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4. Prognosis of sporadic resected small (≤ 2 cm) nonfunctional pancreatic neuroendocrine tumors - a multi-institutional study

17. Prognosis of sporadic resected small (≤2 cm) nonfunctional pancreatic neuroendocrine tumors – a multi-institutional study

18. Targeting nNOS ameliorates the severe neuropathic pain due to chronic pancreatitis.

19. R0 Versus R1 Resection Matters after Pancreaticoduodenectomy, and Less after Distal or Total Pancreatectomy for Pancreatic Cancer.

20. Pancreatic stump closure techniques and pancreatic fistula formation after distal pancreatectomy: Meta-analysis and single-center experience.

21. The impact of surgically placed, intraperitoneal drainage on morbidity and mortality after pancreas resection- A systematic review & meta-analysis.

22. Prognosis of sporadic resected small (≤2 cm) nonfunctional pancreatic neuroendocrine tumors - a multi-institutional study.

23. Surveillance strategy for small asymptomatic non-functional pancreatic neuroendocrine tumors - a systematic review and meta-analysis.

24. Preoperative biliary stenting versus operation first in jaundiced patients due to malignant lesions in the pancreatic head: A meta-analysis of current literature.

25. The impact of neoadjuvant therapy on the histopathological features of pancreatic ductal adenocarcinoma - A systematic review and meta-analysis.

26. The influence of neural invasion on survival and tumor recurrence in pancreatic ductal adenocarcinoma - A systematic review and meta-analysis.

27. Early pancreatic cancer lesions suppress pain through CXCL12-mediated chemoattraction of Schwann cells.

28. Nerve growth factor & TrkA as novel therapeutic targets in cancer.

29. Activated Schwann cells in pancreatic cancer are linked to analgesia via suppression of spinal astroglia and microglia.

30. Back pain as a potential indicator of local recurrence in pancreatic cancer.

31. Treatment options in painful chronic pancreatitis: a systematic review.

32. Simulating pancreatic neuroplasticity: in vitro dual-neuron plasticity assay.

33. The neurotrophic factor neurturin contributes toward an aggressive cancer cell phenotype, neuropathic pain and neuronal plasticity in pancreatic cancer.

34. Evidence of pancreatic neuropathy and neuropathic pain in hereditary chronic pancreatitis.

35. Neural plasticity in the gastrointestinal tract: chronic inflammation, neurotrophic signals, and hypersensitivity.

36. Neuronal plasticity in chronic pancreatitis is mediated via the neurturin/GFRα2 axis.

37. Pain mechanisms in chronic pancreatitis: of a master and his fire.

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