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Precise Localization for Anatomo-Physiological Hallmarks of the Cervical Spine by Using Neural Memory Ordinary Differential Equation.

Int J Neural Syst

December 2024

Machine Intelligence Laboratory, College of Computer Science, Sichuan University, No. 24 South Section 1, Yihuan Road, Chengdu 610065, P. R. China.

In the evaluation of cervical spine disorders, precise positioning of anatomo-physiological hallmarks is fundamental for calculating diverse measurement metrics. Despite the fact that deep learning has achieved impressive results in the field of keypoint localization, there are still many limitations when facing medical image. First, these methods often encounter limitations when faced with the inherent variability in cervical spine datasets, arising from imaging factors.

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The article presents modern literary data relating to the expediency of the purpose of glucocorticosteroids in sudden sensorineural hearing loss (SSHL) of various genes. In detail, the radar molecular mechanisms and the anatomo-physiological features of the exposure to the inner ear, side effects, the introduction methods, their comparative efficacy and modern schemes of the SSHL.

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Several data have demonstrated that during the widely used experimental paradigm for studying associative learning, trace eye blinking conditioning (TEBC), there is a strong interaction between cerebellum and medial prefrontal cortex (mPFC). Despite this evidence, the neural mechanisms underlying this interaction are still not clear. Here, we propose a neurophysiologically plausible computational model to address this issue.

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Musical mirror-symmetrical movement tasks: comparison of rhythm versus melody-playing.

Neuroreport

May 2020

Department of Electrical and Electronics Engineering, Neuroscience Graduate Program, Bilkent University, National Magnetic Resonance Research Center, Ankara, Turkey.

Bimanual mirror-symmetrical movement (MSM) is relatively easy to control movement. Different MSM tasks may have different activations and interhemispheric interactions. The purpose of this study is to compare anatomo-physiological features such as hemispheric activations and dominance of two different MSMs, namely melody-playing and rhythm.

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The use of nonhuman primate models to understand processes in Parkinson's disease.

J Neural Transm (Vienna)

March 2018

HM CINAC, Hospital Universitario HM Puerta del Sur, Av. Carlos V, 70, Móstoles, 28938, Madrid, Spain.

Research with animal models has led to critical health advances that have saved or improved the lives of millions of human beings. Specifically, nonhuman primate's genetic and anatomo-physiological similarities to humans are especially important for understanding processes like Parkinson's disease, which only occur in humans. Unambiguously, the unique contribution made by nonhuman primate research to our understanding of Parkinson's disease is widely recognized.

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