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Dmitrijs Celinskis

Explore the profile of Dmitrijs Celinskis including associated specialties, affiliations and a list of published articles. Areas
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Recent Articles
1.
Celinskis D, Black C, Murphy J, Barrios-Anderson A, Friedman N, Shaner N, et al.
Neurophotonics . 2024 May; 11(2):024209. PMID: 38725801
Significance: Pain comprises a complex interaction between motor action and somatosensation that is dependent on dynamic interactions between the brain and spinal cord. This makes understanding pain particularly challenging as...
2.
Celinskis D, Black C, Murphy J, Barrios-Anderson A, Friedman N, Shaner N, et al.
bioRxiv . 2024 Jan; PMID: 38234789
Significance: Pain is comprised of a complex interaction between motor action and somatosensation that is dependent on dynamic interactions between the brain and spinal cord. This makes understanding pain particularly...
3.
Lambert G, Crespo E, Murphy J, Boassa D, Luong S, Celinskis D, et al.
bioRxiv . 2023 Jul; PMID: 37425712
Ca plays many critical roles in cell physiology and biochemistry, leading researchers to develop a number of fluorescent small molecule dyes and genetically encodable probes that optically report changes in...
4.
Celinskis D, Friedman N, Koksharov M, Murphy J, Gomez-Ramirez M, Borton D, et al.
Annu Int Conf IEEE Eng Med Biol Soc . 2020 Oct; 2020:4385-4389. PMID: 33018967
In vivo fluorescence miniature microscopy has recently proven a major advance, enabling cellular imaging in freely behaving animals. However, fluorescence imaging suffers from autofluorescence, phototoxicity, photobleaching and non- homogeneous illumination...
5.
Celinskis D, Grabiner M, Honeycutt C
Clin Neurophysiol . 2017 Dec; 129(1):258-264. PMID: 29223103
Objective: Falls are the most common and expensive medical complication following stroke. Hypermetric reflexes have been suggested to impact post-stroke balance but no study has evaluated reflex amplitudes under real...
6.
Celinskis D, Towe B
Annu Int Conf IEEE Eng Med Biol Soc . 2015 Jan; 2014:6937-40. PMID: 25571591
Wireless microdevices powered by ultrasound energy have been fabricated to measure and telemeter tissue impedance spectrums for applications in peripheral vascular disease monitoring. The system is characterized by simplicity of...