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KHALIL AHMAD
2022-AG-1448
MPHIL BOTANY
2ND MORNING
TOPIC FOR SEMINAR: BOT 707
REMOTE SENSING, TECHNIQUES AND APPLICATION IN
PLANT SCIENCE
SUPERVISORY COMMITTEE
• Supervisor _________ Dr. ROMANA IFTIKHAR
• 1ST Member _________ Dr. Sajid Aqeel Ahmad
• 2nd Member _________ Dr. Saima Younis
WHAT IS REMOTE SENSING?
• Remote sensing is the science of obtaining the physical properties
of an area without being there. It allows users to capture, visualize,
and analyze objects and features on the Earth’s surface. By
collecting imagery, we can classify it into land cover and other
types of analyses.
• This technology is becoming increasingly important in plant
science research, as it enables the monitoring of large areas of
land and crops quickly and efficiently.
REMOTE SENSING TECHNIQUES
• Satellite Imagery
• LiDAR
• Hyperspectral Imaging
• Thermal Imaging
SATELLITE IMAGERY
• Satellite imagery involves the
use of satellites to capture
images of the Earth’s surface.
• These images can be used to
monitor vegetation patterns,
identify areas of stress, and
detect changes in land use.
LIDAR
• Light Detection and Ranging (LiDAR)
is a remote sensing technology that
uses lasers to measure the distance
between the sensor and the target.
• LiDAR can be used to generate 3D
maps of vegetation, including tree
height and canopy structure.
HYPERSPECTRAL IMAGING
• Hyperspectral imaging involves the use of sensors to
capture data from a range of wavelengths across the
electromagnetic spectrum.
• This technique can be used to identify specific plant
species, monitor crop health, and detect areas of stress.
THERMAL IMAGING
• Thermal imaging involves the use
of sensors to capture data on the
temperature of surfaces.
• This technique can be used to
identify areas of stress in plants,
such as water stress or disease.
APPLICATIONS OF REMOTE SENSING IN PLANT
SCIENCE
• Crop Monitoring and Management
• Biodiversity Monitoring
• Forest Management
• Carbon Sequestration
• Urban Green Spaces
CROP MONITORING AND
MANAGEMENT
• Remote sensing can be used to
monitor crop health and growth, as
well as to identify areas of stress.
• This information can be used to
optimize irrigation, fertilization, and
pest management practices.
BIODIVERSITY MONITORING
• Remote sensing can be used to
monitor changes in plant
species distribution and
abundance over time, as well
as to identify areas of high
biodiversity.
FOREST MANAGEMENT
• Remote sensing can be used to
monitor forest health, track
changes in forest cover, and detect
forest fires.
CARBON SEQUESTRATION
• Remote sensing can be used to
estimate the amount of carbon
stored in vegetation, which is
important for understanding the
role of plants in mitigating climate
change.
URBAN GREEN SPACES
• Remote sensing can be used to
monitor the health and growth of
trees in urban green spaces,
which can improve urban air
quality and mitigate the urban
heat island effect.
THANK YOU

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Remote sensing.pptx

  • 1. KHALIL AHMAD 2022-AG-1448 MPHIL BOTANY 2ND MORNING TOPIC FOR SEMINAR: BOT 707 REMOTE SENSING, TECHNIQUES AND APPLICATION IN PLANT SCIENCE
  • 2. SUPERVISORY COMMITTEE • Supervisor _________ Dr. ROMANA IFTIKHAR • 1ST Member _________ Dr. Sajid Aqeel Ahmad • 2nd Member _________ Dr. Saima Younis
  • 3. WHAT IS REMOTE SENSING? • Remote sensing is the science of obtaining the physical properties of an area without being there. It allows users to capture, visualize, and analyze objects and features on the Earth’s surface. By collecting imagery, we can classify it into land cover and other types of analyses. • This technology is becoming increasingly important in plant science research, as it enables the monitoring of large areas of land and crops quickly and efficiently.
  • 4.
  • 5. REMOTE SENSING TECHNIQUES • Satellite Imagery • LiDAR • Hyperspectral Imaging • Thermal Imaging
  • 6. SATELLITE IMAGERY • Satellite imagery involves the use of satellites to capture images of the Earth’s surface. • These images can be used to monitor vegetation patterns, identify areas of stress, and detect changes in land use.
  • 7. LIDAR • Light Detection and Ranging (LiDAR) is a remote sensing technology that uses lasers to measure the distance between the sensor and the target. • LiDAR can be used to generate 3D maps of vegetation, including tree height and canopy structure.
  • 8. HYPERSPECTRAL IMAGING • Hyperspectral imaging involves the use of sensors to capture data from a range of wavelengths across the electromagnetic spectrum. • This technique can be used to identify specific plant species, monitor crop health, and detect areas of stress.
  • 9.
  • 10. THERMAL IMAGING • Thermal imaging involves the use of sensors to capture data on the temperature of surfaces. • This technique can be used to identify areas of stress in plants, such as water stress or disease.
  • 11. APPLICATIONS OF REMOTE SENSING IN PLANT SCIENCE • Crop Monitoring and Management • Biodiversity Monitoring • Forest Management • Carbon Sequestration • Urban Green Spaces
  • 12. CROP MONITORING AND MANAGEMENT • Remote sensing can be used to monitor crop health and growth, as well as to identify areas of stress. • This information can be used to optimize irrigation, fertilization, and pest management practices.
  • 13. BIODIVERSITY MONITORING • Remote sensing can be used to monitor changes in plant species distribution and abundance over time, as well as to identify areas of high biodiversity.
  • 14. FOREST MANAGEMENT • Remote sensing can be used to monitor forest health, track changes in forest cover, and detect forest fires.
  • 15. CARBON SEQUESTRATION • Remote sensing can be used to estimate the amount of carbon stored in vegetation, which is important for understanding the role of plants in mitigating climate change.
  • 16. URBAN GREEN SPACES • Remote sensing can be used to monitor the health and growth of trees in urban green spaces, which can improve urban air quality and mitigate the urban heat island effect.