493 resultados para Microvascular


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The aim of the current study was to evaluate the expression of vascular endothelial growth factor (VEGF) and the microvascular density in canine soft-tissue sarcomas. Immunohistochemistry for VEGF expression was performed on 20 canine neoplasms by the streptavidin-biotin-peroxidase method using an anti-VEGF mouse monoclonal antibody (ab-119). The Volume fraction of microvessels in the sarcomas was quantified in hematoxylin and eosin-stained tissue sections. At least 10 fields of view (40x magnification) per neoplasm were analyzed by positioning a grid with 100 points and counting the microvessels that fell into the intersection points. This percentage was considered the volume fraction of these microvessels in the tumor section. VEGF expression was detected in 65% of the neoplasms. In 92.3% of the neoplasms, the expression occurred in the peritumor region; in 46.15%, in the intratumor region; and in 38.46%, the expression was present in both regions. The cells responsible for VEGF expression were fibroblasts and macrophages in the peritumor region or in the pseudocapsule and neoplastic cells in the intratumor region. Greater intratumoral VEGF was expressed in hemangiopericytomas (P = 0.04). No difference was present in the volume fraction of tumor microvessels between VEGF-positive and VEGF-negative neoplasms (P = 0.3416) or for the different types of neoplasms (P = 0.5). The results of this study suggest that VEGF participates in the angiogenesis of soft-tissue sat-coma in dogs. Additional research will be necessary to elucidate the contribution of VEGF to the progression of malignancy.

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Background: The prognostic significance of spontaneous regression in melanoma, especially thin lesions, has been a controversial issue for the past 20 years, although recent studies suggest that extensive and late regression may be related to worse prognosis. Many data suggest that lymphangiogenesis predicts metastatic spread in melanoma. Methods: We have quantified lymphatic microvascular density (LMVD) in thin (<= 1.0 mm) superficial spreading melanomas comparing regressive and nonregressive melanomas, regressive and nonregressive areas from the same tumor, and early and late histological stages of regression in the same tumor. In addition, we tried to correlate lymphangiogenesis and tumor growth phase. We conducted histological examinations and immunohistochemical analyses using monoclonal antibody D2-40 with subsequent quantification by image analysis of 37 melanomas, 16 regressive and 21 nonregressive (controls). Results: We found higher LMVD in the late stage of regression compared with nonregressive area (internal control) of regressive melanomas. Conclusions: Our study suggest that the late stage of spontaneous regression in thin melanomas may be related to worse prognosis as it showed higher LMVD, and evidence shows that this is related with increased risk of metastatic spread. But this supposition must be confirmed by a longer follow-up for detection of lymph node metastases.

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The present study aimed to evaluate the role of nitric oxide (NO) on hyperpnea-induced bronchoconstriction (HIB) and airway microvascular hyperpermeability (AMP). Sixty-four guinea pigs were anesthetized, tracheotonnized, cannulated, and connected to animal ventilator to obtain pulmonary baseline respiratory system resistance (Rrs). Animals were then submitted to 5 minutes hyperpnea and Rrs was evaluated during 15 minutes after hyperpnea. AMP was evaluated by Evans blue dye (25 mg/kg) extravasation in airway tissues. Constitutive and inductible NO was evaluated by pretreating animals with N(G)-nitro-1-arginine methyl ester (I-NAME) (50 mg/kg), aminoguadinine (AG) (50 mg/kg), and I-arginine (100 mg/kg) and exhaled NO (NOex) was evaluated before and after drug administration and hyperpnea. The results show that I-NAME potentiated (57%) HIB and this effect was totally reversed by I-arginine pretreatment, whereas AG did not have effect on HIB. I-NAME decreased basal AMP (48%), but neither I-NAME nor AG had any effect on hyperpnea-induced AMP. NOex levels were decreased by 50% with I-NAME, effect that was reversed by I-arginine treatment. These results suggest that constitutive but not inducible NO could have a bronchoprotective effect on HIB in guinea pigs. The authors also observed that neither constitutive nor inducible NO seems to have any effect on hyperpnea-induced AMP.

