Contact Information

Call us at: (614) 355-5894

Email Paola Malerba, PhD

Center for Biobehavioral HealthAbigail Wexner Research Institute700 Children’s DriveColumbus, OH 43205 (map)

Learn more about Paola Malerba

Biography

Paola Malerba, PhD, is an applied mathematician who has dedicated her studies to neuroscientific research. Her work focuses on understanding how neural networks produce brain rhythms and what role they play in brain function. Her interdisciplinary expertise starts from dynamical systems and includes collaborations with behavioral neuroscientists, psychologists, electrophysiologists and clinicians. She has publications in data analysis and modeling the electrophysiology of single cells, modelling of biophysical network oscillations with emphasis on the role of heterogeneity and noise, and study of spatio-temporal patterns in human EEG.

See Paola Malerba’s Curriculum Vitae (CV)

Academic and Clinical Areas

Center for Biobehavioral Health

Principal Investigator

Malerba Lab

Principal Investigator

Patient-Centered Pediatric Research Program

Faculty

Primary Department

Center for Biobehavioral Health

Research

Lab(s)

Center for Biobehavioral Health

Malerba Lab

At Nationwide Children’s Hospital, Paola Malerba is studying sleep rhythms in the human brain. Sleep helps us embed our memories in our understanding of the world. Specific brain oscillations found during sleep are crucial for this process, and their presence and coordination across brain regions promotes memory performance. Furthermore, non-invasive sleep interventions including targeted memory reactivation (with sound) and transcranial electrical stimulation (aiming at specific brain waves) are capable to enhance sleep oscillations and memory and motor performance. However, it is unknown how these rhythms emerge, organize or how they mediate memory consolidation. In recent work (Sleep 2018), Paola and collaborators have introduced a data-driven EEG analysis method to classify sleep slow oscillations (SOs, a hallmark of deep sleep) depending on their topography on the electrode manifold. This work is opening a new line of research: introducing a new theory of sleep-dependent consolidation in the presence of brain injury, disease or degeneration. Studying how sleep oscillations changes in these conditions can provide insights on how sleep rhythms influence memory consolidation, and at the same time open avenues for interventions aimed at ameliorating the consequences of brain injuries/disease on cognition and motor skills. Publications

                  Milani G, Antonioni A, Baroni A, Malerba P, Straudi S. Relation Between EEG Measures and Upper Limb Motor Recovery in Stroke Patients: A Scoping Review. Brain Topogr. 2022 Sep 22;  

                


                  Niknazar H, Malerba P, Mednick SC. Slow oscillations promote long-range effective communication: The key for memory consolidation in a broken-down network. Proc Natl Acad Sci U S A. 2022 Jun 28; 119: e2122515119.

                


                  Malerba P, Whitehurst L, Mednick SC. The space-time profiles of sleep spindles and their coordination with slow oscillations on the electrode manifold. Sleep. 2022 Jun 6;  

                


                  Simon KC, Malerba P, Nakra N, Harrison A, Mednick SC, Nagel M. Slow oscillation density and amplitude decrease across development in pediatric Duchenne and Becker muscular dystrophy. Sleep. 2021 Apr 9; 44: 

                


                  Sanda P, Malerba P, Jiang X, Krishnan GP, Gonzalez-Martinez J, Halgren E, Bazhenov M. Bidirectional Interaction of Hippocampal Ripples and Cortical Slow Waves Leads to Coordinated Spiking Activity During NREM Sleep. Cereb Cortex. 2021 Jan 1; 31: 324-340.

