Journal Article: Unconscious influences on “free will” movement initiation: slow-wave brain stimulation and the readiness potential
Armstrong, Samuel R., Bland, Nicholas S., Sale, Martin V. and Cunnington, Ross (2022). Unconscious influences on “free will” movement initiation: slow-wave brain stimulation and the readiness potential. Journal of Cognitive Neuroscience, 34 (6), 1038-1052. doi: 10.1162/jocn_a_01840
Journal Article: Unconscious Influences on “Free Will” Movement Initiation: Slow-wave Brain Stimulation and the Readiness Potential
Armstrong, Samuel, Bland, Nicholas S., Sale, Martin V. and Cunnington, Ross (2022). Unconscious Influences on “Free Will” Movement Initiation: Slow-wave Brain Stimulation and the Readiness Potential. Journal of Cognitive Neuroscience, 34 (6), 1038-1052. doi: 10.1162/jocn_a_01840
Conference Publication: Slow wave transcranial electrical stimulation during wake to investigate the consolidation of new learning
Wood, Julia, Brownsett, Sonia, Bland, Nicholas and Sale, Martin (2021). Slow wave transcranial electrical stimulation during wake to investigate the consolidation of new learning. Sleep Down Under, Online, 8-11 November 2021. Oxford, United Kingdom: Oxford University Press. doi: 10.1093/sleepadvances/zpab014.202
The sensory make-up of virtual environments and its role in the effective transfer of learning to real-world tasks
Doctor Philosophy
The role of haptic cues in learning transfer between virtual and real-world environments
Doctor Philosophy
Sleep, plasticity, and non-invasive brain stimulation
Doctor Philosophy
Armstrong, Samuel R., Bland, Nicholas S., Sale, Martin V. and Cunnington, Ross (2022). Unconscious influences on “free will” movement initiation: slow-wave brain stimulation and the readiness potential. Journal of Cognitive Neuroscience, 34 (6), 1038-1052. doi: 10.1162/jocn_a_01840
Armstrong, Samuel, Bland, Nicholas S., Sale, Martin V. and Cunnington, Ross (2022). Unconscious Influences on “Free Will” Movement Initiation: Slow-wave Brain Stimulation and the Readiness Potential. Journal of Cognitive Neuroscience, 34 (6), 1038-1052. doi: 10.1162/jocn_a_01840
Geffen, Asher, Bland, Nicholas and Sale, Martin V (2021). Effects of slow oscillatory transcranial alternating current stimulation on motor cortical excitability assessed by transcranial magnetic stimulation. Frontiers in Human Neuroscience, 15 726604, 726604. doi: 10.3389/fnhum.2021.726604
Letter to the editor: Is two decades of tDCS work wrong?
Bland, Nicholas S. (2021). Letter to the editor: Is two decades of tDCS work wrong?. Brain Stimulation, 14 (2), 438-439. doi: 10.1016/j.brs.2021.02.016
Gamma coherence mediates interhemispheric integration during multiple object tracking
Bland, Nicholas S., Mattingley, Jason B. and Sale, Martin V. (2020). Gamma coherence mediates interhemispheric integration during multiple object tracking. Journal of Neurophysiology, 123 (5), 1630-1644. doi: 10.1152/jn.00755.2019
Brown, Peter, Tan, Aik-Choon, El-Esawi, Mohamed A., Liehr, Thomas, Blanck, Oliver, Gladue, Douglas P., Almeida, Gabriel M. F., Cernava, Tomislav, Sorzano, Carlos O., Yeung, Andy W. K., Engel, Michael S., Chandrasekaran, Arun Richard, Muth, Thilo, Staege, Martin S., Daulatabad, Swapna V., Widera, Darius, Zhang, Junpeng, Meule, Adrian, Honjo, Ken, Pourret, Olivier, Yin, Cong-Cong, Zhang, Zhongheng, Cascella, Marco, Flegel, Willy A., Goodyear, Carl S., van Raaij, Mark J., Bukowy-Bieryllo, Zuzanna, Campana, Luca G., Kurniawan, Nicholas A. ... RELISH Consortium (2019). Large expert-curated database for benchmarking document similarity detection in biomedical literature search. Database-The Journal of Biological Databases and Curation, 2019, 1-67. doi: 10.1093/database/baz085
Current challenges: the ups and downs of tACS
Bland, Nicholas S. and Sale, Martin V. (2019). Current challenges: the ups and downs of tACS. Experimental Brain Research, 237 (12), 3071-3088. doi: 10.1007/s00221-019-05666-0
Rapid recalibration of temporal order judgements: response bias accounts for contradictory results
Keane, Brendan, Bland, Nicholas S., Matthews, Natasha, Carroll, Timothy J and Wallis, Guy (2019). Rapid recalibration of temporal order judgements: response bias accounts for contradictory results. European Journal of Neuroscience, 51 (7) ejn.14551, 1697-1710. doi: 10.1111/ejn.14551
No evidence for phase-specific effects of 40 Hz HD–tACS on multiple object tracking
Bland, Nicholas S., Mattingley, Jason B. and Sale, Martin V. (2018). No evidence for phase-specific effects of 40 Hz HD–tACS on multiple object tracking. Frontiers in Psychology, 9 (304) 304, 304. doi: 10.3389/fpsyg.2018.00304
Wood, Julia, Brownsett, Sonia, Bland, Nicholas and Sale, Martin (2021). Slow wave transcranial electrical stimulation during wake to investigate the consolidation of new learning. Sleep Down Under, Online, 8-11 November 2021. Oxford, United Kingdom: Oxford University Press. doi: 10.1093/sleepadvances/zpab014.202
Geffen, Asher, Bland, Nicholas and Sale, Martin V (2021). Effects of slow oscillatory transcranial alternating current stimulation on motor cortical excitability assessed by transcranial magnetic stimulation.
Oscillating neural networks: perspectives from rhythmic brain stimulation
Bland, Nicholas Simon (2019). Oscillating neural networks: perspectives from rhythmic brain stimulation. PhD Thesis, Queensland Brain Institute, The University of Queensland. doi: 10.14264/uql.2019.407
Modulation of Corticomotor Neuroplasticity using Induced Slow Oscillations
Bland, Nicholas (2014). Modulation of Corticomotor Neuroplasticity using Induced Slow Oscillations. Honours Thesis, School of Psychology, The University of Queensland.
The sensory make-up of virtual environments and its role in the effective transfer of learning to real-world tasks
Doctor Philosophy — Associate Advisor
Other advisors:
The role of haptic cues in learning transfer between virtual and real-world environments
Doctor Philosophy — Associate Advisor
Other advisors:
Sleep, plasticity, and non-invasive brain stimulation
Doctor Philosophy — Associate Advisor
Other advisors:
How do neural oscillations influence cortical excitability?
Doctor Philosophy — Associate Advisor
Other advisors: