Area of research
Global and Planetary Change · Ecology
Research interest
Research interests include Populus euphratica, Environmental science, Vegetation (pathology), Groundwater, Tamarix, and Arid.
Intensification of extreme climatic events in Central Asia’s arid regions amid climate change
Accelerated disappearance of desert oases: The impact of climate warming and farmland expansion
Response of Populus euphratica radial growth to drought in desert Oases, Taklamakan Desert, China
The impact of different water–salt gradients on the health and growth of Populus euphratica in the oases of the Taklamakan Desert's interior
Influence of Climate and Hydrological Factors on the Phenological Characteristics of Populus Euphratica in the Oasis of the Central Taklamakan Desert
Influence of Climate and Hydrological Factors on the Phenological Characteristics of Populus Euphratica in the Oasis of the Central Taklamakan Desert
The Influence of Climate and Hydrological Factors on the Phenological Characteristics of Populus euphratica in the Oasis of the Central Taklamakan Desert
Effects of intrinsic water-use efficiency and environmental factors on radial growth of Populus euphratica, Taklamakan Desert, China
Water-use characteristics of Populus euphratica trees in response to flood and groundwater depth in desert oasis
Influence of surface water and groundwater gradient on spatial distribution of typical vegetation in the hinterland of Taklamakan desert
Effects of meteorological factors and groundwater depths on sap flow density of Populus euphratica in a desert oasis, Taklamakan Desert, China
Influence of Climate, Topography, and Hydrology on Vegetation Distribution Patterns—Oasis in the Taklamakan Desert Hinterland
Distinct Impact of Drought on Radial Growth at Different Heights and Parts of Populus euphratica in the Oasis at the Hinterland of the Taklimakan Desert
Plant Population Classification Based on PointCNN in the Daliyabuyi Oasis, China
Water Use Characteristics of Populus euphratica Oliv. and Tamarix chinensis Lour. at Different Growth Stages in a Desert Oasis
The combined effect of surface water and groundwater on environmental heterogeneity reveals the basis of beta diversity pattern in desert oasis communities
Impact of Flooding on Shallow Groundwater Chemistry in the Taklamakan Desert Hinterland: Remote Sensing Inversion and Geochemical Methods
[Water sources of <i>Populus euphratica</i> with different tree ages in the oasis of desert hinterland.]
What Is the Effect of Quantitative Inversion of Photosynthetic Pigment Content in Populus euphratica Oliv. Individual Tree Canopy Based on Multispectral UAV Images?
Using Sentinel-2 Images to Map the Populus euphratica Distribution Based on the Spectral Difference Acquired at the Key Phenological Stage
Influence of Surface Water on Desert Vegetation Expansion at the Landscape Scale: A Case Study of the Daliyabuyi Oasis, Taklamakan Desert