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Background: Since the first experiments with fibrin glue application in microvascular anastomoses in 1977, several studies have reported its benefits on suture reduction and anastomosis decreased time. In spite of that, clinical experience has been limited to two neurosurgical and two replantation case series, all of them with good results. This study was conducted to evaluate the feasibility and the potential benefits of fibrin glue application in free flaps. Methods: We performed 24 free flaps in 24 patients, from March 2005 to June 2006. Twenty were included in this study. They were divided into two groups according to the anastomosis technique: conventional group (n = 7 patients) and fibrin glue group (n = 13 patients). In the conventional group, the anastomosis was performed with interrupted sutures, whereas in the fibrin glue group, they were performed using less sutures and fibrin glue application. Results: The application of fibrin glue cut by half the number of sutures required to complete the anastomoses. The mean arterial and venous anastomotic times in the conventional group were 27.2 and 24.0 minutes, respectively. In the fibrin glue group, they were 13.6 and 12.6 minutes, respectively. All these differences were statistically significant. There was no significant difference of ischemic time between two groups (P = 0.26). The survival rate of the flaps was similar in both groups: 84.6% (11 of 13) in the fibrin glue group and 85.7% (6 of 7) in the conventional group (P = 1.0). Conclusions: Fibrin glue application in free flaps was feasible and allowed us to complete the anastomoses with fewer sutures and less time. The survival rate of the flaps was not adversely affected by the fibrin glue. (C) 2008 Wiley-Liss, Inc. Microsurgery 29:24-28, 2009.

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Background: Several studies have already reported the utilization of fibrin glue in microvascular anastomoses to minimize the number of sutures and to decrease the operative time. Despite the good results obtained in most of these experiments, its clinical application has not launched. The aim of this study was to clarify the controversies around the safeness of fibrin glue application in microvascular anastomoses, and also to demonstrate the potential benefits of fibrin glue application in a realistic free flap model. Methods: Twenty-seven rabbits were used in this study The experimental model consisted of a free groin flap transfer to the anterior cervical region. The flap`s circulation was restored by means of an end-to-side anastomosis between the femoral and carotid arteries, and an end-to-end anastomosis between the femoral and external jugular veins. The animals were divided into two groups (n = 10) according to the anastomosis technique: Group I (conventional suture) and group 11 (fibrin glue). Results: The number of sutures required to complete the arterial and venous anastomoses was reduced in 39 and 37% in group 11, respectively. Despite this reduction, the anastomoses maintained adequate patency rates and mechanical strength. Both arterial and venous anastomoses benefited from fibrin glue application, which made them easier and faster to perform. The flaps` ischemic time and the total operative time were also significantly shortened. Conclusions: In this study, the application of fibrin glue in microvascular anastomoses was safe and reliable. The risk-benefit ratio of fibrin glue application in microvascular anastomoses is favorable for its use. (c) 2008 Wiley-Liss, Inc.

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The objective of this report is to document the effects of an aerobic training program on myocardial perfusion, and endothelial function abnormalities, and on the relief of angina in a patient with microvascular myocardial ischemia. A 53-year-old female patient exhibited precordial pain on effort and angiographically normal coronaries. Her symptoms had been present for 4 yrs despite pharmacologic treatment for the control of risk factors, with myocardial perfusion scintigraphy revealing an extensive reversible perfusion defect. She was submitted to aerobic training for 4 mos, obtaining significant improvement of the anginal symptoms. Additionally, after the aerobic training program, scintigraphy revealed the disappearance of the myocardial perfusion defect, with a marked improvement of endothelium-dependent vasodilatory response and an improved quality-of-life score. These results suggest that aerobic training can improve endothelial function, leading to a reduction of ischemia and an improved quality-of-life in patients with microvascular myocardial ischemia.

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The presence of a basal nonselective cation permeability was mainly investigated in primary cultures of rat cardiac microvascular endothelial cells (CMEC) by applying both the patch-clamp technique and Fura-2 microfluorimetry. With low EGTA in the pipette solution, the resting membrane potential of CMEC was -21.2 +/- 1.1 mV, and a Ca2+-activated Cl- conductance was present. When the intracellular Ca2+ was buffered with high EGTA, the membrane potential decreased to 5.5 +/- 1.2 mV. In this condition, full or partial substitution of external Na+ by NMDG(+) proportionally reduced the inward component of the basal I-V relationship. This current was dependent on extracellular monovalent cations with a permeability sequence of K+ > Cs+ > Na+ > Li+ and was inhibited by Ca2+, La3+, Gd3+, and amiloride. The K+/Na+ permeability ratio, determined using the Goldman-Hodgkin-Katz equation, was 2.01. The outward component of the basal I-V relationship was reduced when intracellular K+ was replaced by NMDG(+), but was not sensitive to substitution by Cs+. Finally, microfluorimetric experiments indicated the existence of a basal Ca2+ entry pathway, inhibited by La3+ and Gd3+. The basal nonselective cation permeability in CMEC could be involved both in the control of myocardial ionic homeostasis, according to the model of the blood-heart barrier, and in the modulation of Ca2+ -dependent processes. (C) 2002 Elsevier Science (USA).

