925 resultados para Testicular regression


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O objetivo foi verificar pela ultrassonografia associada à biometria testicular como ferramenta na seleção de precocidade sexual em machos bubalinos. Foram usados 19 machos mestiços das raças Murrah e Mediterrâneo, com idades entre 11 a 59 meses, no período de 06 de maio a 18 de novembro de 2010. Os animais foram divididos em 12 faixas etárias: 8 animais de 12 a 19 meses; 3 animais de 20 a 29 meses; e 8 animais de 30 a 59 meses. Os animais foram mantidos em sistema extensivo, em área de várzea com pastagem de canarana (Eriochloa SP) sem mineralização. Os animais foram submetidos a exame clínico andrológico, com colheita de sêmen por massagem transretal das ampolas e análises físicas do ejaculado. Os exames ultrassonograficos foram realizados com o aparelho modelo Mindray DP-2200, com transdutor linear transretal 75L50EAV, multi-frequencial de 5,0/7,5/10,0 MHz. A ecodensidade testicular (ECOt) foi expressa em quantidade de pixels/área, utilizando o Programa Image J. Foram coletadas amostras sanguíneas para aferição dos níveis de testosterona. A análise estatística foi feita utilizando-se o programa estatístico SAS 1999. Os resultados da circunferência escrotal mostram médias e desvios padrão mínimo e máximo de 12.88±0.51cm para animais de 12 e 13 meses e de 28.38±0.38cm nos machos com idade maior ou igual a 60 meses, respectivamente. As medidas de volume testicular apresentaram valores mínimo e máximo de 30.28±17.37cm³ em animais de 12 e 13 meses e de 534.25±25.36 cm³ nos animais maiores ou iguais a 60 meses, respectivamente. As médias e desvio padrão da concentração espermática mínima e máxima encontrada foram de 5.5± 3.5(x 10⁶ /mm³) para os animais de 16 e 17 meses e de 51.41± 26.02 (x 10⁶ /mm³) para os maiores ou iguais a 60 meses, respectivamente. Na motilidade espermática as porcentagens mínima e máxima obtidas foram de 10% para animais com 16 e 17 meses e de 80±5.77% para maiores ou iguais a 60 meses, respectivamente. Os defeitos espermáticos totais mínimos e máximos encontrados foram de 18.5 % nos animais de 16 e 17 meses e 3%. Nos maiores ou iguais a 60 meses, respectivamente. Os níveis de testosterona mínimos e máximos encontrados foram de 0.070±0.026 ng/ml para 12 e 13 meses e de 2.762± 0.457 ng/ml para os animais maiores ou iguais a 60 meses, respectivamente. A ecogenicidade para animais na faixa etária de 12 a 13 meses foi de 78.67±6.36 pixel, na faixa de 14 e 15 meses foi de 94.22±3.40 pixel, para os animais com idades de 16 e 17 meses foi de 88.16±3.95 pixel, nos animais entre 18 a 19 meses foi de 96.09±3.40 pixel, para os animais de 20 e 21 meses foi de 103.12±3.86 pixel, para 22 e 23 meses foi de 98.4±5.87 pixel, para a idade de 24 aos 29 meses foi de 114.05±2.42 pixel, na faixa etária de 30 aos 35 meses foi de 109.24±3.13 pixel, para animais de 36 aos 41meses foi de 98.67±3.05 pixel, entre 42 a 47 meses a média foi 99.33±2.01 pixel, entre 48 a 59 meses foi de 96.17±1.90 pixel e nos animais maiores ou iguais a 60 meses de idade foi de 90.13±1.77 pixel. Concluímos, assim, que a ultrassonografia, pela interpretação da ecogenicidade, associada ao exame clinico andrológico, é uma ferramenta que pode ser usada na seleção de precocidade e avaliação de fertilidade de machos bubalinos.

