Tonya Balmakund
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Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Tonya Balmakund's research focuses on the intersection of genetics and neurodevelopmental disorders, with a particular emphasis on the application of pharmacogenomics in multidisciplinary clinical settings. Her work investigates opportunities and challenges in integrating genetic information into team-based patient care. Balmakund has published work examining the role of genetics in complex cases of neurodevelopmental and neurobehavioral disorders. Her scholarship metrics include an h-index of 7, with a total of 7 publications and 163 citations. She has collaborated with researchers such as Damon Lipinski from the University of Arkansas at Fayetteville and Pritmohinder S. Gill from the University of Arkansas for Medical Sciences on shared publications.
Metrics
- h-index: 7
- Publications: 7
- Citations: 165
Selected Publications
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Multidisciplinary Consulting Team for Complicated Cases of Neurodevelopmental and Neurobehavioral Disorders: Assessing the Opportunities and Challenges of Integrating Pharmacogenomics into a Team Setting (2022)
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Constitutive activation of the PI3K‐AKT pathway and cardiovascular abnormalities in an individual with Kosaki overgrowth syndrome (2019)
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The role of IQSEC2 in syndromic intellectual disability: Narrowing the diagnostic odyssey (2017)
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Severe Metabolic Acidosis and Hepatopathy due to Leukoencephalopathy with Thalamus and Brainstem Involvement and High Lactate (2016)
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Cerebral Arteriopathy in a Newborn With Incontinentia Pigmenti (2015)
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Pharmacokinetics of Levetiracetam in Neonates with Seizures (2011)
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Neurologic Outcome in Neonatal Temporal Lobe Hemorrhagic Venous Infarcts (2009)
Collaboration Network
Top Collaborators
- Constitutive activation of the PI3K‐AKT pathway and cardiovascular abnormalities in an individual with Kosaki overgrowth syndrome
- The role of IQSEC2 in syndromic intellectual disability: Narrowing the diagnostic odyssey
- Severe Metabolic Acidosis and Hepatopathy due to Leukoencephalopathy with Thalamus and Brainstem Involvement and High Lactate
- Constitutive activation of the PI3K‐AKT pathway and cardiovascular abnormalities in an individual with Kosaki overgrowth syndrome
- The role of IQSEC2 in syndromic intellectual disability: Narrowing the diagnostic odyssey
- Multidisciplinary Consulting Team for Complicated Cases of Neurodevelopmental and Neurobehavioral Disorders: Assessing the Opportunities and Challenges of Integrating Pharmacogenomics into a Team Setting
- The role of IQSEC2 in syndromic intellectual disability: Narrowing the diagnostic odyssey
- Severe Metabolic Acidosis and Hepatopathy due to Leukoencephalopathy with Thalamus and Brainstem Involvement and High Lactate
- Pharmacokinetics of Levetiracetam in Neonates with Seizures
- Pharmacokinetics of Levetiracetam in Neonates with Seizures
- Pharmacokinetics of Levetiracetam in Neonates with Seizures
- Pharmacokinetics of Levetiracetam in Neonates with Seizures
- Pharmacokinetics of Levetiracetam in Neonates with Seizures
- Pharmacokinetics of Levetiracetam in Neonates with Seizures
- Neurologic Outcome in Neonatal Temporal Lobe Hemorrhagic Venous Infarcts
- Neurologic Outcome in Neonatal Temporal Lobe Hemorrhagic Venous Infarcts
- Cerebral Arteriopathy in a Newborn With Incontinentia Pigmenti
- Cerebral Arteriopathy in a Newborn With Incontinentia Pigmenti
- Severe Metabolic Acidosis and Hepatopathy due to Leukoencephalopathy with Thalamus and Brainstem Involvement and High Lactate
- Severe Metabolic Acidosis and Hepatopathy due to Leukoencephalopathy with Thalamus and Brainstem Involvement and High Lactate
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