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Measurement of exchange of substances between blood and tissue has been a long-lasting challenge to physiologists, and considerable theoretical and experimental accomplishments were achieved before the development of the positron emission tomography (PET). Today, when modeling data from modern PET scanners, little use is made of earlier microvascular research in the compartmental models, which have become the standard model by which the vast majority of dynamic PET data are analysed. However, modern PET scanners provide data with a sufficient temporal resolution and good counting statistics to allow estimation of parameters in models with more physiological realism. We explore the standard compartmental model and find that incorporation of blood flow leads to paradoxes, such as kinetic rate constants being time-dependent, and tracers being cleared from a capillary faster than they can be supplied by blood flow. The inability of the standard model to incorporate blood flow consequently raises a need for models that include more physiology, and we develop microvascular models which remove the inconsistencies. The microvascular models can be regarded as a revision of the input function. Whereas the standard model uses the organ inlet concentration as the concentration throughout the vascular compartment, we consider models that make use of spatial averaging of the concentrations in the capillary volume, which is what the PET scanner actually registers. The microvascular models are developed for both single- and multi-capillary systems and include effects of non-exchanging vessels. They are suitable for analysing dynamic PET data from any capillary bed using either intravascular or diffusible tracers, in terms of physiological parameters which include regional blood flow. (C) 2003 Elsevier Ltd. All rights reserved.

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Today, the standard approach for the kinetic analysis of dynamic PET studies is compartment models, in which the tracer and its metabolites are confined to a few well-mixed compartments. We examine whether the standard model is suitable for modern PET data or whether theories including more physiologic realism can advance the interpretation of dynamic PET data. A more detailed microvascular theory is developed for intravascular tracers in single-capillary and multiple-capillary systems. The microvascular models, which account for concentration gradients in capillaries, are validated and compared with the standard model in a pig liver study. Methods: Eight pigs underwent a 5-min dynamic PET study after O-15-carbon monoxide inhalation. Throughout each experiment, hepatic arterial blood and portal venous blood were sampled, and flow was measured with transit-time flow meters. The hepatic dual-inlet concentration was calculated as the flow-weighted inlet concentration. Dynamic PET data were analyzed with a traditional single-compartment model and 2 microvascular models. Results: Microvascular models provided a better fit of the tissue activity of an intravascular tracer than did the compartment model. In particular, the early dynamic phase after a tracer bolus injection was much improved. The regional hepatic blood flow estimates provided by the microvascular models (1.3 +/- 0.3 mL min(-1) mL(-1) for the single-capillary model and 1.14 +/- 0.14 min(-1) mL(-1) for the multiple-capillary model) (mean +/- SEM mL of blood min(-1) mL of liver tissue(-1)) were in agreement with the total blood flow measured by flow meters and normalized to liver weight (1.03 +/- 0.12 mL min(-1) mL(-1)). Conclusion: Compared with the standard compartment model, the 2 microvascular models provide a superior description of tissue activity after an intravascular tracer bolus injection. The microvascular models include only parameters with a clear-cut physiologic interpretation and are applicable to capillary beds in any organ. In this study, the microvascular models were validated for the liver and provided quantitative regional flow estimates in agreement with flow measurements.

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INTRODUÇÃO: A neoangiogênese e a resposta imunológica são mecanismos importantes no desenvolvimento das metástases. OBJETIVO: Avaliar a reatividade linfonodal e a densidade microvascular nas metástases cervicais de carcinoma epidermóide com tumor primário oculto, considerando a sua relação com outras variáveis histológicas e clínicas. TIPO DE ESTUDO: Série de casos, retrospectiva. CASUÍSTICA E MÉTODO: 19 pacientes submetidos a esvaziamento cervical entre 1983 e 2000. Os linfonodos foram reavaliados quanto ao tipo de reatividade, considerando a área cortical e paracortical. Nas metástases foi avaliado o grau de diferenciação, desmoplasia, necrose, e densidade microvascular (CD34). Foi estabelecida a relação entre as diferentes variáveis histológicas e clínicas, incluindo o estadiamento e a evolução dos pacientes. RESULTADOS: A densidade microvascular apresentou mediana de 91 vasos/mm2, variando de 28 a 145. A reatividade paracortical foi mais freqüente nos pacientes com menos de 55 anos (90% x 44%, p= 0,05). A sobrevida livre de doença foi de 52% em 3 anos, sendo similar entre os pacientes com maior ou menor densidade microvascular tumoral. CONCLUSÕES: A densidade microvascular nas metástases de tumor primário oculto apresenta grande variação individual. Não foi possível estabelecer relação entre a densidade microvascular e as variáveis clínicas e histológicas estudadas.

