Mücher, C. A. (2011). Monitoring biodiversity using remote sensing and field surveys (pp. 78–
102). Pennsylvania: IGI Global (Chapter 4).
Noss, R. F., & Cooperrider, A. Y. (1994). Saving nature’s legacy. Washington, D.C.: Island Press.
Parmesan, C. (2006). Ecological and evolutionary responses to recent climate change. Annual
Review of Ecology Evolution and Systematics, 37, 637–669.
Parmesan, C., & Yohe, G. (2003). A globally coherent fingerprint of climate change impacts
across natural systems. Nature, 421(6918), 37–42.
Pathak, H., Aggarwal, P. K., & Singh, S. D. (2012). Climate change impact, adaptation and
mitigation in agriculture: Methodology for assessment and application. New Delhi: Indian
Agricultural Research Institute.
Pettorelli, N., Vik, J. O., Mysterud, A., Gaillard, J., Tucker, C. J., & Stenseth, N. C. (2005). Using
the satellite-derived NDVI to assess ecological responses to environmental change. Trends in
Ecology and Evolution, 20, 503–510.
Quattrochi, D. A., & Luvall, J. C. (1999). Thermal infrared remote sensing for analysis of
landscape ecological processes: Methods and applications. Landscape Ecology, 14(6), 577–
598.
Rao, R. R., & Murti, S. K. (1990). North East India a major center for plants diversity in India.
Indian Journal of Forestry, 13(3), 214–222.
Ravindranath, N. H., Joshi, N. V., & Sukumar, R. (2006). Impact of climate change on forests in
India. CurrSci 90(3), 354–361.
Ravindranath, N. H., Murthy, I. K., & Swarnim, S. (2011). Options for forest management for
coping with climate change in South Asia. In Lal R., et al. (Eds.), Climate change and food
security in South Asia. Berlin: Springer.
Roy, P. S., Roy, A., & Karnataka, H. (2012). Contemporary tools for identification, assessment
and monitoring biodiversity. Tropical Ecology, 53(3), 261–272.
Sahney, S., Benton, M. J., & Falcon-Lang, H. J. (2010). Rainforest collapse triggered
Pennsylvanian tetrapod diversification in Euramerica. Geology, 38(12), 1079–1082.
Saikia, A. (2009). NDVI variability in North East India. Scottish Geographical Journal, 125(2),
195–213.
Sala, O. E., Chapin, F. S., & Armesto, J. J. (2000). Global biodiversity scenarios for the year 2100.
Science, 287(5459), 1770–1774.
Saxena, K. G., & Purohit, A. N. (1993). Greenhouse effect and Himalayan ecosystems.
In P. Narain (Ed.) Proceedings of the conference on First Agricultural Science Congress-1992.
New delhi: National Academy of agricultural Sciences, Indian Agricultural Research Institute,
pp. 83–93.
Schmidt, H., & Karnieli, A. (2000). Remote sensing of the seasonal variability of vegetation in a
semi-arid environment. Journal of Arid Environments, 45, 43–59.
Sigman, D. M., & Boyle, E. A. (2000). Glacial/interglacial variations in atmospheric carbon
dioxide, Nature, 407.
Singh, A. (1989). Review article-digital change detection techniques using remotely-sensed data.
International Journal of Remote Sensing, 10, 989–1003.
Singh, E. J., Singh, N. K. S., & Singh, N. R. (2009). Biodiversity conservation and natural
resources in Northeast India—With special reference to Manipur. NeBIO, 1(1), 42–47.
Stanners, D., & Bordeaux, P. (Eds.). (1995). Europe’s environment; The Dobris assessment.
European Environment Agency, Copenhagen (676 pp). Luxembourg: Office for Official
Publications of the European Communities.
Sukumar, R. (2000). Climate and ecosystem change: What does it mean for biodiversity
conservation in India? Journal of the Indian Institute of Science, 80, 609–618.
Suzuki, R., Muraoka, H., & Ishii, R. (2010). Remote sensing working group for JBON (2010)
Enhance the link between remote sensing and in-situ observation network for biodiversity
monitoring. International Archives of the Photogrammetry, Remote Sensing and Spatial
Information Science 38(8), 178–181.
The World Bank. (2008). Biodiversity, climate change and adaptation nature-based solutions
from the World Bank portfolio, Washington DC.
