Background and Aims Storms can cause huge damage to European forests. Even pole-stage trees with 80-cm rooting depth can topple. Therefore, good anchorage is needed for trees to survive and grow up from an early age. We hypothesized that root architecture is a predominant factor determining anchorage failure caused by strong winds. Methods We sampled 48 seeded or planted Pinus pinaster trees of similar aerial size from four stands damaged by a major storm 3 years before. The trees were gathered into three classes: undamaged, leaning and heavily toppled. After uprooting and 3D digitizing of their full root architectures, we computed the mechanical characteristics of the main components of the root system from our morphological measurements. ...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
The mechanical structure of 24 root systems was studied in 50 year old Maritime pine (Pinus pinaster...
The mechanical structure of 24 root systems was studied in 50 year old Maritime pine (Pinus pinaster...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
The mechanical structure of 24 root systems was studied in 50 year old Maritime pine (Pinus pinaster...
The mechanical structure of 24 root systems was studied in 50 year old Maritime pine (Pinus pinaster...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
Tree anchorage is a primary function for plant survival which may reach its limit under extreme cond...
International audienceThe mechanical structure of 24 root systems was studied in 50 year old Maritim...
The mechanical structure of 24 root systems was studied in 50 year old Maritime pine (Pinus pinaster...