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254篇 您的检索式:作者名="MATOS L"
    题名 作者 年代 出处 被引量
1Hierarchical coordination in virtual enterprise infrastructure显示文摘Matos L M Afsamancsh H Lina C 1999Journal of Intelligent and Robotic Systenm1999,26,1:2
2Software Trace Cache显示文摘Alex Ramirez Josep L Larriba-Pey Mato Valero 2005IEEE Transaction on Computers2005,54,1:1
3Software Trace Cache显示文摘Alex Ramirez Josep L Larriba-Pey Mato Valero 2005IEEE Transaction on Computers2005,54,1:1
4Modified Microelectrodes and Multivariate Calibration for Flow Injection Amperometric Simultaneous Determination of Ascorbic Acid, Dopamine, Epinephrine and Dipyrone 显示文摘Matos R C Angnes L Araujo M C U 2000Analyst2000,125,:1
5Competitive adsorption of zinc,cadmium,copper and lead in three highly weathered Brazilian soils显示文摘Fontes M P F Matos A F Costa L M 2000Commun Soil Sci Plant Anal2000,31,:1
6Survey of Mycobacterium avium subspecies paratuberculosis in road-killed wild carnivores in Portugal显示文摘Matos A C Figueira L Martins M H 2014J Zoo Wildl Med2014,45,4:1
7Influence of limestone addition on the behavior of NO and N20 dur- ing fluidised bed coal combustion 显示文摘Tarelho L A C Matos M A A Pereira F J M A 2006Fuel2006,85,7:1
8Diagenesis and reservoir quality evolution of fluvial sandstones during progressive burial and uplift : evi- dence from the Upper Jurassic Boipeba Member, Recrncavo basin, Northeastern Brazil显示文摘Salem A M Morad S Mato L F 2000AAPG Bulletin2000,84,7:1
9Primary infection of goats with Eimeria ninakohlyakimovae does not provide protective immunity against high challenge infections显示文摘A. Ruiz M.C. Mu?oz J.M. Molina C. Hermosilla F. Rodríguez M. Andrada S. Martín A.Guedes D. Pérez L. Matos A.M. López A. Taubert 2013Small Ruminant Research2013,,1:1
10Antineoplastic activity of selected constituents of Duguetia glabriuscula 显示文摘Matos M F Leite L I Brustolim D 2006Fitoterapia2006,77,3:1
11Simultaneous follow-up of mouse colon lesions by colonoscopy and endoluminal ultrasound biomicroscopy显示文摘AIM:To evaluate the potential use of colonoscopy and endoluminal ultrasonic biomicroscopy(eUBM)to track the progression of mouse colonic lesions.METHODS:Ten mice were treated with a single azoxy-methane intraperitoneal injection(week 1)followed by seven days of a dextran sulfate sodium treatment in their drinking water(week 2)to induce inflammationassociated colon tumors.eUBM was performed simultaneously with colonoscopy at weeks 13,17-20 and21.A 3.6-F diameter 40 MHz mini-probe catheter was used for eUBM imaging.The ultrasound mini-probe catheter was inserted into the accessory channel of a pediatric flexible bronchofiberscope,allowing simultaneous acquisition of colonoscopic and eUBM images.During image acquisition,the mice were anesthetized with isoflurane and kept in a supine position over a stainless steel heated surgical waterbed at 37℃.Both eUBM and colonoscopic images were captured and stored when a lesion was detected by colonoscopy or when the eUBM image revealed a modified colon wall anatomy.During the procedure,the colon was irrigated with water that was injected through a flush port on the mini-probe catheter and that acted as the ultrasound coupling medium between the transducer and the colon wall.Once the acquisition of the last eUBM/colonoscopy section for each animal was completed,the colons were fixed,paraffin-embedded,and stained with hematoxylin and eosin.Colon images acquired at the first time-point for each mouse were compared with subsequent eUBM/colonoscopic images of the same sites obtained in the following acquisitions to evaluate lesion progression.RESULTS:All 10 mice had eUBM and colonoscopic images acquired at week 13(the first time-point).Two animals died immediately after the first imaging acquisition and,consequently,only 8 mice were subjected to the second eUBM/colonoscopy imaging acquisition(at the second time-point).Due to the advanced stage of colonic tumorigenesis,5 animals died