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Capítulo 7 - Cacería Responsable y Ética
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La conducta responsable y ética hace que la experiencia de la cacería sea mucho más agradable y gratificante para todos los involucrados.

También resguarda nuestra preciada herencia de cacería al promover con el público una imagen positiva de la cacería.

Alrededor del 4.4% de la población de Texas caza. La mayoría de los Texanos respaldan la cacería ética y legal. Su conducta como cazador puede influenciar la opinión de la mayoría de los no cazadores de una manera positiva o negativa. La cacería es un privilegio maravilloso que puede perderse si los cazadores no actúan responsablemente.

Explotación de vida silvestre

Durante el siglo XIX muchos animales fueron cazados para el mercado, tanto que casi llegan a la extinción. Los búfalos, wapitíes, venados, berrendos y castores, que antes abundaban, fueron reducidos a una fracción de su población original. Algunas especies como una paloma migratoria desaparecieron por completo. Se introdujeron leyes de conservación de vida silvestre para preservarla para las generaciones futuras.

Al día de hoy, las leyes que rigen la fauna silvestre protegen tanto a especies de pieza de caza como a aquellas que no lo son, permitiéndoles florecer. Esto se logra mediante la imposición de temporadas y límites de caza que controlan la cantidad de animales extraídos. Los métodos y el equipo de cacería también se regulan para conservar el recurso.

Las leyes y el reglamento de caza son importantes para asegurar:

En Texas, las leyes acerca de la vida silvestre se aprueban por la Comisión de Parques y Vida Silvestre de Texas, un consejo que se compone de 9 ciudadanos seleccionados por el gobernador y confirmados por el Senado de Texas. La comisión aplica políticas y reglas para implementar todos los programas del Departamento de Parques y Vida Silvestre de Texas (TPWD por sus siglas en inglés para Texas Parks and Wildlife Department). Cada año la Comisión conduce una audiencia pública para recibir aportaciones de nuestros socios, partes interesadas y constituyentes acerca de cualquier asunto relacionado a políticas, metas, programas y responsabilidades del departamento.

The x -intercept of a line is the point at which it crosses the x -axis.

The y -intercept of a line is the point at which it crosses the y -axis.

In the diagram to the left the y -intercept is at A and the x -intercept at B .

The second diagram shows a line parallel to the x -axis and it has a y -intercept at C .

The third diagram shows a line parallel to the y -axis and it has an x -intercept at D .

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Equation of a straight line

When we plot points which satisfy the equation y = 2 x + 1 we find that they lie in a straight line.

Can we find the equation of the line given suitable geometric information about the line? The following shows that this can be done given the gradient of the line and the y -intercept.

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The line y = 3 x + 2

Consider the line with gradient 3 and y -intercept2. This passes through the point A (0, 2). Let B ( x , y ) be any point on this line.

The gradient of the line is 3.

So the coordinates of B ( x , y ) satisfies y = 3 x + 2. This is called the equation of the line.

Conversely suppose that B ( x , y ) satisfies the equation y = 3 x + 2, then = 3 and it passes the point (0, 2) so the point lies on the line with gradient 3 and y -intercept 2.

We summarise this by saying that the equation of the line is y = 3 x + 2.

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The equation y = mx + c

Consider the line with gradient m and y -intercept c . If passes through the point A (0, c ). Let B ( x , y ) be any point on this line.

We know the gradient of the line is m .

That is, the line in the cartesian plane with gradient m and y -intercept c has equation y = mx + c . Conversely, the points whose coordinates satisfy the equation y = mx + c always lie on the line with gradient m and y -intercept c .

Vertical and horizontal lines

Vertical lines

In a vertical line all points have the same x -coordinate, but the y -coordinate can take any value. The equation of the vertical line through the point (6, 0) is x = 6. The x -axis intercept is 6. All the points on this line have x -coordinate 6.

Figure 1
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Francis P. Tally and Carl Erik Nord discussing the use of metronidazole for the prophylaxis and treatment of anaerobic infections at Gifu University Medical School in Gifu, Japan, in 1985. Photograph: Professor Kazue Ueno, Gifu, Japan.

Figure 1
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Francis P. Tally and Carl Erik Nord discussing the use of metronidazole for the prophylaxis and treatment of anaerobic infections at Gifu University Medical School in Gifu, Japan, in 1985. Photograph: Professor Kazue Ueno, Gifu, Japan.

Metronidazole is highly active against gram-negative anaerobic bacteria, such as B. fragilis , and gram-positive anaerobic bacteria, such as C. difficile. The pharmacokinetic and pharmacodynamic properties of the drug are favorable, and it is available as oral, intravenous, vaginal, and topical formulations. After oral administration, metronidazole is well absorbed, and its peak plasma concentrations occur 1–2 h after administration. Metronidazole is the major component in the plasma, but lower amounts of active metabolites are also present. Protein binding is low; <20% of the circulating metronidazole is bound to plasma proteins. Both the parent compound and the metabolite have in vitro bactericidal activity against most strains of anaerobic bacteria, except C. difficile , and in vitro trichomonacidal activity. The concentrations of metronidazole in cerebrospinal fluid and saliva are similar to those found in plasma. Bactericidal concentrations of metronidazole have also been detected in pus from hepatic abscesses. The major route of elimination of metronidazole and its metabolites is the urine, with fecal excretion accounting for a minor part. Metronidazole is metabolized in the liver, and the simultaneous administration of drugs that increase or decrease the microsomal liver enzyme activity may lead to altered plasma concentrations. Metronidazole potentiates the anticoagulant effect of warfarin and other oral coumarin anticoagulants, resulting in a prolongation of prothrombin time. The metabolism of alcohol may be affected by metronidazole in some patients, leading to intolerance.

The safety profile of metronidazole is well known, and adverse effects are considered mainly to be mild to moderate in severity. The most common adverse reactions reported involve the gastrointestinal tract. Rare serious adverse reactions, including convulsive seizures and peripheral neuropathy, characterized mainly by numbness or paresthesia of an extremity, have been reported in patients receiving prolonged metronidazole treatment.

A therapeutic review article published >10 years ago by Freeman et al [ 4 ] summarizes the clinical data on the therapeutic use of metronidazole for anaerobic infections. Studies published during 1998–2008 confirm these clinical reports.

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