sarcopenia in patients with colorectal cancer: A comprehensive review. World J Clin Cases. 2020; 8(7):1188–1202. Search in Google Scholar

19. Nakayama T, Furuya S, Kawaguchi Y, Shoda K, Akaike H, Hosomura N, Amemiya H, Kawaida H, Sudoh M, Kono H, Ichikawa D. Prognostic value of preoperative psoas muscle index as a measure of nutritional status in patients with esophageal cancer receiving neoadjuvant therapy. Nutrition. 2021; 90:111232. Search in Google Scholar

20. Kawakita Y, Motoyama S, Sato Y, Wakita A, Nagaki Y, Imai K, Minamiya Y. Decreases in the Psoas Muscle Index Correlate More Strongly with Survival than Other Prognostic Markers in Esophageal Cancer After Neoadjuvant Chemoradiotherapy Plus Esophagectomy. World J Surg. 2020; 44(5):1559–1568. Search in Google Scholar

21. Taniguchi Y, Kurokawa Y, Takahashi T, Saito T, Yamashita K, Tanaka K, Makino T, Yamasaki M, Nakajima K, Eguchi H, Doki Y. Impacts of Preoperative Psoas Muscle Mass and Visceral Fat Area on Postoperative Short- and Long-Term Outcomes in Patients with Gastric Cancer. World J Surg. 2021; 45(3):815–821. Search in Google Scholar

22. Horii N, Kosaka T, Fujiwara R, Sato S, Akiyama H, Kunisaki C, Endo I. Psoas muscle depletion during preoperative chemotherapy for advanced gastric cancer has a negative impact on long-term outcomes after gastrectomy. Asia Pac J Clin Oncol. 2022; 18(1):61–69. Search in Google Scholar

23. Noguchi G, Kawahara T, Kobayashi K, Tsutsumi S, Ohtake S, Osaka K, Umemoto S, Nakaigawa N, Uemura H, Kishida T, Yao M. A lower psoas muscle volume was associated with a higher rate of recurrence in male clear cell renal cell carcinoma. PLoS One. 2020; 15(1):e0226581. Search in Google Scholar

24. Sugama Y, Miyanishi K, Osuga T, Tanaka S, Hamaguchi K, Ito R, Sakamoto H, Kubo T, Ohnuma H, Murase K, Takada K, Kobune M, Kato J. Combination of psoas muscle mass index and neutrophil/lymphocyte ratio as a prognostic predictor for patients undergoing nonsurgical hepatocellular carcinoma therapy. JGH Open. 2021; 5(12):1335–1343. Search in Google Scholar

25. Williet N, Fovet M, Maoui K, Chevalier C, Maoui M, Le Roy B, Roblin X, Hag B, Phelip JM. A Low Total Psoas Muscle Area Index Is a Strong Prognostic Factor in Metastatic Pancreatic Cancer. Pancreas. 2021; 50(4):579–586. Search in Google Scholar

26. Nakamura R, Inage Y, Tobita R, Yoneyama S, Numata T, Ota K, Yanai H, Endo T, Inadome Y, Sakashita S, Satoh H, Yuzawa K, Terashima T. Sarcopenia in Resected NSCLC: Effect on Postoperative Outcomes. J Thorac Oncol. 2018; 13(7):895–903. Search in Google Scholar

27. Levolger S, van Vugt JL, de Bruin RW, IJzermans JN. Systematic review of sarcopenia in patients operated on for gastrointestinal and hepatopancreatobiliary malignancies. Br J Surg. 2015; 102(12):1448–58. Search in Google Scholar

28. Jones KI, Doleman B, Scott S, Lund JN, Williams JP. Simple psoas cross-sectional area measurement is a quick and easy method to assess sarcopenia and predicts major surgical complications. Colorectal Dis. 2015; 17(1):O20–6. Search in Google Scholar

29. Reisinger KW, van Vugt JL, Tegels JJ, Snijders C, Hulsewé KW, Hoofwijk AG, Stoot JH, Von Meyenfeldt MF, Beets GL, Derikx JP, Poeze M. Functional compromise reflected by sarcopenia, frailty, and nutritional depletion predicts adverse postoperative outcome after colorectal cancer surgery. Ann Surg. 2015; 261(2):345–52. Search in Google Scholar

30. Hou YC, Wang CJ, Chao YJ, Chen HY, Wang HC, Tung HL, Lin JT, Shan YS. Elevated Serum Interleukin-8 Level Correlates with Cancer-Related Cachexia and Sarcopenia: An Indicator for Pancreatic Cancer Outcomes. J Clin Med. 2018; 7(12):502. Search in Google Scholar

31. Rosenberg IH. Sarcopenia: origins and clinical relevance. J Nutr. 1997; 127(5):990S-991S. Search in Google Scholar

32. Hou JC, Zheng H, Qiang Z, Zhang YM, Jiang WT, Gao W, Cai JZ, Zhang JJ, Shen ZY. [Impact of psoas muscle index on early postoperative mortality and complications after liver transplantation]. Zhonghua Wai Ke Za Zhi. 2018; 56(5):374–378. Search in Google Scholar

33. Herrod PJJ, Boyd-Carson H, Doleman B, Trotter J, Schlichtemeier S, Sathanapally G, Somerville J, Williams JP, Lund JN. Quick and simple; psoas density measurement is an independent predictor of anastomotic leak and other complications after colorectal resection. Tech Coloproctol. 2019; 23(2):129–134. Search in Google Scholar

34. Tee YS, Cheng CT, Wu YT, Kang SC, Derstine BA, Fu CY, Liao CH, Su GL, Wang SC, Hsieh CH. The psoas muscle index distribution and influence of outcomes in an Asian adult trauma population: an alternative indicator for sarcopenia of acute diseases. Eur J Trauma Emerg Surg. 2021; 47(6):1787–1795. Search in Google Scholar

35. Yamada R, Todo Y, Kurosu H, Minowa K, Tsuruta T, Minobe S, Matsumiya H, Kato H, Mori Y, Osanai T. Validity of measuring psoas muscle mass index for assessing sarcopenia in patients with gynecological cancer. Jpn J Clin Oncol. 2021; 51(3):393–399. Search in Google Scholar

36. Zager Y, Khalilieh S, Ganaiem O, Gorgov E, Horesh N, Anteby R, Kopylov U, Jacoby H, Dreznik Y, Dori A, Gutman M, Nevler A. Low psoas muscle area is associated with postoperative complications in Crohn’s disease. Int J Colorectal Dis. 2021; 36(3):543–550. Search in Google Scholar

37. Hou L, Deng Y, Wu H, Xu X, Lin L, Cui B, Zhao T, Fan X, Mao L, Hou J, Sun H, Wang B, Sun C. Low psoas muscle index associates with long-term mortality in cirrhosis: construction of a nomogram. Ann Transl Med. 2020; 8(6):358. Search in Google Scholar

38. Trejo-Avila M, Bozada-Gutiérrez K, Valenzuela-Salazar C, Herrera-Esquivel J, Moreno-Portillo M. Sarcopenia predicts worse postoperative outcomes and decreased survival rates in patients with colorectal cancer: a systematic review and meta-analysis. Int J Colorectal Dis. 2021; 36(6):1077–1096. Search in Google Scholar

39. Miyamoto Y, Baba Y, Sakamoto Y, Ohuchi M, Tokunaga R, Kurashige J, Hiyoshi Y, Iwagami S, Yoshida N, Yoshida M, Watanabe M, Baba H. Sarcopenia is a Negative Prognostic Factor After Curative Resection of Colorectal Cancer. Ann Surg Oncol. 2015; 22(8):2663–8. Search in Google Scholar

40. Nakanishi R, Oki E, Sasaki S, Hirose K, Jogo T, Edahiro K, Korehisa S, Taniguchi D, Kudo K, Kurashige J, Sugiyama M, Nakashima Y, Ohgaki K, Saeki H, Maehara Y. Sarcopenia is an independent predictor of complications after colorectal cancer surgery. Surg Today. 2018; 48(2):151–157. Search in Google Scholar

41. Jochum SB, Kistner M, Wood EH, Hoscheit M, Nowak L, Poirier J, Eberhardt JM, Saclarides TJ, Hayden DM. Is sarcopenia a better predictor of complications than body mass index? Sarcopenia and surgical outcomes in patients with rectal cancer. Colorectal Dis. 2019; 21(12):1372–1378. Search in Google Scholar

42. Lieffers JR, Bathe OF, Fassbender K, Winget M, Baracos VE. Sarcopenia is associated with postoperative infection and delayed recovery from colorectal cancer resection surgery. Br J Cancer. 2012; 107(6):931–6. Search in Google Scholar

43. Olmez T, Karakose E, Keklikkiran ZZ, Ofluoglu CB, Bas T, Uzun O, Duman M, Polat E. Relationship between Sarcopenia and Surgical Site Infection in Patients Undergoing Colorectal Cancer Surgical Procedures. Surg Infect (Larchmt). 2020; 21(5):451–456. Search in Google Scholar

44. Jones HJS, Cunningham C. Adjuvant radiotherapy after local excision of rectal cancer. Acta Oncol. 2019; 58(1):S60-S64. Search in Google Scholar

45. Berkel AEM, Klaase JM, de Graaff F, Brusse-Keizer MGJ, Bongers BC, van Meeteren NLU. Patient’s Skeletal Muscle Radiation Attenuation and Sarcopenic Obesity are Associated with Postoperative Morbidity after Neoadjuvant Chemoradiation and Resection for Rectal Cancer. Dig Surg. 2019; 36(5):376–383. Search in Google Scholar

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