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RESUMO: A operação de Nissen, por laparoscopia, é considerada a cirurgia antirefluxo mais adequada por ser a que melhor replica a fisiologia normal da válvula gastresofágica na maioria dos doentes com sintomas típicos de doença do refluxo gastresofágico (DRGE). São critérios técnicos o encerramento seguro dos pilares do diafragma e a criação de fundoplicatura completa (360 graus), curta (inferior a dois centímetros), lassa e sem tensão – desiderando para o qual a laqueação proximal dos vasos curtos gástricos é crucial. Realizei a operação de Nissen, por laparoscopia, em sessenta mulheres e quarenta homens com DRGE, sem mortalidade operatória, no Serviço de Cirurgia 6 do Hospital dos Capuchos, CHLC, EPE. Os cem doentes apresentavam média etária de 46 anos e queixas, com tempo de evolução entre 1 e 43 anos, de pirose (90%), regurgitação (80%), azia (73%), epigastralgias (54%). A endoscopia alta revelou esofagite de grau Savary-Miller 0-I (62%), II (23%), III (8%), IV (7%); hérnia de deslizamento (71%), hérnia paraesofágica (8%), sem hérnia (21%); a pHmetria de 24h diagnosticou padrão misto (38%), levantado (20%), deitado (20%), inconclusiva (22%) e a manometria diagnosticou EEI hipotónico (35%), peristálise esofágica normal (88%), hipomotilidade ligeira (5%) e foi omissa (7%). Hérnia hiatal, esofagite grave, ineficácia do controlo sintomático com inibidor da bomba de protões e desejo de descontinuidade terapêutica constituíram as indicações para tratamento cirúrgico. Por celioscopia, efetuei laqueação dos vasos curtos gástricos (70%), cruroplastia e fundoplicatura total (seda 2/0), curta (dimensão média 1,5-2 cm), lassa, sem tensão e sem calibração intraoperatória do esófago. A fundoplicatura de Nissen laparoscópica mostrou-se segura e eficaz no tratamento da DRGE. A sua idoneidade foi ainda comprovada pela normalização da pHmetria de 24 horas e da manometria pós-operatórias, com significado estatístico, num grupo de catorze voluntários assintomáticos. Em catamnese com recuo médio 30,7 meses 94% dos indivíduos persistem assintomáticos. Interrogando-me acerca das repercussões desta operação sobre a microcirculação do fundo gástrico coloquei, como premissa, a possibilidade de na operação de Nissen a laqueação dos vasos curtos poder induzir modificação no diâmetro arteriolar da parede do fundo gástrico. Para pesquisar a influência da laqueação dos vasos curtos gástricos e da fundoplicatura total sobre o calibre arteriolar da parede do estômago no cárdia, no fundo e na região dos vasos curtos gástricos, idealizei um Projeto de investigação experimental em cobaias. O Projeto foi desenvolvido no Centro de Investigação do Departamento de Anatomia da FCM-UNL. Para a sua realização obtive autorização da Comissão Científica e Pedagógica da FCM-UNL, requeri a acreditação como investigador à Direção Geral de Veterinária e, por recorrer à utilização de animais, submeti-o à Comissão de Ética da FCM-UNL, que o aprovou por unanimidade. Para limitar o número de animais utilizados ao mínimo necessário, calculei, por método estatístico, a quantidade de cobaias necessárias. Subdividindo-as num grupo de ensaio (GE), onde realizei a operação de Nissen, e num grupo de controlo (GC), onde apenas procedi a tração gástrica, defini e apliquei protocolos de anestesia, de cirurgia e de eutanásia, segundo os princípios dos 3R – Replacement, Reduction, Refinement da técnica de experimentação humana de Russell e Burch (1959) – uma estrutura ética amplamente aceite para a realização de experimentação científica humanizada com animais. A utilização das técnicas de estudo angiomorfológico permitiu-me analisar e descrever a anatomia normal, a vascularização arterial macroscópica, a microangioarquitetura, por microscopia eletrónica de varrimento de moldes de corrosão vascular, e a histologia da parede do estômago da cobaia. Procedi, também, à definição dos critérios morfológicos que considerei suscetíveis de validação deste modelo animal para o estudo proposto. Por razões académicas, foi necessário abreviar o Projeto encurtando, em cerca de dois anos, o prazo disponível para conclusão do estudo. Apreciando-o com o Gabinete de Análise Epidemiológica e Estatística do Centro de Investigação do CHLC, EPE, optou-se, perante a escassez de elementos após já terem sido recrutados 46 animais, por uma amostra, suplementar, de dimensão de conveniência de oito cobaias (quatro em cada grupo), condicionada pelo limite temporal universitário e pelo respeito pela dignidade dos animais. Neste subgrupo procedi, por microscopia eletrónica de varrimento, à medição dos calibres arteriolares nos moldes vasculares do cárdia, do fundo e da zona dos vasos curtos gástricos tanto no GC como no GE efetuando 469 medições no primeiro e 461 no último. Os dados foram enviados ao Centro de Investigação do CHLC, EPE que procedeu à sua análise estatística (ANOVA). A referida análise revelou que as arteríolas do plexo mucoso e as do plexo submucoso do cárdia, do fundo e da região dos vasos curtos gástricos, mostraram aumento de calibre no GE. O aumento foi, estatisticamente, significativo por ser superior a 50% do calibre do GC. Nos vasos curtos, a diferença foi mais pequena, mas persistiu sendo, estatisticamente, significativa. Os vasos retos dilataram na base, na sua emergência do plexo seroso, apenas no fundo gástrico. Na cobaia a operação de Nissen – fundoplicatura total com laqueação dos vasos curtos gástricos –, provocou vasodilatação arteriolar do fundo gástrico. Considero que essa vasodilatação constituiu acomodação à modificação introduzida e infiro que o mesmo possa acontecer no ser humano. Admito, assim, que também ocorra vasodilatação no ser humano, na sequência da laqueação dos vasos curtos gástricos, pela analogia microvascular entre as duas espécies e que essa vasodilatação corresponda, igualmente, a um mecanismo de adaptação arteriolar visando, por exemplo, suprir a perda incorrida pela laqueação. A associação experimental entre laqueação dos vasos curtos gástricos e realização de fundoplicatura