Lawren Sack

Lawren Sack

University of California, Los Angeles

H-index: 88

North America-United States

About Lawren Sack

Lawren Sack, With an exceptional h-index of 88 and a recent h-index of 66 (since 2020), a distinguished researcher at University of California, Los Angeles,

His recent articles reflect a diverse array of research interests and contributions to the field:

Author Correction: Relationships of stomatal morphology to the environment across plant communities

Allometries of cell and tissue anatomy and photosynthetic rate across leaves of C3 and C4 grasses

Mycorrhizal feedbacks influence global forest structure and diversity

Relationships of stomatal morphology to the environment across plant communities

The dynamic multi‐functionality of leaf water transport outside the xylem

Low baseline intraspecific variation in leaf pressure‐volume traits: Biophysical basis and implications for spectroscopic sensing

Thresholds for persistent leaf photochemical damage predict plant drought resilience in a tropical rainforest

Ghosts of dry seasons past: Legacy of severe drought enhances mangrove salinity tolerance through coordinated cellular osmotic and elastic adjustments

Lawren Sack Information

University

Position

___

Citations(all)

32268

Citations(since 2020)

19435

Cited By

20597

hIndex(all)

88

hIndex(since 2020)

66

i10Index(all)

189

i10Index(since 2020)

177

Email

University Profile Page

Google Scholar

Top articles of Lawren Sack

Author Correction: Relationships of stomatal morphology to the environment across plant communities

Nature Communications

2024/1/10

Allometries of cell and tissue anatomy and photosynthetic rate across leaves of C3 and C4 grasses

Plant, Cell & Environment

2024/1

Relationships of stomatal morphology to the environment across plant communities

Nature Communications

2023/10/19

The dynamic multi‐functionality of leaf water transport outside the xylem

2023/9

Low baseline intraspecific variation in leaf pressure‐volume traits: Biophysical basis and implications for spectroscopic sensing

Physiologia Plantarum

2023/7

Thresholds for persistent leaf photochemical damage predict plant drought resilience in a tropical rainforest

New Phytologist

2023/7

Ghosts of dry seasons past: Legacy of severe drought enhances mangrove salinity tolerance through coordinated cellular osmotic and elastic adjustments

Plant, cell & environment

2023/7

The ecosystem wilting point defines drought response and recovery of a Quercus‐Carya forest

Global Change Biology

2023/4

Leaves as bottlenecks: The contribution of tree leaves to hydraulic resistance within the soil− plant− atmosphere continuum

Plant, Cell & Environment

2023/3

Methods and Systems for Detecting Water Status in Plants Using Terahertz Radiation

2023/1/5

Predicting ecosystem productivity based on plant community traits

2022/9/14

Burning questions for a warming and changing world: 15 unknowns in plant abiotic stress

2023/1/1

Thermal sensitivity across forest vertical profiles: patterns, mechanisms, and ecological implications

2023/1

Lawren Sack
Lawren Sack

H-Index: 57

Predicting plant species climate niches on the basis of mechanistic traits

Functional Ecology

2023/11

Testing the association of relative growth rate and adaptation to climate across natural ecotypes of Arabidopsis

New Phytologist

2022/7/10

The global vulnerability of plant xylem

2022/9/19

Effects of trehalose and polyacrylate-based hydrogels on tomato growth under drought

AoB Plants

2022/8/1

Marvin Browne
Marvin Browne

H-Index: 3

Lawren Sack
Lawren Sack

H-Index: 57

Leaf water potential measurements using the pressure chamber: Synthetic testing of assumptions towards best practices for precision and accuracy

Plant, Cell & Environment

2022/7

See List of Professors in Lawren Sack University(University of California, Los Angeles)

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