280 resultados para Caudal Autotomy


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Las neuronas de la raíz coclear son las primeras neuronas del sistema nervioso central a recibir la información auditiva proveniente de la cóclea y se conectan con centros de integración sensoriomotora del tronco encefálico, especialmente con el núcleo reticular caudal del puente. Funcionalmente las neuronas de la raíz coclear están envueltos en el circuito elemental del reflejo auditivo de sobresalto juntamente con las células ganglionares del órgano de Corti, el núcleo reticular caudal del puente y las motoneuronas de la médula espinal. El reflejo auditivo de sobresalto presenta una serie de modulaciones como la habituación, la sensibilización, la inhibición por estímulo previo y la potenciación por un estímulo adverso. Las alteraciones en la reacción refleja de sobresalto y sus diferentes modulaciones poseen valor diagnóstico en la clínica médica de enfermedades neurodegenerativas y psiquiátricas como Parkinson y Esquizofrenia. Las modulaciones del reflejo auditivo de sobresalto ocurren mediante la influencia de diversos núcleos sobre los componentes del circuito elemental de este reflejo. El núcleo menos estudiado del circuito neural del reflejo auditivo de sobresalto es el núcleo de la raíz coclear. El patrón de conectividad eferente de las neuronas de la raíz coclear es bien conocido, sin embargo poco se conoce sobre los orígenes de sus aferencias y la identidad neuroquímica de las mismas. Estudios previos demostraron que el soma y en las dendritas de las neuronas de la raíz coclear están cubiertos por botones sinápticos de cuatro tipos, sugiriendo que existan diversos orígenes para estos terminales axonales, con características neuroquímicas propias. El conocimiento de las aferencias a las neuronas de la raíz coclear es relevante para comprender cual el papel del núcleo de la raíz coclear en las modulaciones del reflejo auditivo de sobresalto. Por lo tanto, ...

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Atualmente, é grande a quantidade de cursos d’água continentais que se encontram contaminados por poluentes, tais como produtos químicos, metais, esgoto e detergentes biodegradáveis. Tendo em vista o fato de a musculatura possuir um papel fundamental na realização do nado em peixes, sua importância se reflete em atividades como caça, fuga, procura pelo alimento, defesa, migração, etc. Alterações na estrutura muscular de peixes, que possam vir a ocorrer devido à presença de poluentes na água trarão sérias implicações para o modo de vida destes, especialmente no caso de Astyanax altiparanae que é uma espécie pelágica e nadadora ativa. Consequentemente, tem havido uma crescente preocupação em relação aos poluentes e os efeitos que estes podem ter sobre as populações de peixes que habitam esses ambientes aquáticos poluídos, uma vez que estes constituem uma das fontes de alimento mais importantes para certas populações humanas assim como a principal fonte de renda para comunidades pesqueiras. Sendo assim, pretendeu-se por meio do presente estudo, analisar e identificar possíveis alterações na estrutura morfológica da musculatura peitoral e caudal em peixes de pequeno porte como Astyanax altiparanae, bem como analisar a ocorrência de um possível envelhecimento precoce destas, que possam ter sido causados pelos poluentes contidos na água com detergente diluído, na água do Lago Azul, Rio Claro, SP, em comparação com a água pura do poço artesiano da UNESP – Campus Rio Claro que foi clorada de acordo com o modelo requerido pela SABESP e constituiu o grupo controle. A análise foi feita com base na comparação do grupo controle com aqueles expostos aos poluentes e foram utilizadas técnicas de histologia, histoquímica e fluorescência