total, que exerce aumento inerente de pressão sobre a JEG, não só não provocou défice da microcirculação do esófago distal ou do estômago proximal como desencadeou um mecanismo de vasodilatação fúndica que reforça o conceito de segurança da operação de Nissen para tratamento da DRGE. -------------- ABSTRACT: The laparoscopic Nissen operation is considered to be the most appropriate antirefluxsurgery because it suitably replicates the standard physiology of the gastroesophageal valve in most patients with typical symptoms of gastroesophageal reflux disease (GERD). The technical criteria includes the safe shutdown of the diafragmatic crura(cruroplasty) and the creation of a complete fundoplication (360 degrees), short (lesser than two inches), floppy and without tension – a goal for which the proximal ligation of the gastric short vessels is crucial. The laparoscopic Nissen operation was performed in sixty women and forty men with GERD, without any operative mortality, at the Surgical Department of the Hospital dos Capuchos, CHLC, EPE. The one hundred patients, averaged 46 years old, complained of heartburn (90%), regurgitation (80%) and upper abdominal pain (54 %). The endoscopy process revealed Savary-Miller esophagitis of grade 0-I (62%), II (23%), III (8%), IV (7%), sliding hernia (71%), paraesophageal hernia (8%) or no herniation (21%). The pHmetry/24h diagnosed mixed pattern (38%), raised (20%), lying (20%) or inconclusive (22%). The manometry diagnosed hypotensive LES (35%), normal esophageal peristalsis (88%), mild hypomotility (5%) and was absent (7%). Hiatal hernia, severe esophagitis, ineffective symptomatic control with proton pump inhibitor and request for treatment discontinuation were the signs for surgical action. A laparoscopic ligation of short gastric vessels (70%), cruroplasty and fundoplication (silk 2/0), short (average size 1.5–2 cm) and floppy, without tension and without intraoperative calibration of the esophagus were thus performed. The laparoscopic Nissen fundoplication behaved safe and effective in treating GERD. In a group of 14 asymptomatic volunteers its reputation was confirmed with statistical significance by normalization of postoperative pHmetry/24h and manometry. 94% of the individuals remained asymptomatic up to 30.7 months (average) in the follow-up. Interrogating myself about the impact of this operation on the microcirculation of the gastric fundus I put premised on the possibility of the ligation of the short gastric vessels in the Nissen procedure can induce changes in the arteriolar diameter in the Wall of the gastric fundus. To explore the influence of ligation of the short gastric vessels and the fundoplication at the arteriolar caliber of the cardia, the fundus and the region of the short vessels of the gastric wall, I designed a project of experimental research in guinea pigs with two interdependent components: one veterinary and another technical where I applied angiomorphological studies. The project was developed at the Research Centre of the Department of Anatomy FCMUNL. For its accomplishment I got permission from the Scientific and Pedagogical Committee of the FCM-UNL, I requested for accreditation as a researcher at the General Directorate of Veterinary and, by resorting to the use of animals I submitted it to the Ethics Committee of the FCM-UNL, which approved it unanimously. The guinea pigs were divided into two experimental groups: an experimental group (EG), in which the Nissen procedure was performed and a control group (CG) in which only a gastric traction was done. Protocols of anesthesia, surgery and euthanasia were applied according to the 3Rs – Replacement, Reduction, Refinement of the technique of human experimentation of Burch and Russell (1959) – a widely accepted ethical framework for conducting scientific experiments using animals humanely. Using histological and angiomorphological techniques, I performed the analysis and the description of the normal, macro and microvascular, anatomy of the guinea pig stomach and I defined the morphological criteria that I considered susceptible for validation of this animal model for the proposed study. By means of scanning electron microscopy I measured the arteriolar calibers of the vascular casts of the cardia, of the fundus and of the short gastric vessels in both CG and EG, making 469 measurements in the former and 461 in the latter. The data were sent to the Research Center of the CHLC which conducted the statistical analysis (ANOVA). The data were sent to the Centre for Research of the CHLC, EPE which proceeded to statistical analysis (ANOVA). This analysis revealed that the arterioles plexus of the mucosal and submucosal plexus of the cardia, fundus and region of the short gastric vessels, showed increased caliber in EG. The increase was statistically significant for being greater than 50% CG gauge. In the short gastric vessels, the difference was smaller, but persisted and statistically significant. Straight vessels were dilated at the base, on its emergence of the plexus serous only in the fundus. In the guinea pig, the Nissen procedure - complete fundoplication with ligation of the short gastric vessels - caused arteriolar vasodilation on the gastric fundus. I believe that this vasodilation constituted some accommodation to the modification introduced and infer that the same might happen in humans. I admit therefore that vasodilation also occurs in humans following the ligation of the short gastric vessels by microvascular analogy between the two species and that this vasodilation corresponds also to na adaptation mechanism arteriolar, for example, to compensate the loss incurred by ligation. The association of experimental ligation of the short gastric vessels with conducting complete fundoplication, which exerts increased pressure on the EGJ, not only did not cause a microcirculation deficit of the distal esophagus or proximal stomach as triggered a mechanism of fundic vasodilation which reinforces the security concept of the Nissen procedure for treatment of GERD.

