Biography and Research Information
OverviewAI-generated summary
Tayler Appleton's research investigates various aspects of pediatric neurological conditions and medical research methodology. Recent publications include a multicenter study on unilateral deep brain stimulation for post-traumatic tremor in children, an observational study on syringomyelia in myelomeningocele, and a study on predictive parameters for posterior cranial fossa decompression in pediatric patients with Chiari I malformation and autism spectrum disorder. Appleton also contributed to research focused on enhancing reproducibility in single-cell research through biocytometry, with work appearing in inter-laboratory studies. Additionally, a case report on Plesiomonas shigelloides infection in newborns was published. Appleton has collaborated with researchers from Ouachita Baptist University and Harding University Main Campus on multiple publications.
Metrics
- h-index: 1
- Publications: 6
- Citations: 4
Selected Publications
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Individuation of predictive parameters of posterior cranial fossa decompression in pediatric patients with Chiari I malformation and autism spectrum disorder (2026)
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Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study (2024)
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Plesiomonas shigelloides infection in newborn: case report and literature review (2024)
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Enhancing reproducibility and decentralization in single cell research with biocytometry (2024)
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Unilateral deep brain stimulation (DBS) of nucleus ventralis intermedius thalami (Vim) for the treatment of post-traumatic tremor in children: a multicentre experience (2024)
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Understanding Syringomyelia in Myelomeningocele: A Clinical Observational Study. (2023)
Collaboration Network
Top Collaborators
- Unilateral deep brain stimulation (DBS) of nucleus ventralis intermedius thalami (Vim) for the treatment of post-traumatic tremor in children: a multicentre experience
- Understanding Syringomyelia in Myelomeningocele: A Clinical Observational Study.
- Plesiomonas shigelloides infection in newborn: case report and literature review
- Unilateral deep brain stimulation (DBS) of nucleus ventralis intermedius thalami (Vim) for the treatment of post-traumatic tremor in children: a multicentre experience
- Understanding Syringomyelia in Myelomeningocele: A Clinical Observational Study.
- Individuation of predictive parameters of posterior cranial fossa decompression in pediatric patients with Chiari I malformation and autism spectrum disorder
- Understanding Syringomyelia in Myelomeningocele: A Clinical Observational Study.
- Individuation of predictive parameters of posterior cranial fossa decompression in pediatric patients with Chiari I malformation and autism spectrum disorder
- Unilateral deep brain stimulation (DBS) of nucleus ventralis intermedius thalami (Vim) for the treatment of post-traumatic tremor in children: a multicentre experience
- Understanding Syringomyelia in Myelomeningocele: A Clinical Observational Study.
- Unilateral deep brain stimulation (DBS) of nucleus ventralis intermedius thalami (Vim) for the treatment of post-traumatic tremor in children: a multicentre experience
- Understanding Syringomyelia in Myelomeningocele: A Clinical Observational Study.
- Unilateral deep brain stimulation (DBS) of nucleus ventralis intermedius thalami (Vim) for the treatment of post-traumatic tremor in children: a multicentre experience
- Understanding Syringomyelia in Myelomeningocele: A Clinical Observational Study.
- Unilateral deep brain stimulation (DBS) of nucleus ventralis intermedius thalami (Vim) for the treatment of post-traumatic tremor in children: a multicentre experience
- Understanding Syringomyelia in Myelomeningocele: A Clinical Observational Study.
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
- Enhancing reproducibility and decentralization in single cell research with biocytometry
- Enhancing reproducibility in single cell research with biocytometry: An inter-laboratory study
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