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1.
Asian J Endosc Surg ; 13(1): 103-106, 2020 Jan.
Article in English | MEDLINE | ID: mdl-30843334

ABSTRACT

We describe a clinical case involving endoscopic treatment of a perforated duodenal ulcer using a partially polyurethane-covered self-expandable nitinol stent. A 93-year-old patient with severe cardiovascular comorbidity underwent a laparoscopic closure of a perforated duodenal ulcer. The early postoperative period was complicated by failure of the closure, and as a result, endoscopic treatment was performed, including the placement of a partially polyurethane-covered self-expandable nitinol stent. The treatment had a positive effect. Further study of the proposed method is required, and favorable results will allow endoscopists to actively introduce this procedure into clinical practice.


Subject(s)
Duodenal Ulcer/surgery , Duodenoscopy/methods , Intestinal Perforation/surgery , Prosthesis Implantation/methods , Stents , Aged, 80 and over , Alloys , Biocompatible Materials , Comorbidity , Duodenal Ulcer/complications , Duodenoscopy/instrumentation , Fatal Outcome , Humans , Intestinal Perforation/etiology , Laparoscopy , Polyurethanes , Prosthesis Implantation/instrumentation
2.
Phys Chem Chem Phys ; 20(23): 16167-16175, 2018 Jun 13.
Article in English | MEDLINE | ID: mdl-29855651

ABSTRACT

The X-ray photoelectron spectral structure of CeO2 valence electrons in the binding energy range of 0 to ∼50 eV was analyzed. The core-electron spectral structure parameters and the results of relativistic discrete-variational calculations of CeO8 and Ce63O216 clusters were taken into account. Comparison of the valence and the core-electron spectral structures showed that the formation of the inner (IVMO) and the outer (OVMO) valence molecular orbitals contributes to the spectral structure more than the many-body processes. The Ce 4f electrons were established to participate directly in chemical bond formation in CeO2 losing partially their f character. They were found to be localized mostly within the outer valence band. The Ce 5p atomic orbitals were shown to participate in the formation of both the inner and the outer valence molecular orbitals (MOs). A large part in the IVMO formation is taken by the filled Ce 5p1/2, 5p3/2 and O 2s atomic shells, while the Ce 5s electrons participate weakly in the chemical bond formation. The composition and the sequent order of the molecular orbitals in the binding energy range of 0 to ∼50 eV were established. A quantitative scheme for the molecular orbitals of CeO2 was built. This scheme is fundamental for understanding the nature of chemical bonding and also for the interpretation of other X-ray spectra of CeO2. Evaluations revealed that the IVMO electrons weaken the chemical bond formed by the OVMO electrons by 37%.

3.
Clin Transplant ; 31(7)2017 07.
Article in English | MEDLINE | ID: mdl-28444815

ABSTRACT

AIM: An evaluation of the efficacy of endoscopic methods for the diagnosis and correction of surgical and immunological complications after retroperitoneal pancreas transplantation. MATERIALS AND METHODS: From October 2011 to March 2015, 27 patients underwent simultaneous retroperitoneal pancreas-kidney transplantation (SPKT). Diagnostic oesophagogastroduodenoscopy (EGD) with protocol biopsy of the donor and recipient duodenal mucosa and endoscopic retrograde pancreatography (ERP) were performed to detect possible complications. Endoscopic stenting of the main pancreatic duct with plastic stents and three-stage endoscopic hemostasis were conducted to correct the identified complications. RESULTS: Endoscopic methods showed high efficiency in the timely diagnosis and adequate correction of complications after retroperitoneal pancreas transplantation.


Subject(s)
Cholangiopancreatography, Endoscopic Retrograde/methods , Kidney Transplantation/methods , Pancreas Transplantation/methods , Pancreas/diagnostic imaging , Retroperitoneal Space/diagnostic imaging , Adolescent , Adult , Child , Child, Preschool , Female , Follow-Up Studies , Humans , Male , Middle Aged , Prognosis , Young Adult
4.
Inorg Chem ; 55(16): 8059-70, 2016 Aug 15.
Article in English | MEDLINE | ID: mdl-27490370

ABSTRACT

XPS determination of the oxygen coefficient kO = 2 + x and ionic (U(4+), U(5+), and U(6+)) composition of oxides UO2+x formed on the surfaces of differently oriented (hkl) planes of thin UO2 films on LSAT (Al10La3O51Sr14Ta7) and YSZ (yttria-stabilized zirconia) substrates was performed. The U 4f and O 1s core-electron peak intensities as well as the U 5f relative intensity before and after the (129)Xe(23+) and (238)U(31+) irradiations were employed. It was found that the presence of uranium dioxide film in air results in formation of oxide UO2+x on the surface with mean oxygen coefficients kO in the range 2.07-2.11 on LSAT and 2.17-2.23 on YSZ substrates. These oxygen coefficients depend on the substrate and weakly on the crystallographic orientation. On the basis of the spectral parameters it was established that uranium dioxide films AP2,3 on the LSAT substrates have the smallest kO values, and from the XRD and EBSD results it follows that these samples have a regular monocrystalline structure. The XRD and EBSD results indicate that samples AP5-7 on the YSZ substrates have monocrystalline structure; however, they have the highest kO values. The observed difference in the kO values was probably caused by the different nature of the substrates: the YSZ substrates provide 6.4% compressive strain, whereas (001) LSAT substrates result only in 0.03% tensile strain in the UO2 films. (129)Xe(23+) irradiation (92 MeV, 4.8 × 10(15) ions/cm(2)) of uranium dioxide films on the LSAT substrates was shown to destroy both long-range ordering and uranium close environment, which results in an increase of uranium oxidation state and regrouping of oxygen ions in uranium close environment. (238)U(31+) (110 MeV, 5 × 10(10), 5 × 10(11), 5 × 10(12) ions/cm(2)) irradiations of uranium dioxide films on the YSZ substrates were shown to form the lattice damage only with partial destruction of the long-range ordering.

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