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1,107 results for “Southwest China”
FIGURE 1 in A new species of the genus Diaphanes Motschulsky (Coleoptera: Lampyridae) from Gaoligong Mountains of Yunnan, Southwest China
FIGURE 1. (Figs.1–8): 1. Habitus of holotype of Diaphanes pectinealis Li & Liang, new species, dorsal view; 2. live specimen of male of D. pectinealis; 3. Male of D. pectinealis glowing at rest; Fig. 4. Diaphanes nubilus from Nangkang, Gaoligong Mountains; Fig. 5. Diaphanes lampyroides from Xishuangbanna of South Yunnan; 6. Habitus of allotype of D. pectinealis, dorsal view; 7. Male abdomen and photic organs on each of ventrites 5–6; 8. Female abdomen and its photic organs on ventrites+plurites 5–6.(Scale lines = 10mm in fig.1and 6; scale lines = 1mm in Figs. 7, 8)
FIGURE 4 in A new genus and species of troglobitic ground beetle from eastern Guizhou, Southwest China (Coleoptera: Carabidae: Trechinae)
FIGURE 4. Cave Jinshan Rongdong (a. and b. entrance and gate; c. underground river; d. a chamber to show where the beetles were collected; e. an active beetle in cave)
FIGURE 2 in A new genus and species of troglobitic ground beetle from eastern Guizhou, Southwest China (Coleoptera: Carabidae: Trechinae)
FIGURE 2. Male genitalia of Tianzhuaphaenops jinshanensis n. gen., n. sp. (a. median lobe and parameres, lateral view; b. median lobe, dorsal view)
FIGURE 1 in A new genus and species of troglobitic ground beetle from eastern Guizhou, Southwest China (Coleoptera: Carabidae: Trechinae)
FIGURE 1. Habitus of Tianzhuaphaenops jinshanensis n. gen., n. sp., male, holotype (chaetotaxy indicated by white points)
FIGURES 9–10 in Descriptions of the mature larva and adult female of Pseudopyrochroa girardi Young from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae), with natural history observations
FIGURES 9–10. Larval habitat of Pseudopyrochroa girardi Young: 9. Last instar saproxylic larva in decaying, coarse woody debris; 10. Last instar larva and associated woody debris in laboratory for rearing.
FIGURES 11–12 in Descriptions of the mature larva and adult female of Pseudopyrochroa girardi Young from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae), with natural history observations
FIGURES 11–12. Pseudopyrochroa girardi Young, adult female: 11. Dorsal habitus; 12. Head and pronotum, dorsal.
FIGURES 7–8 in Descriptions of the mature larva and adult female of Pseudopyrochroa girardi Young from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae), with natural history observations
FIGURES 7–8. Mature larva (exuviae) of Pseudopyrochroa girardi Young: 7. Urogomphal plate, dorsal; 8. Abdominal segments VIII–IX, ventral.
FIGURES 1–3 in Descriptions of the mature larva and adult female of Pseudopyrochroa girardi Young from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae), with natural history observations
FIGURES 1–3. Mature larva of Pseudopyrochroa girardi Young: 1. Habitus, dorsal; 2. Habitus, ventral; 3. Last instar exuviae, dorsal.
FIGURES 4–6 in Descriptions of the mature larva and adult female of Pseudopyrochroa girardi Young from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae), with natural history observations
FIGURES 4–6. Mature larva (exuviae) of Pseudopyrochroa girardi Young: 4. Head capsule, dorsal; 5. head capsule, ventral; 6. Mouthparts, dorsal.
Distribution pattern of rocky desertification in southwest China and analysis of its main driving factors based on GIS and Geodetector
<p>Rocky desertification, a pressing environmental concern in Southwest China, significantly impacts local living conditions and regional sustainability. Employing remote sensing on a macro scale, this study focuses on identifying and analyzing the spatial distribution and driving factors of rocky desertification. Conducted in Southwest China, using Landsat data from Google Earth Engine for 2020, the research quantitatively extracts information on rocky desertification patches through traditional methods. Excluding unlikely areas using land use data, spatial distribution features and driving factors are examined via GIS spatial analysis and a geodetector model. The main conclusions are as follows. Rocky desertification covers 217,530.4 km<sup>2</sup> (accounting for 15.6% of Southwest China), with areas of slight, moderate, and severe rocky desertification at 81.3%, 7.1%, and 11.6%, respectively. Spatially, rocky desertification primarily occurs in areas where lithology is carbonate rock between clastic rocks and continuous limestone, slope exceeds 15°, elevation ranges is 1000–2000 m, land use types are grassland and woodland, precipitation is 80–120 mm, and population density is below 50 people/km<sup>2</sup>. Human activities have minimal influence. Geodetector analysis identifies lithology, land use type, and slope as primary driving factors, with interactive effects of lithology and land use type and slope and land use type jointly influencing rocky desertification formation in Southwest China.</p>
FIGURE 4 in Acronema crassifolium sp. nov. (Apiaceae), a distinct new species from Yunnan, southwest China
FIGURE 4. Pollen morphology of Acronema crassifolium Huan C.Wang, X.M. Zhou & Y.H. Wang. Voucher specimen: Wang et al. 1344 (HYU).
FIGURE 5 in Acronema crassifolium sp. nov. (Apiaceae), a distinct new species from Yunnan, southwest China
FIGURE 5. Geographical distribution of Acronema crassifolium Huan C.Wang, X.M. Zhou & Y.H. Wang (solid stars).
