Publications by authors named "Shan Qiu"

Background: Upper extremity lymphedema (UEL) and lower extremity lymphedema (LEL) can develop as a result of lymph node dissection in the treatment of various malignancies. While emerging microsurgical interventions using lymphaticovenous anastomosis (LVA) and vascularized lymph node transfer (VLNT) show promising outcomes for patients with lymphedema, the best approach to implementing the two procedures remains to be defined. This systematic review and meta-analysis provide a comprehensive overview of published literature on the clinical improvement of extremity lymphedema in patients who undergo either LVA, VLNT, or a combined microsurgical procedure.

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Introduction: Up to one-fifth of breast cancer survivors will develop chronic breast cancer-related lymphoedema (BCRL). To date, complex physical decongestion therapy (CDT) is the gold standard of treatment. However, it is mainly symptomatic and often ineffective in preventing BCRL progression.

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This is a protocol for a Cochrane Review (intervention). The objectives are as follows: To assess the effects of microsurgery versus complex physical decongestive therapy in people with chronic breast cancer-related lymphoedema.

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Introduction: Controlled, gradually increased venous pressure exposure of lower extremity free flaps (dangling) is common, based on the assumption that this reduces (partial) flap loss. Dangling protocols potentially increase length of hospital stay and resource utilization. We investigated whether: (1) the proportion of partial flap loss 6 weeks after lower extremity free flap reconstruction is non-inferior after uncontrolled exposure compared to gradually increased venous pressure exposure; (2) there is a difference in length of hospital stay and major or minor adverse events 3 months after surgery.

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Article Synopsis
  • The study focused on the effectiveness of free tissue transplants in treating complex lower extremity defects, comparing outcomes from fasciocutaneous flaps and muscle flaps among patients.
  • Data from 206 eligible patients over several years indicated no significant differences in functionality or quality of life between the two flap types, though pain notably affected outcomes for both.
  • Key factors impacting patient-reported outcomes included obesity, diabetes, and mental health, suggesting that flap selection should consider these individual patient characteristics.
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In this study, we fabricated phosphorus-modified carbon felt electrode anodes for chloride oxidation in saline solutions to produce HClO via electrocatalysis, forming a compound fungicide saline applicable for debridement and disinfection. A low-cost phosphorus-modified carbon felt electrode (P@CF) with high chlorine evolution reaction activity was synthesized to address the reduced efficiency of CER and the solution's pH increase. Heteroatoms P and O were introduced into the carbon felt by phosphoric acid activation followed by heat treatment.

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Regarding curtailing carbon emissions in wastewater treatment, the high-rate contact stabilization (HiCS) process outperforms others in removing dissolved organic matter (DOM) but struggles with poor settling performance. To boost operation performance and clarify the correlation between process parameters, DOM variations, effluent quality, and microbial metabolism within the HiCS system, the impacts of sludge properties on sludge settlement and organic matter (OM) capture efficiency were explored, and soluble fluorescent components in the DOM and extracellular polymeric substances (EPS) were identified and scrutinized. Results unveil that the feast/famine (F/F) regime in the HiCS process predominantly governs sludge activation in the stabilization phase, influencing sludge properties such as morphology characteristics, biological activity, and EPS secretion.

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  • An electrochemical aptasensor was created using a DNA walker and catalytic hairpin assembly (CHA) to detect kanamycin, a type of antibiotic.
  • Kanamycin binds to an aptamer, releasing the DNA walker, which triggers a reaction resulting in amplified signals for increased sensitivity.
  • This method showed a limit of detection as low as 0.27 pM and proved effective in detecting kanamycin in milk and wastewater, indicating its potential for monitoring antibiotic levels in food and environmental samples.
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Article Synopsis
  • - A hydrophobic CuO cathode (CuO-L) was developed to enhance electro-Fenton (EF) treatment efficiency for emerging pollutants by increasing hydroxyl radical (·OH) generation by about 7.9 times compared to the original copper foam (Cu-F).
  • - The improved performance is linked to the CuO-L's superior ability to capture oxygen, aided by a thin hydrophobic gas layer, and a higher concentration of copper which boosts hydroxyl activation.
  • - The study tested the CuO-L cathode's effectiveness on sulfathiazole (STZ), providing important insights for designing better O-capturing electrodes in EF processes for organic pollutant removal.
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At present, the optimal therapeutic approach for the treatment of platinum-resistant recurrent ovarian cancer remains to be fully elucidated. The present systematic review and network meta-analysis aimed to elucidate the relative efficacy and safety of apatinib, administered either as monotherapy or in conjunction with chemotherapy, compared with chemotherapy alone, for the treatment of platinum-resistant recurrent ovarian cancer. The PubMed, Embase and Wanfang Data electronic databases were searched, where the search spanned from the conception of the databases until April 2023.

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The utilization of biodegradable mulch films (bio-MFs) is essential for agricultural safety. This study explored the effects of no MF (CK), aging bio-MF (BM), non-aging bio-MF (NBM), and aging polyethylene (PE)-MF (PEM) on swine manure composting. The results demonstrated that outdoor aging (45 days) accelerated the macroscopic degradation of bio-MF in the BM.