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Oncology is presenting an important role in clinical practice as a speciality in recent years in Veterinary Medicine. Mammary gland tumors are detected mainly in old and middleaged bitches that are sexually intact or spayed and the caudal abdominal and inguinal mammary glands are the most affected and they present a percentage up to 75% of malignancy. The majority of dogs with mammary neoplasms are clinically healthy at the time of diagnosis and the tumors can be identified by the owner or a professional during a routine physical examination. Cytological examination of fine needle aspirates can be performed. This procedure is easy and low cost and some criteria that may indicate malignancy are evaluated, however to obtain a definitive diagnosis is performed histopathology of the excised tissue or from biopsy. Regional lymph nodes are the first lymph node to receive lymphatic drainage from the neoplasm. They are at the highest risk of regional metastasis, while the lung is the most common site for distant metastasis. Determining the clinical stage enables the definition of the extension of the tumor. As a consequence, this allows a prognosis to be established and treatment to be planned. The type of therapy to be chosen incites controversy since there are numerous treatment options described, but the surgery is the chosen treatment. However, surgery is not always effective for malignant tumors, and recurrences may occur and in these cases, auxiliary chemotherapy treatments are used. The prognosis for animals that have mammary tumors depends on several factors, such as: size, stage, type of tumor cells and clinical behavior of the tumor, age and medical condition of the animal, and presence of metastasis. Because of this, more detailed studies are needed based on epidemiological surveys in order to provide more informations about risk factors, prevalence and follow-up after treatment of mammary... (Complete abstract click electronic access below)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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The involvement of glutamatergic neurotransmission in the rostral ventrolateral medulla/Bötzinger/pre-Bötzinger complexes (RVLM/BötC/pre-BötC) on the respiratory modulation of sympathoexcitatory response to peripheral chemoreflex activation (chemoreflex) was evaluated in the working heart-brain stem preparation of juvenile rats. We identified different types of baro- and chemosensitive presympathetic and respiratory neurons intermingled within the RVLM/BötC/pre-BötC. Bilateral microinjections of kynurenic acid (KYN) into the rostral aspect of RVLM (RVLM/BötC) produced an additional increase in frequency of the phrenic nerve (PN: 0.38 ± 0.02 vs. 1 ± 0.08 Hz; P < 0.05; n = 18) and hypoglossal (HN) inspiratory response (41 ± 2 vs. 82 ± 2%; P < 0.05; n = 8), but decreased postinspiratory (35 ± 3 vs. 12 ± 2%; P < 0.05) and late-expiratory (24 ± 4 vs. 2 ±1%; P < 0.05; n = 5) abdominal (AbN) responses to chemoreflex. Likewise, expiratory vagal (cVN; 67 ± 6 vs. 40 ± 2%; P < 0.05; n = 5) and expiratory component of sympathoexcitatory (77 ± 8 vs. 26 ± 5%; P < 0.05; n = 18) responses to chemoreflex were reduced after KYN microinjections into RVLM/BötC. KYN microinjected into the caudal aspect of the RVLM (RVLM/pre-BötC; n = 16) abolished inspiratory responses [PN (n = 16) and HN (n = 6)], and no changes in magnitude of sympathoexcitatory (n = 16) and expiratory (AbN and cVN; n = 10) responses to chemoreflex, producing similar and phase-locked vagal, abdominal, and sympathetic responses. We conclude that in relation to chemoreflex activation 1) ionotropic glutamate receptors in RVLM/BötC and RVLM/pre-BötC are pivotal to expiratory and inspiratory responses, respectively; and 2) activation of ionotropic glutamate receptors in RVLM/BötC is essential to the coupling of active expiration and sympathoexcitatory response.

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For a better understanding of the processing at the nucleus tractus solitarius (NTS) level of the autonomic and respiratory responses to peripheral chemoreceptor activation, herein we evaluated the role of glutamatergic neurotransmission in the intermediate (iNTS) and caudal NTS (cNTS) on baseline respiratory parameters and on chemoreflex-evoked responses using the in situ working heart-brain stem preparation (WHBP). The activities of phrenic (PND), cervical vagus (cVNA), and thoracic sympathetic (tSNA) nerves were recorded before and after bilateral microinjections of kynurenic acid (Kyn, 5 nmol/20 nl) into iNTS, cNTS, or both simultaneously. In WHBP, baseline sympathetic discharge markedly correlated with phrenic bursts (inspiration). However, most of sympathoexcitation elicited by chemoreflex activation occurred during expiration. Kyn microinjected into iNTS or into cNTS decreased the postinspiratory component of cVNA and increased the duration and frequency of PND. Kyn into iNTS produced no changes in sympathoexcitatory and tachypneic responses to peripheral chemoreflex activation, whereas into cNTS, a reduction of the sympathoexcitation, but not of the tachypnea, was observed. The pattern of phrenic and sympathetic coupling during the chemoreflex activation was an inspiratory-related rather than an expiratory-related sympathoexcitation. Kyn simultaneously into iNTS and cNTS produced a greater decrease in postinspiratory component of cVNA and increase in frequency and duration of PND and abolished the respiratory and autonomic responses to chemoreflex activation. The data show that glutamatergic neurotransmission in the iNTS and cNTS plays a tonic role on the baseline respiratory rhythm, contributes to the postinspiratory activity, and is essential to expiratory-related sympathoexcitation observed during chemoreflex activation.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)