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There is ample experimental and clinical evidence of functional and structural microvascular abnormalities occurring in patients with Chagas cardiomyopathy, possibly due to the inflammatory process and/or autonomic disturbances caused by Trypanosoma cruzi infection. Those microvascular derangements are likely to constitute at least an ancillary factor that potentiates and amplifies the chronic inflammation in myocardial tissue. It is possible to devise appropriate therapeutic interventions aimed at reverting or slowing the progression of the microvascular abnormalities to positively affect the natural history of Chagas cardiomyopathy.

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Nitric oxide (NO) is crucial for the microvascular homeostasis, but its role played in the microvascular alterations during sepsis remains controversial. We investigated NO-dependent vasodilation in the skin microcirculation and plasma levels of asymmetric dimethylarginine (ADMA), a potent endogenous inhibitor of the NO synthases, in a human model of sepsis. In this double-blind, randomized, crossover study, microvascular NO-dependent (local thermal hyperemia) and NO-independent vasodilation (post-occlusive reactive hyperemia) assessed by laser Doppler imaging, plasma levels of ADMA, and l-arginine were measured in seven healthy obese volunteers, immediately before and 4 h after either a i.v. bolus injection of Escherichia coli endotoxin (LPS; 2 ng/kg) or normal saline (placebo) on two different visits at least 2 weeks apart. LPS caused the expected systemic effects, including increases in heart rate (+43%, P < 0.001), cardiac output (+16%, P < 0.01), and rectal temperature (+1.4°C, P < 0.001), without change in arterial blood pressure. LPS affected neither baseline skin blood flow nor post-occlusive reactive hyperemia but decreased the NO-dependent local thermal hyperemia response, l-arginine, and, to a lesser extent, ADMA plasma levels. The changes in NO-dependent vasodilation were not correlated with the corresponding changes in the plasma levels of ADMA, l-arginine, or the l-arginine/ADMA ratio. Our results show for the first time that experimental endotoxemia in humans causes a specific decrease in endothelial NO-dependent vasodilation in the microcirculation, which cannot be explained by a change in ADMA levels. Microvascular NO deficiency might be responsible for the heterogeneity of tissue perfusion observed in sepsis and could be a therapeutic target.