FIGURE 2 in Acronema crassifolium sp. nov. (Apiaceae), a distinct new species from Yunnan, southwest China
FIGURE 2. Type specimens (Zhu & Wu 2802) of Acronema crassifolium Huan C.Wang, X.M. Zhou & Y.H. Wang. A. Holotype. B. Isotype.
FIGURE 1. Acronema crassifolium Huan C.Wang, X.M. Zhou & Y.H. Wang. A. Habit. B. Infrutescence. C. Flower. D. Fruit. A and C in Acronema crassifolium sp. nov. (Apiaceae), a distinct new species from Yunnan, southwest China
FIGURE 1. Acronema crassifolium Huan C.Wang, X.M. Zhou & Y.H. Wang. A. Habit. B. Infrutescence. C. Flower. D. Fruit. A and C drawn from Wang et al. 1344 (HYU), B and D drawn from Zhu & Wu 2802 (HYU).
Gauge data repository for "Comprehensive evaluation and comparison of ten precipitation products in terms of accuracy and stability over a typical mountain basin, Southwest China"
<h4>1. Title: </h4> <p>Gauge data repository for "Comprehensive evaluation and comparison of ten precipitation products in terms of accuracy and stability over a typical mountain basin, Southwest China".</p> <h4>2. Corresponding author: </h4> <p>Xingbi Lei (leixingbi@st.gxu.edu.cn, leixingbi@foxmail.com).</p> <h4>3. Institution: </h4> <p>Key Laboratory of Disaster Prevention and Structural Safety of the Ministry of Education, Nanning 530000, China;</p> <p>College of Architecture and Civil Engineering, Guangxi University, Nanning 530000, China; </p> <p>Guangxi Provincial Engineering Research Center of Water Security and Intelligent Control for Karst Region, Guangxi University, Nanning 530000, China; </p> <p>Guangxi Key Laboratory of Disaster Prevention and Engineering Safety, Guangxi University, Nanning 530000, China; </p> <p>State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, Nanjing Hydraulic Research Institute, Nanjing 200029, China; </p> <p>Guangxi Water & Power Design Institute Co., Ltd., Nanning 530023, China. </p> <h4>4. Description:</h4> <p>This repository contains gauge data for the research article "Comprehensive evaluation and comparison of ten precipitation products in terms of accuracy and stability over a typical mountain basin, Southwest China", which is currently under review for the journal "Atmospheric Research".</p> <p>The gauge data used in this study is the daily measurements (2003/01/01-2018/12/31) of 12 stations in the Chengbi River Basin (Southwest China). The data source was the Chengbi River Reservoir Bureau. The data has been quality controlled by the Bureau in accordance with "MWR, PRC,2015. Specification for precipitation observations: SL 21-2015". Please see the journal article for more detailed information.</p> <h4>5. Citation:</h4> <p>When using this dataset, please cite "Mo, C. et al., 2024. Comprehensive evaluation and comparison of ten precipitation products in terms of accuracy and stability over a typical mountain basin, Southwest China. Atmospheric Research, 297: 107116.10.1016/j.atmosres.2023.107116". </p> <p> </p>
FIGURE 4 in Tirpitzia meiguensis (Linaceae), a new species from southwest Sichuan (China)
FIGURE 4. Bayesian phylogenetic tree related to Tirpitzia including T. meiguensis based on ITS sequences, the lengths of branches indicate the rates of nucleotide substitution, and the posterior probabilities are shown beside the branches.
FIGURE 3 in Tirpitzia meiguensis (Linaceae), a new species from southwest Sichuan (China)
FIGURE 3. Photographs of living or re-watered Tirpitzia meiguensis D.J.Xie & R.B.Zhang, sp. nov. A. Habitat; B. Plant; C. Root; D. Flower; E. Fruit; F. Leaf margin; G. Bract; H. Bracteoles; I. Stipule; J. Floral segregation; K. Opened corolla; L. Filament tube and staminodes; M. Capsule; N. Seeds. Photographed by Da-Jun Xie, Shu-Ming Peng & Ren-Bo Zhang.
FIGURE 2 in Tirpitzia meiguensis (Linaceae), a new species from southwest Sichuan (China)
FIGURE 2. Line drawing of Tirpitzia meiguensis D.J.Xie & R.B.Zhang, sp. nov. A. Habit; B. Leaf; C. Bract; D. Flower; E. Pistil; F. Stamens; G. Opened stamens; H. Sepals; I. Stipule; J. Ovary cross section; K. Seed. Drawn by Tan Deng.
FIGURE 1 in Tirpitzia meiguensis (Linaceae), a new species from southwest Sichuan (China)
FIGURE 1. Transitional stem leaves and bracts of the newly discovered species in this study. A–D. Stem leaves are gradually transformed into bracts beneath a terminal simple flower (a) moving upwards a secondary branch; E. Upper simple flowers (b) are axil; F. Bracts (c) aggregated beneath sepals (d) and no stem leaves below. Scale bars: the smallest grid of the rulers is 1 mm. Photos by Da-Jun Xie & RenBo Zhang.
FIGURE 11 in Contribution to the knowledge of Chinese Gryllacrididae (Orthoptera: Ensifera: Stenopelmatoidea) XXII: New descriptions from Southwest China
FIGURE 11. Larnaca (Larnaca) longispina Zhang, Zhang & Bian, 2023. Female: A–B. head: A. frontal and slightly ventral view, B. frontal view; C–D. head and pronotum: C. dorsal view, D. lateral view; E. left wings in lateral view; F. second and third abdominal tergites in lateral view; G. apex of abdomen in lateral view; H–I. seventh abdominal sternite and subgenital plate in ventral view.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.