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1.
PurposeTo compare the characteristics of polidocanol (POL) and ethanolamine oleate (EO) sclerosing foams produced by a Shirasu porous glass membrane (SPGM) device with those made using a 3-way stopcock (3WSC).Materials and MethodsFoam half-life times were measured in an ex-vivo benchtop study. Computed tomography (CT) images of each foam were obtained over the time course, and a CT texture analysis was conducted. The bubble size in each foam was measured by an optical microscope.ResultsMedian foam half-life times were longer in the SPGM group than in the 3WSC group (POL: 198 vs 166 s, P = .02; EO: 640 vs 391 s, P < .01). In the CT texture analysis, median standard deviation (SD) and entropy (randomness) were lower, and median energy (uniformity) and gray-level cooccurrence matrix (GLCM) homogeneity were higher in the SPGM group than in the 3WSC group (POL SD: at 30 s and 50–300 s; POL entropy: at 0–60 s; EO SD: at 0–600 s; EO entropy: at 0–460 s; POL energy: at 0–40 s; POL GLCM homogeneity: at 0–250 s; EO energy: at 0–360 s; EO GLCM homogeneity: at 0–480 s; all P < .05). Median bubble diameters in the SPGM group and in the 3WSC group were 69 and 83 μm (P < .01), respectively, in the POL foam; and 36 and 36 μm (P = .45), respectively, in the EO foam.ConclusionsPOL and EO foams had greater uniformity and longer foam half-life time when prepared with an SPGM device than with a 3WSC.  相似文献   
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The degradation of organic pollutants in wastewaters assisted by oxide semiconductor nanostructures has been the focus of many research groups over the last decades, along with the synthesis of these nanomaterials by simple, eco-friendly, fast, and cost-effective processes. In this work, porous zinc oxide (ZnO) nanostructures were successfully synthesized via a microwave hydrothermal process. A layered zinc hydroxide carbonate (LZHC) precursor was obtained after 15 min of synthesis and submitted to different calcination temperatures to convert it into porous ZnO nanostructures. The influence of the calcination temperature (300, 500, and 700 °C) on the morphological, structural, and optical properties of the ZnO nanostructureswas investigated. All ZnO samples were tested as photocatalysts in the degradation of rhodamine B (RhB) under UV irradiation and natural sunlight. All samples showed enhanced photocatalytic activity under both light sources, with RhB being practically degraded within 60 min in both situations. The porous ZnO obtained at 700 °C showed the greatest photocatalytic activity due to its high crystallinity, with a degradation rate of 0.091 and 0.084 min−1 for UV light and sunlight, respectively. These results are a very important step towards the use of oxide semiconductors in the degradation of water pollutants mediated by natural sunlight.  相似文献   
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The main aim of this study was to analyze microtomographic data to determine the geometric dimensions of a ceramic porous material’s internal structure. Samples of a porous corundum biomaterial were the research material. The samples were prepared by chemical foaming and were measured using an X-ray scanner. In the next stage, 3D images of the samples were generated and analyzed using Thermo Scientific Avizo software. The analysis enabled the isolation of individual pores. Then, the parameters characterizing the pore geometry and the porosity of the samples were calculated. The last part of the research consisted of verifying the developed method by comparing the obtained results with the parameters obtained from the microscopic examinations of the biomaterial. The comparison of the results confirmed the correctness of the developed method. The developed methodology can be used to analyze biomaterial samples to assess the geometric dimensions of biomaterial pores.  相似文献   
5.
A computational method for generating porous materials and composite structures was developed and implemented. The method is based on using 3D Voronoi cells to partition a defined space into segments. The topology of the segments can be controlled by controlling the Voronoi cell set. The geometries can be realized by additive manufacturing methods, and materials can be assigned to each segment. The geometries are generated and processed virtually. The macroscopic mechanical properties of the resulting structures can be tuned by controlling microstructural features. The method is implemented in generating porous and composite structures using polymer filaments i.e., polylactic acid (PLA), thermoplastic polyurethane (TPU) and nylon. The geometries are realized using commercially available double nozzle fusion deposition modelling (FDM) equipment. The compressive properties of the generated porous and composite configurations are tested quasi statically. The structures are either porous of a single material or composites of two materials that are geometrically intertwined. The method is used to produce and explore promising material combinations that could otherwise be difficult to mix. It is potentially applicable with a variety of additive manufacturing methods, size scales, and materials for a range of potential applications.  相似文献   
6.