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Polyferric sulfate (PFS) and ferric chloride (FC) were compared for their efficiencies in capturing organic carbon and phosphorus, and their effects on the anaerobic fermentation process of sludge from a pilot-scale two-stage reactor were studied. Both PFS and FC promoted organic carbon and phosphorus capture. Further study revealed that PFS-based sludge with a dosage of 18 mg Fe/L showed a better volatile fatty acids (VFAs) production performance (202.

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Background: Treating tibial non-unions efficiently presents a challenge for orthopaedic trauma surgeons. The established gold standard involves implanting autologous bone graft with adequate fixation, but the addition of biologicals according to the so-called diamond concept has become increasingly popular in the treatment of non-unions. Previous studies have indicated that polytherapy, which involves implanting mesenchymal stem cells, bioactive factors and osteoconductive scaffolds, can improve bone healing.

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A sensitive electrochemical platform was constructed with NH-Cu-MOF as electrochemical probe to detect antibiotics using CRISPR/Cas12a system triggered by hybridization chain reaction (HCR). The sensing system consists of two HCR systems. HCR1 occurred on the electrode surface independent of the target, generating long dsDNA to connect signal probes and producing a strong electrochemical signal.

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Introduction: Cancer-related lymphoedema is one of the most debilitating side-effects of cancer treatment with an overall incidence of 15.5%. Patients may suffer from a variety of symptoms, possibly resulting in a diminished health-related quality of life (HRQoL).

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The WUSCHEL-related homeobox (WOX) gene family is vital for plant development and stress response. In this study, we conducted a comprehensive analysis of WOX genes in Cunninghamia lanceolata (C. lanceolata) and subsequently explored the potential roles of two ClWOX genes within the WUS clade.

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The residue of ampicillin (AMP) in food and ecological environment poses a potential harm to human health. Therefore, a reliable system for detecting AMP is in great demand. Herein, a label-free and sensitive electrochemical sensor utilizing NH-Co-MOF as an electrocatalytic active material for methylene blue (MB) was developed for rapid and facile AMP detection by combining hybridization chain reaction (HCR), catalytic hairpin assembly (CHA) with CRISPR/Cas12a.

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Breast cancer is the most prevalent malignancy among women worldwide, and the increasing number of survivors is due to advances in early diagnosis and treatment efficacy. Consequently, the risk of developing contralateral breast cancer (CBC) among these survivors has become a concern. While surgical intervention with lumpectomy is a widely used primary approach for breast cancer, post-operative breast asymmetry is a potential concern.

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Background And Objective: The Clagett procedure is one of the last treatment options for chronic stage pleural empyema. It involves the formation of an open-window in the thoracic wall to allow for continuous drainage and irrigation of the pleural cavity. Once the empyema has been resolved, reconstruction of the chest wall is sometimes challenging.

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Anaerobic ammonia oxidation (ANAMMOX), a sustainable biological process, is promising to remove NH-N from municipal sewage. In this study, results showed that the anammox granular sludge morphology changes with the alternation of dissolved oxygen (DO), mainly attributing to the adhesion of calcium ions (Ca) to the surface of sludge particles. Diverse characterization methods revealed that gray adhesions in the form of hydroxyapatite covered the original holes on the anammox granular sludge surface, including scanning Electron Microscopy (SEM), digital camera images, Energy Dispersive Spectrometer (EDS), and X-ray diffraction (XRD).

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Autotrophic denitrification (AD) without carbon source is an inevitable choice for denitrification of municipal wastewater under the carbon peaking and carbon neutrality goals. This study first employed sulfur-tourmaline-AD (STAD) as an innovative nitrate removal trial technique in wastewater. STAD demonstrated a 2.

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The electro-Fenton (EF) process generates HO through the 2e- oxygen reduction reaction (ORR), which is subsequently activated to •OH by iron-based catalysts. To alleviate the potential risk of external Fe-based catalysts, along with metal dissolution in acidic or neutral environments, in this study we employed oxygen-doped carbon nanotubes (OCNT) as a bifunctional, metal-free cathode to establish a metal-free EF process for organic pollutant degradation. The results demonstrate that the metal-free electrode has excellent HO accumulation (12 mg L cm) and degrades sulfathiazole (STZ) with 97.

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Microplastic (MP) pollution has become a global environmental problem, with particular concerns for its harmful effects on human health. Several studies have demonstrated that MP can penetrate animals and humans resulting in tissue dysfunction, but their influences on metabolism remain poorly understood. In this study, we investigated the impact of MP exposure on metabolism and the results showed that different treatment doses produce a bidirectional modulatory effects on mice.

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Objective: To describe a suitable alternative technique for reconstruction of the pelvic floor after extensive resection. To review our outcomes of gluteal VY plasty in the reconstruction of the pelvic floor after extensive abdominoperineal resection (conventional or extralevator abdominoperineal resection, total pelvic exenteration, or salvage surgery).

Design: Retrospective cohort study.

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Innovative techniques can help overcome the limitations of the human body. Operating on very small structures requires adequate vision of the surgical field and precise movements of sophisticated instruments. Both the human eye and hand are limited when performing microsurgery.

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