Joseph J Pancrazio
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Explore the profile of Joseph J Pancrazio including associated specialties, affiliations and a list of published articles.
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93
Citations
993
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Recent Articles
1.
Haghighi P, Jeakle E, Sturgill B, Abbott J, Solis E, Devata V, et al.
Micromachines (Basel)
. 2025 Mar;
16(2).
PMID: 40047565
Implantable microelectrode arrays (MEAs) enable the recording of electrical activity from cortical neurons for applications that include brain-machine interfaces. However, MEAs show reduced recording capabilities under chronic implantation conditions. This...
2.
Khajehzadeh M, Kumara S, Geramifard N, Thai T, Hernandez-Reynoso A, Pancrazio J, et al.
Annu Int Conf IEEE Eng Med Biol Soc
. 2025 Mar;
2024:1-4.
PMID: 40040075
Penetrating, Ultra-small Microelectrode Arrays (UMEAs) have been shown to evoke less foreign body response on implantation in neural tissue. This may be attributed to reduced tissue displacement on implantation and...
3.
Sturgill B, Jiang M, Jeakle E, Smith T, Hoeferlin G, Duncan J, et al.
Annu Int Conf IEEE Eng Med Biol Soc
. 2025 Mar;
2024:1-5.
PMID: 40039888
Intracortical microelectrode arrays (MEAs) are used to record neural activity in vivo at single-cell resolution for both neuroscience studies and for engineering restorative devices such as brain-computer interfaces (BCIs). The...
4.
Jeakle E, Abbott J, Smith T, Cogan S, Hernandez-Reynoso A, Pancrazio J
Annu Int Conf IEEE Eng Med Biol Soc
. 2025 Mar;
2024:1-5.
PMID: 40039794
Intracortical microelectrode arrays (MEAs) can record electrical activity from single neurons within the cortex of the brain. Typically, a collection of spikes constituting a single unit, presumed to be a...
5.
Smith T, Smith T, Faruk F, Bendea M, Kumara S, Capadona J, et al.
Bio Protoc
. 2024 Nov;
14(21):e5098.
PMID: 39525969
Behavioral neuroscience requires precise and unbiased methods for animal behavior assessment to elucidate complex brain-behavior interactions. Traditional manual scoring methods are often labor-intensive and can be prone to error, necessitating...
6.
Li Y, Frederick R, George D, Cogan S, Pancrazio J, Bleris L, et al.
J Neural Eng
. 2024 Jun;
21(3).
PMID: 38885676
. The safe delivery of electrical current to neural tissue depends on many factors, yet previous methods for predicting tissue damage rely on only a few stimulation parameters. Here, we...
7.
Kalia A, Rosseler C, Granja-Vazquez R, Ahmad A, Pancrazio J, Neureiter A, et al.
Stem Cell Res Ther
. 2024 Apr;
15(1):99.
PMID: 38581069
Background: Human induced pluripotent stem cell (iPSC)-derived peripheral sensory neurons present a valuable tool to model human diseases and are a source for applications in drug discovery and regenerative medicine....
8.
Abbott J, Jeakle E, Haghighi P, Usoro J, Sturgill B, Wu Y, et al.
Biomaterials
. 2024 Mar;
308:122543.
PMID: 38547834
Chronic implantation of intracortical microelectrode arrays (MEAs) capable of recording from individual neurons can be used for the development of brain-machine interfaces. However, these devices show reduced recording capabilities under...
9.
Haghighi P, Schaub M, Shebindu A, Vijayakumar G, Sood A, Granja-Vazquez R, et al.
Brain Sci
. 2024 Mar;
14(3).
PMID: 38539612
PIEZO1 is a mechanosensitive ion channel expressed in various organs, including but not limited to the brain, heart, lungs, kidneys, bone, and skin. PIEZO1 has been implicated in astrocyte, microglia,...
10.
Smith T, Smith T, Faruk F, Bendea M, Kumara S, Capadona J, et al.
eNeuro
. 2024 Feb;
11(3).
PMID: 38351132
In the field of behavioral neuroscience, the classification and scoring of animal behavior play pivotal roles in the quantification and interpretation of complex behaviors displayed by animals. Traditional methods have...