Publications by authors named "Wenxiong Zhou"

The evolution of acupuncture anesthesia (AA) has spanned six decades. Cardiothoracic surgery serves as a representative case study to illustrate this evolution. Reflecting on its historical development, the use of AA in cardiothoracic surgery has advanced from basic AA procedures in the 1960s to combined acupuncture and drug anesthesia techniques in the early 1980s.

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High-throughput sequencing technologies generate a vast number of DNA sequence reads simultaneously, which are subsequently analysed using the information contained within these fragmented reads. The assessment of sequencing technology relies on information efficiency, which measures the amount of information entropy produced per sequencing reaction cycle. Here we propose a fuzzy sequencing strategy that exhibits information efficiency more than twice that of currently prevailing cyclic reversible terminator sequencing methods.

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Acupuncture anesthesia is an innovative anesthesia technique which combines acupuncture therapy of traditional Chinese medicine with western anesthesia and surgery. Modern acupuncture anesthesia technology involves comprehensive preoperative evaluation and application, intraoperative assistance in anesthesia, and enhanced recovery after surgery, forming a set of perioperative management models with Chinese characteristics. In the present paper, we comprehensively summarized the application scenarios (including craniocerebral operations, neck surgery, cardiac and thoracic surgery, abdominal operation, obstetrical and gynecological operations, anorectal operation, and orthopedic operation) and values (such as analgesia, reduction in nausea and vomiting, accelerating recovery of gastrointestinal function, regulating immune function, etc.

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Modern acupuncture anesthesia is the application of acupuncture-related therapies to optimize the perioperative management which is based on the combined acupuncture-medicine anesthesia technology, and building a perioperative acupuncture anesthesia accelerated rehabilitation system. Based on the thoracic surgery, this paper analyzes and summarizes the application effects of modern acupuncture anesthesia, focusing on preoperative anxiety relief and advanced analgesia; reduce the dosage of anesthetics, stable respiration and hemodynamics, anti-stress and organ protection during surgery; postoperative analgesia, prevention of nausea, vomiting and cognitive impairment, improvement of gastrointestinal function, prevention of cognitive impairment, and enhancement of immunity. It is anticipated that this review may provide a basis for the further promotion and application of modern acupuncture anesthesia in clinical practice.

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Background: Anaemia is common in patients with chronic kidney disease (CKD) and is a major risk factor that contributes to mortality in such patients. Type 2 diabetes mellitus (T2DM) is one of the leading causes of CKD. The association between admission hemoglobin levels and renal damage in patients with T2DM remains unclear.

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An error-correction code (ECC) sequencing approach has recently been reported to effectively reduce sequencing errors by interrogating a DNA fragment with three orthogonal degenerate sequencing-by-synthesis (SBS) reactions. However, similar to other non-single-molecule SBS methods, the reaction will gradually lose its synchronization within a molecular colony in ECC sequencing. This phenomenon, called dephasing, causes sequencing error, and in ECC sequencing, induces distinctive dephasing patterns.

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Objective: To investigate the action mechanisms of electroacupuncture (EA) on postoperative immunosuppression.

Methods: Male C57BL/6 mice (5`-7 weeks old) were randomly divided into: the sham injury group, the surgical trauma stressed group, the EA group [surgery + 2/100 Hz EA at Neiguan (PC 6)], and the EA+ Nal (surgery + EA + intraperitoneal injection of naloxone). Abdominal surgical trauma stress mice model was established.

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Introduction: Previous studies have shown that TGF-β1/Smad3 signaling promotes renal fibrosis by inhibiting miR-29. To date, only few studies have reportedon circulating microRNAs in IgA nephropathy (IgAN). However, the plasma expression of miR-29a and its role in patients with IgAN remains unclear.

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Purpose: The heart and kidney are of utmost importance for the maintenance of cardiovascular (CV) homeostasis. The relationship between cardiac remodeling, especially the left ventricular hypertrophy (LVH) and renal damage reflected by the estimated glomerular filtration rate (eGFR), decline in type 2 diabetes mellitus (T2DM) patients is unclear. And it is also unknown whether cardiac remodeling can be used to assess the eGFR decline in T2DM patients.

