4 resultados para Volume changes
em Reposit
Resumo:
Myocardial contractility depends on several mechanisms such as coronary perfusion pressure (CPP) and flow as well as on a1-adrenoceptor stimulation. Both effects occur during the sympathetic stimulation mediated by norepinephrine. Norepinephrine increases force development in the heart and produces vasoconstriction increasing arterial pressure and, in turn, CPP. The contribution of each of these factors to the increase in myocardial performance needs to be clarified. Thus, in the present study we used two protocols: in the first we measured mean arterial pressure, left ventricular pressure and rate of rise of left ventricular pressure development in anesthetized rats (N = 10) submitted to phenylephrine (PE) stimulation before and after propranolol plus atropine treatment. These observations showed that in vivo a1-adrenergic stimulation increases left ventricular-developed pressure (P<0.05) together with arterial blood pressure (P<0.05). In the second protocol, we measured left ventricular isovolumic systolic pressure (ISP) and CPP in Langendorff constant flow-perfused hearts. The hearts (N = 7) were perfused with increasing flow rates under control conditions and PE or PE + nitroprusside (NP). Both CPP and ISP increased (P<0.01) as a function of flow. CPP changes were not affected by drug treatment but ISP increased (P<0.01). The largest ISP increase was obtained with PE + NP treatment (P<0.01). The results suggest that both mechanisms, i.e., direct stimulation of myocardial a1-adrenoceptors and increased flow, increased cardiac performance acting simultaneously and synergistically.
Resumo:
Obstructive apnea (OA) can exert significant effects on renal sympathetic nerve activity (RSNA) and hemodynamic parameters. The present study focuses on the modulatory actions of RSNA on OA-induced sodium and water retention. The experiments were performed in renal-denervated rats (D; N = 9), which were compared to sham (S; N = 9) rats. Mean arterial pressure (MAP) and heart rate (HR) were assessed via an intrafemoral catheter. A catheter was inserted into the bladder for urinary measurements. OA episodes were induced via occlusion of the catheter inserted into the trachea. After an equilibration period, OA was induced for 20 s every 2 min and the changes in urine, MAP, HR and RSNA were recorded. Renal denervation did not alter resting MAP (S: 113 ± 4 vs D: 115 ± 4 mmHg) or HR (S: 340 ± 12 vs D: 368 ± 11 bpm). An OA episode resulted in decreased HR and MAP in both groups, but D rats showed exacerbated hypotension and attenuated bradycardia (S: -12 ± 1 mmHg and -16 ± 2 bpm vs D: -16 ± 1 mmHg and 9 ± 2 bpm; P < 0.01). The basal urinary parameters did not change during or after OA in S rats. However, D rats showed significant increases both during and after OA. Renal sympathetic nerve activity in S rats increased (34 ± 9%) during apnea episodes. These results indicate that renal denervation induces elevations of sodium content and urine volume and alters bradycardia and hypotension patterns during total OA in unconscious rats.
Resumo:
The maintenance of arterial pressure at levels adequate to perfuse the tissues is a basic requirement for the constancy of the internal environment and survival. The objective of the present review was to provide information about the basic reflex mechanisms that are responsible for the moment-to-moment regulation of the cardiovascular system. We demonstrate that this control is largely provided by the action of arterial and non-arterial reflexes that detect and correct changes in arterial pressure (baroreflex), blood volume or chemical composition (mechano- and chemosensitive cardiopulmonary reflexes), and changes in blood-gas composition (chemoreceptor reflex). The importance of the integration of these cardiovascular reflexes is well understood and it is clear that processing mainly occurs in the nucleus tractus solitarii, although the mechanism is poorly understood. There are several indications that the interactions of baroreflex, chemoreflex and Bezold-Jarisch reflex inputs, and the central nervous system control the activity of autonomic preganglionic neurons through parallel afferent and efferent pathways to achieve cardiovascular homeostasis. It is surprising that so little appears in the literature about the integration of these neural reflexes in cardiovascular function. Thus, our purpose was to review the interplay between peripheral neural reflex mechanisms of arterial blood pressure and blood volume regulation in physiological and pathophysiological states. Special emphasis is placed on the experimental model of arterial hypertension induced by N-nitro-L-arginine methyl ester (L-NAME) in which the interplay of these three reflexes is demonstrable.
Resumo:
A baciloscopia é o principal método diagnóstico da tuberculose (TB) em razão do seu baixo custo, rapidez e facilidade de execução. Porém sua sensibilidade é baixa, principalmente nas formas paucibacilares da doença. Nesse sentido, novas metodologias que resultem no aumento da sensibilidade da baciloscopia tornam-se absolutamente necessárias. Neste estudo, nos propusemos a aprimorar e padronizar o sistema de filtração BacFil e avaliar sua performance e acurácia em amostras paucibacilares (lavado broncoalveolar). Para alcançar esses objetivos desenvolvemos o estudo em duas fases. Na primeira fase, foram realizados ensaios para definir: 1) utilização de membranas brancas para visualização de BAAR corados por Auramina-O; 2) aumento do volume de NALC, utilização de pérolas de vidro no processo de digestão das amostras e mudança no sistema do suporte do pré-filtro; 3) meios de fixação da membrana de filtração na lâmina de microscopia; 4) limite de detecção da técnica; 5) aumento do volume de NaOCl e a influência desse aumento na visualização de BAAR na membrana. Verificou-se que: a membrana de policarbonato branca tem a mesma eficiência da membrana de policarbonato preta na visualização de BAAR fluorescentes; o método modificado utilizando maior concentração de NALC, pérolas de vidro e sistema de pré-filtro baseado em orifícios obteve 98% de passagem das amostras pelo sistema; a melhor forma de fixação da membrana na lâmina foi obtida por intermédio da utilização de fita dupla face; o limite de detecção da técnica de filtração utilizando o sistema BacFil versão 6.0 foi de 2 a 9 BAAR por mililitro de suspensão bacteriana com D.O de 0,250 ± 0,01 a 625nm; o aumento da concentração de NaOCl para 10% ajuda na passagem de um maior volume de amostra pelo sistema, porém ocasiona a diminuição da quantidade BAAR na membrana de filtração após o período necessário para todo o processo. Na segunda fase foi avaliado acurácia da técnica padronizada em 101 amostras de lavado broncoalveolar (LBA) de pacientes com suspeita de TB provenientes do Hospital Universitário Cassiano Antônio de Moraes. Observou-se que a sensibilidade da técnica de filtração (BacFil versão 6.0) foi de 76% e especificidade de 95%. A sensibilidade obtida foi significativamente maior do que a observada na baciloscopia após centrifugação que foi de 59% (p = 0,001). No entanto, constatou-se uma diminuição de especificidade na técnica de filtração (95%) em relação a técnica de 8 centrifugação (99%). Concluímos que as modificações realizadas nos sistema de filtração permitiu sanar os problemas técnicos apresentados nas versões anteriores e aumentar a sensibilidade da baciloscopia de amostras paucibacilares (lavado broncoalveolar) para o diagnóstico da TB pulmonar.