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1. Preincubation of isolated rat-liver mitochondria in the presence of adenine nucleotides or Ca2+ results in definite and persistent changes in the initial rate of pyruvate transport. 2. These changes in the rate of pyruvate transport are accompanied by equally persistent changes in the opposite direction of the activity of pyruvate dehydrogenase (EC 1.2.4.1). 3. Changes of the transmembrane pH gradient and of the membrane potential, brought about by the pretreatments of the mitochondria, cannot account for the observed changes in the rate of pyruvate transport. 4. It is proposed that the pretreatment of the mitochondria directly modulates the activity of the mitochondrial pyruvate carrier. The possible regulatory role of such a modulation system is discussed.  相似文献   
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Ecosystem service (ES) evidence and arguments can mobilize support for biodiversity conservation. However, the ES concept’s impact on the ground seems unclear: It is reliant upon a range of pre-requisites at the science-policy nexus and it tends to be science-driven and demanding in terms of data and required capacity. The TEEB stepwise approach (The Economics of Ecosystems and Biodiversity for Local and Regional Policy Makers, Earthscan, London, 2012) guides purpose-driven ES assessments and seeks to enhance the usefulness of the ES concept in difficult real-world settings. An application of this approach has not yet been appraised. Also, beyond the instrumental use of ES data (e.g. for the design of payment schemes for ES), there is little documented experience with strategically using ES arguments for mobilizing financial resources for conservation. As many other countries, Côte d’Ivoire does not have a strong knowledge base on ecosystem services (ES). Such circumstances can preclude the use of the ES concept for convincing potential donors to co-finance conservation. We examine the recent ES assessment for the Parc national de Taï (PNT), Côte d’Ivoire, which followed the TEEB stepwise approach. We look at process, results and outcomes to address three questions: (i) How did study results contribute to mobilizing funds for the PNT? (ii) In which ways was the TEEB stepwise approach useful in practice? (iii) What lessons can be drawn for ES assessments geared to conservation finance?  相似文献   
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Background

Swinging limb lameness is defined as a motion disturbance ascribed to a limb in swing phase. Little is known about its biomechanics in dogs, particularly about the body motions that accompany it, such as vertical head and pelvic motion asymmetry. The aim of this study was to describe the changes in vertical head and pelvic motion asymmetry in dogs with induced swinging limb motion disturbance, mimicking a swinging limb lameness. Fore- and hind-limb lameness was induced in ten sound dogs by placing a weight (200 g) proximal to the carpus or tarsus, respectively. Marker-based motion capture by eight infrared light emitting video cameras recorded the dogs when trotting on a treadmill. Body symmetry parameters were calculated, including differences between the two highest positions of the head (HDmax) and pelvis (PDmax) and between the two lowest positions of the head (HDmin) and pelvis (PDmin), with a value of zero indicating perfect symmetry.

Results

Induction of swinging forelimb lameness showed significant changes in HDmax (median and range: sound 1.3 mm [??4.7 to 3.1], in the left side ??28.5 mm [??61.2 to ??17.9] and in the right side 20.1 mm [??4.4 to 47.5]) and, induction of swinging hind limb lameness showed significant changes in PDmax (sound 2.7 mm [??7.4 to 7.2], in the left side ??10.9 mm [??22.4 to 0.5] and in the right side 8.6 mm [??3 to 30]), as well as an increased hip movement asymmetry (sound 1.6 mm [??8.6 to 19.9], in the left side ??18.1 mm [??36.7 to 5.4] and in the right side 15 mm [??20.7 to 32.1]) (P?<?0.05).

Conclusions

Induced swinging fore- and hind limb lameness resulted in significant increased asymmetry of the maximal vertical displacement movement of the head and pelvis, due to decreased lifting of the head in forelimb lameness and of the pelvis in hind limb lameness. The results suggest that asymmetry of the maximal vertical displacement of the head and pelvis (i.e. lifting) is a key lameness sign to evaluate during examination of swinging limb lameness.
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