Porous carbon material with high specific surface area was prepared from soybean dreg by a simple and effective two-step method (high temperature pyrolysis and activation). The structural characteristics of the synthesized carbon were evaluated by Brunauer–Emmett–Teller (BET), N2 adsorption/desorption measurements/techniques, an elemental analyzer (EA), scanning electron microscopy equipped with energy dispersive X-ray spectroscopy (SEM-EDS), transmission electron microscopy (TEM), an X-ray diffractometer (XRD), Raman spectroscopy (Raman), a Fourier transform infrared spectrometer (FTIR), and X-ray photoelectron spectroscopy (XPS). The specific surface area of SDB-6-K was 2786 m2 g−1, the pore volume was 2.316 cm3 g−1, and the average pore size was 3.326 nm. The high specific surface area and effective functional groups of carbon material promoted the adsorption of methylene blue. The maximum adsorption capacity of SDB-6-K to methylene blue was 2636 mg g−1 at 318 K. The adsorption kinetic and isotherm data were most suitable for pseudo-second-order and Langmuir equations. The results showed that the adsorbent had excellent adsorptive ability and had good practical application potential in the field of dye wastewater treatment in the future.  相似文献   
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文题释义:快速成型:是一种材料加工方法,它是在现代CAD/CAM技术、激光技术、计算机数控技术、精密伺服驱动技术及新材料技术的基础上集成发展起来的。不同种类的快速成型系统因所用成形材料不同,成形原理和系统特点也各有不同,但基本原理都是“分层制造,逐层叠加”。 聚乳酸:是以乳酸为主要原料聚合得到的聚合物,具有良好的生物降解性、生物相容性以及延展性,但其机械强度不足,且降解后会产生酸性代谢产物,限制了其应用范围,常与其他一种或多种生物材料复合使用,以增强骨生物活性或生物力学强度。 背景:将多聚物材料与生物陶瓷材料复合制成有机/无机复合三维支架材料,可赋予支架骨传导所必需的理化特性,同时强化材料的力学性能,但大多数骨替代材料无法预防缺损部位的感染。研究发现由于镁的降解可产生局部碱性环境,使镁具有一定的抗菌活性。 目的:探讨含镁多孔支架材料的体外抗菌活性和细胞相容性。 方法:应用低温快速成型技术制备聚乳酸/β-磷酸三钙/镁多孔支架材料,其中β-磷酸三钙与镁的质量比分别为2∶1和1∶2,分别设为PTM(2∶1)组、PTM(1∶2)组;同时应用低温快速成型技术制备聚乳酸与聚乳酸/β-磷酸三钙多孔支架材料,分别设为P组、PT组。检测4组支架的表面形貌、孔径、孔隙率及压缩模量。将金黄色葡萄球菌(ATCC 35923)接种于4组支架表面24 h,通过涂板计数法和激光共聚焦显微镜观察材料的抗菌活性。将小鼠前成骨细胞MC3T3-E1分别与4组支架材料共培养,通过CCK-8法分析材料对细胞黏附和增殖的影响。 结果与结论:①4组支架材料表面都形成相对均匀的多孔结构,4组支架间孔径大小和孔隙率比较差异均无显著性意义(P > 0.05);②PTM(2∶1)组和PTM(1∶2)组压缩模量明显高于P组、PT组(P < 0.05),PTM(1∶2)组明显高于PTM(2∶1)组(P < 0.05);③涂板计数实验显示,PTM(2∶1)组、PTM(1∶2)组菌落形成单位明显低于P组、PT组(P < 0.05),其余组间比较差异无显著性意义(P > 0.05);④培养6 h,PT组、PTM(2∶1)组、PTM(1∶2)组黏附细胞数量多于P组(P < 0.05),PTM(2∶1)组和PTM(1∶2)组比较差异均无显著性意义(P > 0.05);⑤培养1 d时,仅PT组细胞增殖优于P组(P < 0.05);培养4,7 d时,PT组、PTM(2∶1)组、PTM(1∶2)组细胞增殖均优于P组(P < 0.05),PTM(2∶1)组和PTM(1∶2)组比较差异均无显著性意义(P > 0.05);⑥结果表明,聚乳酸/β-磷酸三钙/镁多孔支架材料不但具有良好的抗菌活性,而且具有优良的细胞相容性和一定的抗压能力。 ORCID: 0000-0002-3367-674X(马瑞) 中国组织工程研究杂志出版内容重点:生物材料;骨生物材料; 口腔生物材料; 纳米材料; 缓释材料; 材料相容性;组织工程  相似文献   
8.