after the second time-point image acquisition,and thus,only three were subjected to the third eUBM/colonoscopy imaging acquisition(the third time-point).eUBM was able to detect the four layers in healthy segments of colon:the mucosa(the first hyperechoic layer moving away from the mini-probe axis),followed by the muscularis mucosae(hypoechoic),the submucosa(the second hyperechoic layer)and the muscularis externa(the second hypoechoic layer).Hypoechoic regions between the mucosa and the muscularis externa layers represented lymphoid infiltrates,as confirmed by the corresponding histological images.Pedunculated tumors were represented by hyperechoic masses in the mucosa layer.Among the lesions that decreased in size between the first and third time-points,one of the lesions changed from a mucosal hyperplasia with ulceration at the top to a mucosal hyperplasia with lymphoid infiltrate and,finally,to small signs of mucosal hyperplasia and lymphoid infiltrate.In this case,while lesion regression and modification were observable in the eUBM images,colonoscopy was only able to detect the lesion at the first and second time-points,without the capacity to demonstrate the presence of lymphoid infiltrate.Regarding the lesions that increased in size,one of them started as a small elevation in the mucosa layer and progressed to a pedunculated tumor.In this case,while eUBM imaging revealed the lesion at the first time-point,colonoscopy was only able to detect it at the second time-point.All colonic lesions(tumors,lymphoid infiltrate and mucosal thickening)were identified by eUBM,while colonoscopy identified just76%of them.Colonoscopy identified all of the colonic tumors but failed to diagnose lymphoid infiltrates and increased mucosal thickness and failed to differentiate lymphoid infiltrates from small adenomas.During the observation period,most of the lesions(approximately67%)increased in size,approximately 14%remained unchanged,and 19%regressed.CONCLUSION:Combining eUBM with colonoscopy improves the diagnosis and the follow-up of mouse colonic lesions,adding transmural assessment of the bowel wall.Rossana C Soletti Kelly Z Alves Marcelo AP de Britto Dyanna G de Matos Mnica Soldan Helena L Borges Joo C Machado 2013World Journal of Gastroenterology2013,19,44:1
12A method for calculating stress intensities in bimaterial fracture 显示文摘Matos P P L McMeeking R M Charalambides P G 1989International Journal Fracture1989,40,:1
13Age-related effects of dexamethasone administration in adrenal zona reticularis显示文摘Almeida H Matos L Ferreira J 2006Ann N Y Acad Sci2006,1067,:1
14Dramatic change in Citrus tristeza virus populations in the Dominican Republic显示文摘MATOS L A HILF M E CAYETANO X A FELIZ A O HARPER S J FOLIMONOVA S Y 2013Plant Disease2013,97,:1
15Ethnopharmacological notes about ancient uses of medicinal plants in Trás-os-Montes (northern of Portugal)显示文摘José Manuel Neves Carla Matos Carla Moutinho Glória Queiroz Lígia Rebelo Gomes 2009Journal of Ethnopharmacology2009,,2:1
16Improving malignancy prediction in breast lesions with the combination of apparent diffusion coefficient and dynamic contrast-enhanced kinetic descriptors显示文摘Nogueira L Brando S Matos E 2015Clin Radiol2015,70,9:1
17The use of maximum SOFA score to quantify organ dysfunction/failure in intensive care results of aprospective multicenter study显示文摘MERENO R VINCENT J L MATOS R 1999Intersive Care Med1999,25,:1
18The electrochemical oxidation of xylitol on Pt(Ⅲ) in acid medium显示文摘MATOS J P F PROENCA L LOPES M I S 2004J Electroanal Chem2004,571,:1
19Elective neck dissection versus observation in stage I squamous cell carcinomas of the tongue and floor of the mouth 显示文摘DIAS F L KLIGERMAN J MATOS G 2001Otolaryngol Head Neck Surg2001,125,1:1
20Thermal decompo- sition of hydrated |anthanide picrates by TG/DTG and DSC an- alyses显示文摘Miranda Jr P Matos J R Mercuri L P 2002J Therm Anal Calorim2002,67,2:1
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