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Lakshman Abhilash
Lakshman Abhilash
Advanced Science Research Center CUNY
Verified email at gc.cuny.edu
Title
Cited by
Cited by
Year
RhythmicAlly: your R and shiny–based open-source ally for the analysis of biological rhythms
L Abhilash, V Sheeba
Journal of biological rhythms 34 (5), 551-561, 2019
362019
Molecular Correlates of Circadian Clocks in Fruit Fly Drosophila melanogaster Populations Exhibiting early and late Emergence Chronotypes
KL Nikhil, L Abhilash, VK Sharma
Journal of biological rhythms 31 (2), 125-141, 2016
252016
To be or not to be rhythmic? A review of studies on organisms inhabiting constant environments
L Abhilash, R Shindey, VK Sharma
Biological rhythm research 48 (5), 677-691, 2017
182017
Chronotype differences in Drosophila are enhanced by semi-natural conditions
KM Vaze, NN Kannan, L Abhilash, VK Sharma
Naturwissenschaften 99, 967-971, 2012
132012
PHASE: An Open-Source Program for the Analysis of DrosophilaPhase, Activity, and Sleep Under Entrainment
JL Persons, L Abhilash, AJ Lopatkin, A Roelofs, EV Bell, MP Fernandez, ...
Journal of biological rhythms 37 (4), 455-467, 2022
122022
Circadian Clock Properties and Their Relationships as a Function of Free-Running Period in Drosophila melanogaster
M Srivastava, V Varma, L Abhilash, VK Sharma, V Sheeba
Journal of biological rhythms 34 (3), 231-248, 2019
102019
On the relevance of using laboratory selection to study the adaptive value of circadian clocks
L Abhilash, VK Sharma
Physiological entomology 41 (4), 293-306, 2016
92016
Selection for Timing of Eclosion Results in Co-evolution of Temperature Responsiveness in Drosophila melanogaster
L Abhilash, A Ghosh, V Sheeba
Journal of Biological Rhythms 34 (6), 596-609, 2019
72019
Proteomics of Asrij Perturbation in Drosophila Lymph Glands for Identification of New Regulators of Hematopoiesis*[S]
S Sinha, A Ray, L Abhilash, M Kumar, SK Sreenivasamurthy, TSK Prasad, ...
Molecular & Cellular Proteomics 18 (6), 1171-1182, 2019
52019
A two-process model of Drosophila sleep reveals an inter-dependence between circadian clock speed and the rate of sleep pressure decay
L Abhilash, OT Shafer
Sleep 47 (2), zsad277, 2024
42024
Mechanisms of photic entrainment of activity/rest rhythms in populations of Drosophila selected for divergent timing of eclosion
L Abhilash, VK Sharma
Chronobiology International 37 (4), 469-484, 2020
42020
Responses of activity rhythms to temperature cues evolve in Drosophila populations selected for divergent timing of eclosion
L Abhilash, A Kalliyil, V Sheeba
Journal of Experimental Biology 223 (11), jeb222414, 2020
32020
Circadian Regulation of Sleep in Drosophila: Insights from a Two-Process Model
L Abhilash, OT Shafer
bioRxiv, 2022.08. 12.503775, 2022
12022
Parametric effects of light acting via multiple photoreceptor types contribute significantly to circadian entrainment in Drosophila melanogaster
L Abhilash, OT Shafer
BioRxiv, 2022.03. 02.482722, 2022
12022
Activity/rest rhythms of Drosophila populations selected for divergent eclosion timing under temperature cues
L Abhilash, K Arshad, V Sheeba
bioRxiv, 831347, 2019
12019
Time measurement in living systems: human understanding and health implications
L Abhilash, VK Sharma
Space, Time and the Limits of Human Understanding, 337-352, 2017
12017
Homeostatic control of deep sleep and molecular correlates of sleep pressure in Drosophila
B Chowdhury, L Abhilash, A Ortega, S Liu, O Shafer
Elife 12, e91355, 2023
2023
Parametric effects of light acting via multiple photoreceptors contribute to circadian entrainment in Drosophila melanogaster
L Abhilash, OT Shafer
Proceedings of the Royal Society B 290 (2006), 20230149, 2023
2023
Homeostatic control of deep sleep in Drosophila: Implications for Discovering Correlates of Sleep Pressure
B Chowdhury, L Abhilash, A Ortega, S Liu, O Shafer
bioRxiv, 2022.09. 30.510368, 2022
2022
PHASE: A MATLAB Based Program for the Analysis of Drosophila Phase, Activity and Sleep under Entrainment
JL Persons, L Abhilash, AJ Lopatkin, A Roelofs, EV Bell, MP Fernandez, ...
bioRxiv, 2021.12. 14.472617, 2021
2021
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