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Purpose: To evaluate the safety-efficacy of Gamma Knife surgery (GKS) as a second treatment for classical trigeminal neuralgia (CTN), and the influence of prior microvascular decompression (MVD). Methods: Between July 1992 and November 2010, 737 patients have been operated with GKRS for ITN and prospectively evaluated in Timone University Hospital in Marseille, France. Among these, 54 patients had a previous history of MVD. Radiosurgery using a Gamma Knife (model B or C or Perfexion) was performed on the basis of on both MR and CT targeting. A single 4 mm isocenter was positioned in the cisternal portion of the trigeminal nerve at a median distance of 7.6 mm (range 3.9-11.9) anteriorly to the emergence of the nerve (retrogasserian target). A median maximum dose of 85 Gy (range 70-90) was delivered. Here, the 45 patients with previous MVD and a follow-up longer than one year are evaluated (the patients with megadolichobasilar artery compression and multiple sclerosis were excluded). Results: The median age in this series was 56.75 years (range 28.09-82.39). The median follow-up period was 39.48 months (range 14.10-144.65). All the patients had a past history of surgery, with at least one previous failed MVD, but also radiofrequency lesion (RFL) in 16 patients (35.6%), balloon microcompression in 7 (15.6%) and glycerol rhizotomy in 1 (2.2%). Thirty-five patients (77.8%) were initially pain free after GKS within a median time of 14 days (range 0, 180). Patients from this group had less probability of being pain free compared to our global population of essential trigeminal neuralgia without previous MVD history (p=0.010, hazard ratio of 0.64). Their probability of remaining pain free at 3, 5, 7 and 10 years was 66.5%, 59.1%, 59.1% and 44.3%, respectively. Twelve patients (34.3%) initially pain free experienced a recurrence with a median delay of 31.21 months (range 3.40-89.93). The hypoesthesia actuarial rate at 1 year was 9.1% and remained stable till 12 years with a median delay of onset of 8 months (range 8-8). Conclusions: Retrogasserian GKS proofed to be safe and effective on the long-term basis even after failed previous MVD. Even if the initial result of pain free was only 77.8%, the toxicity was low with only 9.1% hypoesthesia. No patient reported a bothersome hypoesthesia. The probability of maintaining pain relief in the long-term was of 44.3% at 10 years.

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Postnatal glucocorticoid treatment of preterm infants was mimicked by treating newborn rats with dexamethasone (0.1-0.01 microg/g, days 1-4). This regimen has been shown to cause delayed alveolarization. Knowing that microvascular maturation (transformation of double- to single-layered capillary networks in alveolar septa) and septal thinning prevent further alveolarization, we measured septal maturation on electron photomicrographs in treated and control animals. In treated rats and before day 10, we observed a premature nonreversing microvascular maturation and a transient septal thinning, which both appeared focally. In vascular casts of both groups, we observed contacts between the two capillary layers of immature alveolar septa, which were predictive for capillary fusions. Studying serial electron microscopic sections of human lungs, we were able to confirm the postulated fusion process for the first time. We conclude that alveolar microvascular maturation indeed occurs by capillary fusion and that the dexamethasone-induced impairment of alveolarization is associated with focal premature capillary fusion.