Related Experiment Video
Updated: Aug 28, 2026

Inducing Complete Polyp Regeneration from the Aboral Physa of the Starlet Sea Anemone Nematostella vectensis
Published on: January 14, 2017
Waned mantle upwelling contributes to a heavily deformed northern smooth plains on Mercury
Jingchun Xie1, Yan Zhan2, Shengxia Gong3
1Department of Earth and Environmental Sciences, The Chinese University of Hong Kong, Hong Kong SAR, China.
Abstract:
Recent advancements in mapping and interpretation have revealed both numerous contractional landforms and evidence that tectonic activity has persisted into geologically recent times in Mercury's northern smooth plains (NSP). To investigate the mechanisms behind these observations, we conduct a comprehensive assessment of contractional strain across the NSP. Our analysis reveals that (1) the NSP exhibits higher strain than other terranes on Mercury, and (2) the surface deformation pattern is spatially correlated with the Northern Rise (NR) at the center of the NSP, suggesting an additional driving force. We propose that this elevated strain and its distribution result from waned mantle upwelling induced by deep mantle flow beneath the NR. Sustained variations in dynamic topography likely fueled the long-standing tectonism in the NSP. These findings provide a complementary perspective on Mercury's evolutionary history and may help illuminate similar processes on other terrestrial planets.
Related Concept Videos
Magnetostatic Boundary Conditions
Temperature Dependent Deformation
Divergence and Curl of Magnetic Field
Deformations in a Transverse Cross Section
As the material stretches, it expands or contracts in orthogonal directions to the load. This phenomenon varies...
Magnetic Field Lines
Magnetic field lines follow several hard-and-fast rules:
Equipotential Surfaces and Field Lines

