Leaf Thickness Determination

Leaf Thickness Determination is a quantitative method for measuring the distance between a leaf’s upper and lower surfaces, providing a structural indicator relevant to plant biochemistry and physiology. Researchers typically assess thickness with a calibrated micrometer, imaging system, or cross-sectional analysis while controlling tissue hydration, sampling location, and orientation to improve consistency. The measurement helps relate leaf anatomy to photosynthetic capacity, water retention, gas exchange, and the distribution of biochemical components such as pigments, proteins, and metabolites. Comparing thickness across species, developmental stages, or environmental conditions can reveal how plants adjust tissue structure to support metabolism and respond to stress.

Leaf Thickness Determination - Related Videos

Research

JoVE Journal - Biology
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Relating Stomatal Conductance to Leaf Functional Traits

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Cited by 39 •

2015

Unraveling how physiology and morphology are linked allows a deeper understanding of mechanistic functioning of plant leaves. We present both a procedure to derive parameters of stomatal regulation from stomatal conductance measurements and correlations with traditional functional leaf traits.

Research

JoVE Journal - Immunology and Infection

Murine Full-thickness Skin Transplantation

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Cited by 41 •

2017

Murine full-thickness skin transplantation is a well-established model to study rejection in an alloimmune setting. Here, we provide a tutorial of each step involved in performing a BALB/c-->C57BL/6 full-thickness skin transplant.

Lymphedema Ultrasonography: A Technique to Measure the Change in Thickness of an Affected Tissue

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2023

This video utilizes ultrasonography for diagnosis and follow-up tests to determine treatment efficacy of Progressive Resistance Exercise (PRE) in breast cancer-related lymphedema (BCRL). Ultrasonography can be applied effectively to ensure diagnosis and treatment of lymphedema.

LeafJ: An ImageJ Plugin for Semi-automated Leaf Shape Measurement

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Cited by 93 •

2013

Demonstration of key methods for high throughput leaf measurements. These methods can be used to accelerate leaf phenotyping when studying many plant mutants or otherwise screening plants by leaf phenotype.

A Rapid Laser Probing Method Facilitates the Non-invasive and Contact-free Determination of Leaf Thermal Properties

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Cited by 2 •

2017

A method was developed to determine the specific heat capacity and thermal conductivity of leaf tissue by non-invasive, contact-free near infrared laser probing, which requires less than 1 min per sample.

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