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O presente estudo teve como objetivo avaliar as alterações morfo-funcionais dos testículos de bubalinos provocadas pela insulação escrotal. O experimento foi conduzido na CEBRAN - UFPA e na EMBRAPA e dividido em cinco fases: período pré-insulação (PI), insulação (I) pós-insulação até trinta dias (P30), até sessenta (P60) e até noventa (P90). Utilizaram-se seis búfalos com idade média de 50±2 meses. Antes da insulação foram realizadas colheitas de sêmen para avaliação das características físicas e morfológicas dos ejaculados. Em seis animais foram utilizadas bolsas, fixadas ao redor do funículo por sete dias, sendo verificada a temperatura retal, temperatura do funículo e a temperatura entre a pele do escroto e o saco plástico, em diferentes horários. Obtiveram-se de 1 a 2 colheitas de sêmen, através da vagina artificial, com temperatura entre 44ºC a 46ºC, e avaliados vários aspectos como: turbilhonamento (TURB), motilidade (MOT), concentração (CONC), vivos e mortos, pH e patologias seminais, além do exame histopatológico dos testículos. As lâminas para analises das patologias foram coradas pelo método de Cerovsky. A insulação não afetou significativamente a volume do ejaculado. O TURB diminuiu significativamente no período de insulação, P30 e P60, não obtendo diferença significativa no P90 quando comparada com o PI. A MOT diminuiu significativamente no P30, P60 e P90 quando comparada com o período de pré insulação e insulação. O vigor espermático apresentou diminuição no P30 em relação ao PI, I, P60 e P90. A concentração não apresentou diferença significativa entre os períodos avaliados. A viabilidade apresentou uma queda no P30 quando comparado ao PI, I, P60 e P90. Ocorreu diferença significativa no pH nos períodos P60 e P90 em relação a PI, I, P30. Houve diferença estatística, quanto aos defeitos maiores do sêmen, antes e depois da insulação, sendo I e P30 os períodos mais criticos quando comparado com P60 e P90. Quanto aos defeitos menores, houve diferença significativa entre P30 e PI, P60 e P90. Os defeitos totais evidenciaram diferença estatística no P30 em relação ao PI, I, P60 e P90. Foram avaliados as modificações histológicas-testicular provocados pela insulação, nos dias 20, 40 e 60 pós-insulação, ocasionado um quadro degenerativo acentuado, havendo uma regeneração do processo espermatogênico na maioria dos animais estudados. Estes dados demonstraram que o estresse térmico causou efeitos deletéricos na espermatogenese e no processo de maturação dos espermatozoides.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The objective of this research was to estimate (co) variance functions and genetic parameters for body weight in Colombian buffalo populations using random regression models with Legendre polynomials. Data consisted of 34,738 weight records from birth to 900 days of age from 7815 buffaloes. Fixed effects in the model were contemporary group and parity order of the mother. Random effects were direct and maternal additive genetic, as well as animal and maternal permanent environmental effects. A cubic orthogonal Legendre polynomial was used to model the mean curve of the population. Eleven models with first to sixth order polynomials were used to describe additive genetic direct and maternal effects, and animal and maternal permanent environmental effects. The residual was modeled considering five variance classes. The best model included fourth and sixth order polynomials for direct additive genetic and animal permanent environmental effects, respectively, and third-order polynomials for maternal genetic and maternal permanent environmental effects. The direct heritability increased from birth until 120 days of age (0.32 +/- 0.05), decreasing thereafter until one year of age (0.18 +/- 0.04) and increased again, reaching 0.39 +/- 0.09, at the end of the evaluated period. The highest maternal heritability estimates (0.11 +/- 0.05), were obtained for weights around weaning age (weaning age range is between 8 and 9.5 months). Maternal genetic and maternal permanent environmental variances increased from birth until about one year of age, decreasing at later ages. Direct genetic correlations ranged from moderate (0.60 +/- 0.060) to high (0.99 +/- 0.001), maternal genetic correlations showed a similar range (0.41 +/- 0.401 and 0.99 +/- 0.003), and all of them decreased as time between weighings increased. Direct genetic correlations suggested that selecting buffalos for heavier weights at any age would increase weights from birth through 900 days of age. However, higher heritabilities for direct genetic weights effects after 600 days of age suggested that selection for these effects would be more effective if done during this age period. A greater response to selection for maternal ability would be expected if selection used maternal genetic predictions for weights near weaning. (C) 2013 Elsevier B.V. All rights reserved.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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The process of spermatic division and differentiation (spermatogenesis) occurs with intratesticular temperature lower that the corporal temperature and for that is essential that the testicular thermoregulation mechanism occurs properly. For evaluation of the scrotal surface temperature can be used the infrared thermography or testicular sensors, besides that, can be evaluated the blood flux in the spermatic cord through the Doppler ultrasonography. Therefore the objective of this study was the evaluation of the scrotal thermography and Doppler flowmetry of the testicular artery of buffaloes subjected to environmental heat stress. For that were used seven healthy buffaloes, with age of 3 and 4 years, of the Murrah breed. For the surface scrotal temperature measurement (SST, degrees C) and superficial neck temperature (SNT, degrees C) was used the infrared termography (Infra Cam (TM) of the brand FLIR Systems Inc.), then Doppler flowmetry of the testicular artery in the region of the spermatic cord through the ultrasonography (Mylab 5, Esaote (R)) and measurement of the rectal temperature (RT, degrees C). The evaluations were done in two moments: moment 1 (M1) with all the animals in the shade (Temperature=32,2 degrees C) and moment 2 (M2) after 3 hours of exposure of animals to the sun (Temperature=38,7 degrees C To calculate the resistivity index (RI) and pulsatility index (PI), spectra were obtained from pulsed Doppler in three random regions of the testicular artery in the spermatic cord. Data were subjected to analysis of variance (ANOVA) followed by T test, using a significance level of 5%. There was an increase (p<0,05) of RT (37,4 +/- 0,4(a) vs 39,0 +/- 0,3(b); M1 and M2 respectively), SST (30,6 +/- 1,4(a) vs 35,2,0 +/- 1,0(b); M1 and M2 respectively) and SNT (33,1 +/- 2,5(a) vs 38,5,0 +/- 0,3(b); M1 e M2 respectively) e RI (0,67 +/- 0,1(a) vs 0,74 +/- 0,1(b); M1 e M2 respectively) in M2. Increasing trend was observed (0,05>p>0,01) in PI (1,10 +/- 0,4(a) vs 1,23 +/- 0,2(b); M1 and M2 respectively) in M2. The results of the present study allow us to conclude the healthy buffaloes have the scrotal average surface temperature 3 degrees C lower that the body temperature and that the exposure of 3 hours to sun in healthy buffaloes causes thermal stress to the animals and changes in its surface scrotal temperature, and the Doppler flowmetry of the testicular artery demonstrating the importance of thermal management for breeding buffaloes. Besides that, the thermography and the Doppler ultrasonography presented great potential to detect changes of testicular perfusion, being a promising additional test in the buffalo andrological evaluation.

