human | Q5 |
P227 | GND ID | 1155506081 |
P8189 | National Library of Israel J9U ID | 987007403677505171 |
P496 | ORCID iD | 0000-0001-7830-5590 |
P1153 | Scopus author ID | 12768966000 |
P214 | VIAF ID | 413152742934327730941 |
P734 | family name | Jacobsen | Q1677742 |
Jacobsen | Q1677742 | ||
Jacobsen | Q1677742 | ||
P735 | given name | Anna | Q666578 |
Anna | Q666578 | ||
P106 | occupation | researcher | Q1650915 |
P21 | sex or gender | female | Q6581072 |
Q43532871 | A global analysis of xylem vessel length in woody plants |
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Q31113405 | Chaparral Shrub Hydraulic Traits, Size, and Life History Types Relate to Species Mortality during California's Historic Drought of 2014 |
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Q93171802 | Direct comparison of four methods to construct xylem vulnerability curves: Differences among techniques are linked to vessel network characteristics |
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Q46193280 | Do xylem fibers affect vessel cavitation resistance? |
Q39557142 | Excising stem samples underwater at native tension does not induce xylem cavitation. |
Q57178754 | Extensive drought-associated plant mortality as an agent of type-conversion in chaparral shrublands |
Q101164992 | Forest and woodland replacement patterns following drought-related mortality |
Q88145350 | Functional lifespans of xylem vessels: Development, hydraulic function, and post-function of vessels in several species of woody plants |
Q30578178 | Global convergence in the vulnerability of forests to drought. |
Q91449463 | Going with the flow: Structural determinants of vascular tissue transport efficiency and safety |
Q91986445 | High-resolution computed tomography reveals dynamics of desiccation and rehydration in fern petioles of a desiccation-tolerant fern |
Q57173758 | Identifying which conduits are moving water in woody plants: a new HRCT-based method |
Q46043495 | Mechanisms for tolerating freeze-thaw stress of two evergreen chaparral species: Rhus ovata and Malosma laurina (Anacardiaceae). |
Q34394782 | Mortality of resprouting chaparral shrubs after a fire and during a record drought: physiological mechanisms and demographic consequences. |
Q58388254 | New research on plant-water relations examines the molecular, structural, and physiological mechanisms of plant responses to their environment |
Q46262343 | No evidence for an open vessel effect in centrifuge-based vulnerability curves of a long-vesselled liana (Vitis vinifera). |
Q112780073 | Node frequency alters stem biomechanics and hydraulics in four deciduous woody species |
Q58310338 | On research priorities to advance understanding of the safety-efficiency tradeoff in xylem |
Q31066877 | Plant hydraulics as a central hub integrating plant and ecosystem function: meeting report for 'Emerging Frontiers in Plant Hydraulics' (Washington, DC, May 2015). |
Q46086385 | Plant hydraulics: new discoveries in the pipeline |
Q43916679 | Relationships among xylem transport, biomechanics and storage in stems and roots of nine Rhamnaceae species of the California chaparral. |
Q30900152 | Root resistance to cavitation is accurately measured using a centrifuge technique. |
Q39643954 | Single vessel air injection estimates of xylem resistance to cavitation are affected by vessel network characteristics and sample length |
Q39098242 | Structural determinants of increased susceptibility to dehydration-induced cavitation in post-fire resprouting chaparral shrubs |
Q38600836 | Towards understanding resprouting at the global scale |
Q112808647 | Trade-offs among transport, support, and storage in xylem from shrubs in a semiarid chaparral environment tested with structural equation modeling |
Q46885168 | Vulnerability to cavitation of central California Arctostaphylos (Ericaceae): a new analysis. |
Q33917853 | Water stress tolerance of shrubs in Mediterranean-type climate regions: Convergence of fynbos and succulent karoo communities with California shrub communities |
Q35778455 | Weak tradeoff between xylem safety and xylem-specific hydraulic efficiency across the world's woody plant species. |
Q91304105 | Wood structure and function change with maturity: Age of the vascular cambium is associated with xylem changes in current-year growth |
Q45815941 | Xylem function of arid-land shrubs from California, USA: an ecological and evolutionary analysis. |
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