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Eliminating errors in next-generation DNA sequencing has proved challenging. Here we present error-correction code (ECC) sequencing, a method to greatly improve sequencing accuracy by combining fluorogenic sequencing-by-synthesis (SBS) with an information theory-based error-correction algorithm. ECC embeds redundancy in sequencing reads by creating three orthogonal degenerate sequences, generated by alternate dual-base reactions.

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Electrolyte gating is widely used to induce large carrier density modulation on solid surfaces to explore various properties. Most of past works have attributed the charge modulation to electrostatic field effect. However, some recent reports have argued that the electrolyte gating effect in VO, TiO, and SrTiO originated from field-induced oxygen vacancy formation.

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Resistive switching phenomena form the basis of competing memory technologies. Among them, resistive switching, originating from oxygen vacancy migration (OVM), and ferroelectric switching offer two promising approaches. OVM in oxide films/heterostructures can exhibit high/low resistive state via conducting filament forming/deforming, while the resistive switching of ferroelectric tunnel junctions (FTJs) arises from barrier height or width variation while ferroelectric polarization reverses between asymmetric electrodes.

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Article Synopsis
  • Researchers demonstrated how ionic liquids in an electronic double layer transistor (EDLT) can modulate the electrical properties of materials, particularly focusing on the LaAlO3/SrTiO3 interface.
  • By adjusting the gate voltages, they achieved significant depletion of charge carriers, resulting in remarkable electron mobility reaching up to 19,380 cm²/(V s).
  • Their findings suggest that using ionic liquids can enhance the performance of high-mobility oxide interfaces and facilitate quantum phenomena.
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Since the discovery of two-dimensional electron gas (2DEG) at the oxide interface of LaAlO3/SrTiO3 (LAO/STO), improving carrier mobility has become an important issue for device applications. In this paper, by using an alternate polar perovskite insulator (La0.3Sr0.

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Whole-genome amplification (WGA) for next-generation sequencing has seen wide applications in biology and medicine when characterization of the genome of a single cell is required. High uniformity and fidelity of WGA is needed to accurately determine genomic variations, such as copy number variations (CNVs) and single-nucleotide variations (SNVs). Prevailing WGA methods have been limited by fluctuation of the amplification yield along the genome, as well as false-positive and -negative errors for SNV identification.

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Fluorogenic sequencing is a sequencing-by-synthesis technology that combines the advantages of pyrosequencing and fluorescence detection. With native duplex DNA as the major product, we employ polymerase to incorporate the complement- arily matched terminal phosphate-labeled fluorogenic nucleotides into the DNA template and release halogen-fluorescein as the reporter. This red-emitting fluorophore successfully avoids spectral overlap with the autofluorescence background of the flow chip.

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Objective: To summarize post-operative management strategy for heart valve replacement surgery under transcutaneous electrical acupoint stimulation (TEAS) combined with general anesthesia.

Methods: From July 2006 to June 2012, a total of 86 cases of open-heart surgery patients experiencing TEAS plus general anesthesia with cardiopulmonary bypass (heart valve replacement surgery without intubation) were recruited in the present summary. Post-operative managements in the Intensive Care Unit (ICU) were administrated with strict hemodynamic monitoring for volume infusion, routine administration of vasoactive drugs (including dopamine and nitroglycerin), oxygen inhalation, and analgesics and monitoring of central nervous system and renal function.

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Objective: To determine whether electroacupuncture (EA) intervention combined with general anesthesia (GA) strategy can reduce early post-operative morbidity and medical costs in patients undergoing heart valve replacement operation under cardiopulmonary bypass.

Methods: A total of 160 heart valve replacement surgery patients undergoing cardiopulmonary bypass were randomly divided into GA and EA + GA groups (n = 80 in each group). Patients of the GA group were given with intravenous injection of Fentanyl, Midazolam, Vecuronium Bromide, etc.

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Background: Although the use of acupuncture anesthesia for open heart surgery, which was introduced in China four decades ago, has declined in recent years, there is a renewed interest in it in contemporary China due to the escalating medical costs associated with open heart surgery. This study was aimed to determine whether a combined acupuncture-medicine anesthesia (CAMA) strategy reduces early postoperative morbidity and medical costs in patients undergoing open heart operation under cardiopulmonary bypass.

Methods: From July 2006 to October 2010, CAMA was applied in 100 patients undergoing open heart surgery in comparison with another 100 patients under the conventional general anesthesia (GA).

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