Publications by authors named "Ye-Chuan Xu"

Article Synopsis
  • - This study investigates the best treatment and prognosis for patients with spontaneous ruptures of hepatocellular carcinoma (HCC) using data from 325 ruptured cases compared to 2,291 non-ruptured cases.
  • - Results showed that the survival outcomes for patients with ruptured HCC are generally poor, with a median overall survival of only 17 months; however, outcomes improve significantly when treated with trans-arterial embolization (TAE) combined with two-stage hepatectomy.
  • - The findings suggest that TAE plus two-stage hepatectomy is the most effective treatment for ruptured HCC, and proper therapeutic strategies can lead to similar prognoses between ruptured and non-ruptured patients. *
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Background: Talin-1 (TLN-1) and TLN-2 are implicated in many cellular processes, but their roles in hepatocellular carcinoma (HCC) remain unclear. This study aimed to assess cell cycle distribution, anoikis, invasion and migration in human HCC MHCC-97 L cells.

Methods: MHCC-97 L cells, which highly express TLN-1, were transduced with TLN-1 shRNA (experimental group) or scramble shRNA (negative control group); non-transduced MHCC-97 L cells were used as blank controls.

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We use the state-of-the-art density-functional-theory method to study various magnetic orders and their effects on the electronic structures of FeSe. Our calculated results show that, for the spins of the single Fe layer, the striped antiferromagnetic orders with distortion are more favorable in total energy than the checkerboard antiferromagnetic orders with tetragonal symmetry, which is consistent with known experimental data, and the interlayer magnetic interaction is very weak. We investigate the electronic structures and magnetic property of the distorted phases.

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We propose a natural two-speed model for the phase dynamics of Si(111) 7 x 7 phase transition to high-temperature unreconstructed phase. We formulate the phase dynamics by using phase-field method and adaptive mesh refinement. Our simulated results show that a 7 x 7 island decays with its shape kept unchanged, and its area decay rate is shown to be a constant increasing with its initial area.

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