Biodiversity Status and Climate Change Scenario in Northeast India
119
102). Pennsylvania: IGI Global (Chapter 4).
Noss, R. F., & Cooperrider, A. Y. (1994). Saving nature’s legacy. Washington, D.C.: Island Press.
Parmesan, C. (2006). Ecological and evolutionary responses to recent climate change. Annual
Review of Ecology Evolution and Systematics, 37, 637–669.
Parmesan, C., & Yohe, G. (2003). A globally coherent fingerprint of climate change impacts
across natural systems. Nature, 421(6918), 37–42.
Pathak, H., Aggarwal, P. K., & Singh, S. D. (2012). Climate change impact, adaptation and
mitigation in agriculture: Methodology for assessment and application. New Delhi: Indian
Agricultural Research Institute.
Pettorelli, N., Vik, J. O., Mysterud, A., Gaillard, J., Tucker, C. J., & Stenseth, N. C. (2005). Using
the satellite-derived NDVI to assess ecological responses to environmental change. Trends in
Ecology and Evolution, 20, 503–510.
Quattrochi, D. A., & Luvall, J. C. (1999). Thermal infrared remote sensing for analysis of
landscape ecological processes: Methods and applications. Landscape Ecology, 14(6), 577–
598.
Rao, R. R., & Murti, S. K. (1990). North East India a major center for plants diversity in India.
Indian Journal of Forestry, 13(3), 214–222.
Ravindranath, N. H., Joshi, N. V., & Sukumar, R. (2006). Impact of climate change on forests in
India. CurrSci 90(3), 354–361.
Ravindranath, N. H., Murthy, I. K., & Swarnim, S. (2011). Options for forest management for
coping with climate change in South Asia. In Lal R., et al. (Eds.), Climate change and food
security in South Asia. Berlin: Springer.
Roy, P. S., Roy, A., & Karnataka, H. (2012). Contemporary tools for identification, assessment
and monitoring biodiversity. Tropical Ecology, 53(3), 261–272.
Sahney, S., Benton, M. J., & Falcon-Lang, H. J. (2010). Rainforest collapse triggered
Pennsylvanian tetrapod diversification in Euramerica. Geology, 38(12), 1079–1082.
Saikia, A. (2009). NDVI variability in North East India. Scottish Geographical Journal, 125(2),
195–213.
Sala, O. E., Chapin, F. S., & Armesto, J. J. (2000). Global biodiversity scenarios for the year 2100.
Science, 287(5459), 1770–1774.
Saxena, K. G., & Purohit, A. N. (1993). Greenhouse effect and Himalayan ecosystems.
In P. Narain (Ed.) Proceedings of the conference on First Agricultural Science Congress-1992.
New delhi: National Academy of agricultural Sciences, Indian Agricultural Research Institute,
pp. 83–93.
Schmidt, H., & Karnieli, A. (2000). Remote sensing of the seasonal variability of vegetation in a
semi-arid environment. Journal of Arid Environments, 45, 43–59.
Sigman, D. M., & Boyle, E. A. (2000). Glacial/interglacial variations in atmospheric carbon
dioxide, Nature, 407.
Singh, A. (1989). Review article-digital change detection techniques using remotely-sensed data.
International Journal of Remote Sensing, 10, 989–1003.
Singh, E. J., Singh, N. K. S., & Singh, N. R. (2009). Biodiversity conservation and natural
resources in Northeast India—With special reference to Manipur. NeBIO, 1(1), 42–47.
Stanners, D., & Bordeaux, P. (Eds.). (1995). Europe’s environment; The Dobris assessment.
European Environment Agency, Copenhagen (676 pp). Luxembourg: Office for Official
Publications of the European Communities.
Sukumar, R. (2000). Climate and ecosystem change: What does it mean for biodiversity
conservation in India? Journal of the Indian Institute of Science, 80, 609–618.
Suzuki, R., Muraoka, H., & Ishii, R. (2010). Remote sensing working group for JBON (2010)
Enhance the link between remote sensing and in-situ observation network for biodiversity
monitoring. International Archives of the Photogrammetry, Remote Sensing and Spatial
Information Science 38(8), 178–181.
The World Bank. (2008). Biodiversity, climate change and adaptation nature-based solutions
from the World Bank portfolio, Washington DC.
Biodiversity Status and Climate Change Scenario in Northeast India
119
