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Praying and Preying offers one of the rare anthropological monographs on the Christian experience of contemporary Amazonian indigenous peoples, based on an ethnographic study of the relationship between the Wari', inhabitants of Brazilian Amazonia, and the Evangelical missionaries of the New Tribes Mission. Vilaça turns to a vast range of historical, ethnographic and mythological material related to both the Wari' and missionaries perspectives and the author's own ethnographic field notes from her more than 30-year involvement with the Wari' community. Developing a close dialogue between the Melanesian literature, which informs much of the recent work in the Anthropology of Christianity, and the concepts and theories deriving from Amazonian ethnology, in particular the notions of openness to the other, unstable dualism, and perspectivism, the author provides a fine-grained analysis of the equivocations and paradoxes that underlie the translation processes performed by the different agents involved and their implications for the transformation of the native notion of personhood.
Conversion --- Missions, Brazilian --- Pakaasnovos Indians --- Christianity --- Indigenous peoples --- Brazilian missions --- Jarú Indians --- Oro Wari Indians --- Pacaa-novos Indians --- Pacaas Novos Indians --- Pacahanovo Indians --- Pacahnovo Indians --- Pacas Novas Indians --- Pakaa Nova Indians --- Pakaanova Indians --- Pakaanovas Indians --- Uari Wayõ Indians --- Uomo Indians --- Wari' Indians (Brazil) --- Indians of South America --- Religions --- Church history --- Aboriginal peoples --- Aborigines --- Adivasis --- Indigenous populations --- Native peoples --- Native races --- Ethnology --- Christianity. --- History. --- Religion. --- New Tribes Mission --- New Tribes Mission, Chicago --- Misión Nuevas Tribus --- "Nuevas Tribus" (Missionary organization) --- Nuevas Misiones --- Misión a Nuevas Tribus --- MANT --- NT --- NTM --- Misión a las Nuevas Tribus --- A Nuevas Tribus (Missionary organization) --- American aborigines --- American Indians --- amazonian ethnology. --- anthropology of evangelical christianity. --- anthropology of missionary work. --- brazilian amazon. --- brazilian indigengous. --- christian amazon. --- christian amazonians. --- christian missionary work in the amazon. --- conversion of amazonian indigenous peoples. --- evangelical missionaries to south america. --- indigenous amazonians. --- melanesian literature. --- missionaries to south america. --- missionary work. --- native amazonians. --- new tribes mission. --- south american evangelicals. --- wari.
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Monitoring of vegetation structure and functioning is critical to modeling terrestrial ecosystems and energy cycles. In particular, leaf area index (LAI) is an important structural property of vegetation used in many land surface vegetation, climate, and crop production models. Canopy structure (LAI, fCover, plant height, and biomass) and biochemical parameters (leaf pigmentation and water content) directly influence the radiative transfer process of sunlight in vegetation, determining the amount of radiation measured by passive sensors in the visible and infrared portions of the electromagnetic spectrum. Optical remote sensing (RS) methods build relationships exploiting in situ measurements and/or as outputs of physical canopy radiative transfer models. The increased availability of passive (radar and LiDAR) RS data has fostered their use in many applications for the analysis of land surface properties and processes, thanks also to their insensitivity to weather conditions and the capability to exploit rich structural and textural information. Data fusion and multi-sensor integration techniques are pressing topics to fully exploit the information conveyed by both optical and microwave bands.
artificial neural network --- downscaling --- simulation --- 3D point cloud --- European beech --- consistency --- adaptive threshold --- evaluation --- photosynthesis --- geographic information system --- P-band PolInSAR --- validation --- density-based clustering --- structure from motion (SfM) --- EPIC --- Tanzania --- signal attenuation --- trunk --- canopy closure --- REDD+ --- unmanned aerial vehicle (UAV) --- forest --- recursive feature elimination --- Fraction of Photosynthetically Active Radiation absorbed by vegetation (FPAR) --- aboveground biomass --- random forest --- uncertainty --- household survey --- spectral information --- forests biomass --- root biomass --- biomass --- unmanned aerial vehicle --- Brazilian Amazon --- VIIRS --- global positioning system --- LAI --- photochemical reflectance index (PRI) --- allometric scaling and resource limitation --- R690/R630 --- modelling aboveground biomass --- leaf area index --- forest degradation --- spectral analyses --- terrestrial laser scanning --- BAAPA --- leaf area index (LAI) --- stem volume estimation --- tomographic profiles --- polarization coherence tomography (PCT) --- canopy gap fraction --- automated classification --- HemiView --- remote sensing --- multisource remote sensing --- Pléiades imagery --- photogrammetric point cloud --- farm types --- terrestrial LiDAR --- altitude --- RapidEye --- forest aboveground biomass --- recovery --- southern U.S. forests --- NDVI --- machine-learning --- conifer forest --- satellite --- chlorophyll fluorescence (ChlF) --- tree heights --- phenology --- point cloud --- local maxima --- clumping index --- MODIS --- digital aerial photograph --- Mediterranean --- hemispherical sky-oriented photo --- managed temperate coniferous forests --- fixed tree window size --- drought --- GLAS --- smartphone-based method --- forest above ground biomass (AGB) --- forest inventory --- over and understory cover --- sampling design
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