目的 探讨碱性成纤维细胞生长因子(basic fibroblast growth factor,bFGF)对多孔钽颗粒修复犬颌骨缺损过程中的促进效果.方法 Beagle犬6只,建立下颌骨缺损模型共计36个,单侧3个骨缺损分别为多孔钽颗粒修复组(实验组A)、bFGF+多孔钽颗粒修复组(实验组B)、无干预组(对照组).术后4、8、12周各处死2只犬,行大体、X线、组织学观察及新生骨面积统计分析.结果 X线片示实验组与周围骨质结合良好,对照组12周后仍可见低密度骨缺损区域.甲苯胺蓝染色示术后8周及12周实验组B骨连续性及成熟度优于实验组A.术后4周实验组B新生骨形成面积明显大于实验组A(P<0.05),而8周末实验组A明显大于实验组B(P <0.05).结论 bFGF可增强多孔钽颗粒的骨修复能力.  相似文献   
9.
《Seminars in Arthroplasty》2015,26(2):108-111
Bone loss is commonly encountered during revision total knee arthroplasty (TKA). Small defects can be adequately managed with cement filling (with or without screws), modular prosthetic augments, and morselized allograft. For larger defects, cancellous impaction grafting and structural allografts have traditionally been utilized. More recently, highly porous tantalum cones and titanium sleeves have been designed to achieve axial and rotational stability in the metaphysis and subsequent biologic fixation. Sleeves are linked to one type of prosthesis, whereas cones are unlinked and can be used with any implant design. Multiple studies have demonstrated excellent survivorship and radiographic osseointegration at mid-term follow-up. This article provides a review of contemporary methods of bone loss management with a focus on highly porous metals and an emphasis on the authors’ preferred method for managing the severe bone loss in revision TKA.  相似文献   
10.
目的:利用复合松质骨基质(Cancellous bone matrix ,CBM)的中空多孔钛假体(Hollow porous titanium prostheses, HPTP)观察兔体内假体周围及内部骨生成情况,探讨人工假体与骨质整合的改进方法。方法设计中空多孔(孔径2 mm)和无孔两种假体,表面行羟基磷灰石(Hydroxyapatite ,HA)喷涂。实验组分为无孔假体组(A组)、HPTP组(B组)和HPTP+CBM组(C组),每组16例。将假体分别植入48只4~6个月龄新西兰大白兔右侧股骨外侧髁,饲养至第3、8、12周时取材,以X线、显微镜、电镜及形态计量软件观察复合假体表面及内部骨生成情况。采用SPSS13.0进行t检验分析。结果三组植入物外表面HA涂层的组织生长情况类似;A组无孔,未见骨长入,B组和C组中骨组织最终可长入假体2 mm大的圆孔;各时间点C组中空腔内骨生长率均明显高于B组(P<0.01)。结论骨质可经HPTP假体孔洞长入腔内,达到交锁固定,较无孔假体更稳定;中空腔复合CBM后可明显加快骨长入并诱导骨生成,使假体与骨质更好整合。  相似文献   
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