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The process of spermatic division and differentiation (spermatogenesis) occurs with intratesticular temperature lower that the corporal temperature and for that is essential that the testicular thermoregulation mechanism occurs properly. For evaluation of the scrotal surface temperature can be used the infrared thermography or testicular sensors, besides that, can be evaluated the blood flux in the spermatic cord through the Doppler ultrasonography. Thus, the aim of this study is to analyze the testicular thermoregulation in adult buffaloes through scrotal thermography and Doppler ultrasound of testicular artery and verify its effect on sperm quality. For that were used seven healthy buffaloes, with age of 3 and 4 years, of the Murrah breed. The animals were subjected to 3 semen collections using artificial vagina, with one day of interval. In addiction, the retal temperature measurement (RT) with dry bulb thermometer, the measurement of scrotal surface temperature (SST) and body surface temperature (BST) through infrared thermography and the pulsatility (PI) and resistivity (RI) index of testicular artery by Doppler ultrasonography, were performed using 2 distinct moments: animals previously placed to shade (M1) and animals subjected to 4 hours of sun (M2). All parameters were compared by T test and the correlations were performed by Pearson test using the In Stat Graph Pad 3 (R) program. The significant level considered was 5%. There was an increase (p<0,05) of RT, SST, SNT and RI in M2. increasing trend was observed (0,05>p>0,01) PI and RI between M1 and M2. There was a low correlation between SST and semen quality. The results of this study allow us to conclude that adult buffaloes have low ability to perform body and testicular thermoregulation in situations of enviromental heat stress. However, this low capacity of testicular temperature maintenance demonstrated no correlation with the sperm kinetic parameters and sperm morphological defects in buffalo spermatozoa.

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

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Central giant cell granuloma (CGCG) of the jaws represents a localized and benign neoplastic lesion sometimes characterized by aggressive osteolytic proliferation. The World Health Organization defines it as an intraosseous lesion composed of cellular and dense connective tissues that contain multiple hemorrhagic foci, an aggregation of multinucleated giant cells, and occasional bone tissue trabeculae. The origin of this lesion is uncertain; however, factors such as local trauma, inflammation, intraosseous hemorrhage, and genetic abnormalities have been identified as possible causes. CGCG generally affects those younger than 30 years and occurs more frequently in women (2: 1). This lesion corresponds to approximately 7% of all benign tumors of the jaws, with prevalence in the anterior region of the jaw. Aggressive lesions are characterized by symptoms, such as pain, numbness, rapid growth, cortical perforation, root resorption, and a high recurrence rate after curettage. In contrast, nonaggressive CGCGs have a slow rate of growth, may contain sparse trabeculation, and are less likely to move teeth or cause root resorption or cortical perforation. Nonaggressive CGCGs are generally asymptomatic lesions and thus are frequently found on routine dental radiographs. Radiographically, the 2 forms of CGCG present as radiolucent, expansive, unilocular or multilocular masses with well-defined margins. The histopathology of CGCG is characterized by multinucleated giant cells, surrounded by round, oval, and spindle-shaped mononuclear cells, scattered in dense connective tissue with hemorrhagic and abundant vascularization foci. The final diagnosis is determined by histopathologic analysis of the biopsy specimen. The preferred treatment for CGCG consists of excisional biopsy, curettage with a safety margin, and partial or total resection of the affected bone. Conservative treatments include local injections of steroids, calcitonin, and antiangiogenic therapy. Drug treatment using antibiotics, painkillers, and corticosteroids and clinical and radiographic monitoring are necessary for approximately 10 days after surgery. There are only a few cases of spontaneous CGCG regression described in the literature; therefore, a detailed case report of CGCG regression in a 12-yearold boy with a 4-year follow-up is presented and compared with previous studies. (c) 2014 American Association of Oral and Maxillofacial Surgeons

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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)