View More Publications

Education

Date of Appointment at Nationwide Children’s Hospital: 07/01/2019

Graduate School

Boston University

Date Completed: 05/16/2010

Contact Information

Center for Biobehavioral Health

Call us at: (614) 355-5894

Email Paola Malerba

                    Abigail Wexner Research Institute700 Children's DriveColumbus, OH 43205 (map)

Connect with Paola Malerba

Connect on LinkedIn

Connect on ResearchGate

Contact Information

Call us at: (614) 355-5894

Email Paola Malerba, PhD

Center for Biobehavioral HealthAbigail Wexner Research Institute700 Children’s DriveColumbus, OH 43205 (map)

Learn more about Paola Malerba

Biography

Paola Malerba, PhD, is an applied mathematician who has dedicated her studies to neuroscientific research. Her work focuses on understanding how neural networks produce brain rhythms and what role they play in brain function. Her interdisciplinary expertise starts from dynamical systems and includes collaborations with behavioral neuroscientists, psychologists, electrophysiologists and clinicians. She has publications in data analysis and modeling the electrophysiology of single cells, modelling of biophysical network oscillations with emphasis on the role of heterogeneity and noise, and study of spatio-temporal patterns in human EEG.

See Paola Malerba’s Curriculum Vitae (CV)

Academic and Clinical Areas

Center for Biobehavioral Health

Principal Investigator

Malerba Lab

Principal Investigator

Patient-Centered Pediatric Research Program

Faculty

Primary Department

Center for Biobehavioral Health

Research

Lab(s)

Center for Biobehavioral Health

Malerba Lab

At Nationwide Children’s Hospital, Paola Malerba is studying sleep rhythms in the human brain. Sleep helps us embed our memories in our understanding of the world. Specific brain oscillations found during sleep are crucial for this process, and their presence and coordination across brain regions promotes memory performance. Furthermore, non-invasive sleep interventions including targeted memory reactivation (with sound) and transcranial electrical stimulation (aiming at specific brain waves) are capable to enhance sleep oscillations and memory and motor performance. However, it is unknown how these rhythms emerge, organize or how they mediate memory consolidation. In recent work (Sleep 2018), Paola and collaborators have introduced a data-driven EEG analysis method to classify sleep slow oscillations (SOs, a hallmark of deep sleep) depending on their topography on the electrode manifold. This work is opening a new line of research: introducing a new theory of sleep-dependent consolidation in the presence of brain injury, disease or degeneration. Studying how sleep oscillations changes in these conditions can provide insights on how sleep rhythms influence memory consolidation, and at the same time open avenues for interventions aimed at ameliorating the consequences of brain injuries/disease on cognition and motor skills. Publications

                  Milani G, Antonioni A, Baroni A, Malerba P, Straudi S. Relation Between EEG Measures and Upper Limb Motor Recovery in Stroke Patients: A Scoping Review. Brain Topogr. 2022 Sep 22;  

                


                  Niknazar H, Malerba P, Mednick SC. Slow oscillations promote long-range effective communication: The key for memory consolidation in a broken-down network. Proc Natl Acad Sci U S A. 2022 Jun 28; 119: e2122515119.

                


                  Malerba P, Whitehurst L, Mednick SC. The space-time profiles of sleep spindles and their coordination with slow oscillations on the electrode manifold. Sleep. 2022 Jun 6;  

                


                  Simon KC, Malerba P, Nakra N, Harrison A, Mednick SC, Nagel M. Slow oscillation density and amplitude decrease across development in pediatric Duchenne and Becker muscular dystrophy. Sleep. 2021 Apr 9; 44: 

                


                  Sanda P, Malerba P, Jiang X, Krishnan GP, Gonzalez-Martinez J, Halgren E, Bazhenov M. Bidirectional Interaction of Hippocampal Ripples and Cortical Slow Waves Leads to Coordinated Spiking Activity During NREM Sleep. Cereb Cortex. 2021 Jan 1; 31: 324-340.

View More Publications

Education

Date of Appointment at Nationwide Children’s Hospital: 07/01/2019

Graduate School

Boston University

Date Completed: 05/16/2010

Contact Information

Center for Biobehavioral Health

Call us at: (614) 355-5894

Email Paola Malerba

                    Abigail Wexner Research Institute700 Children's DriveColumbus, OH 43205 (map)

Connect with Paola Malerba

Connect on LinkedIn

Connect on ResearchGate

Contact Information

Call us at: (614) 355-5894

Email Paola Malerba, PhD

Center for Biobehavioral HealthAbigail Wexner Research Institute700 Children’s DriveColumbus, OH 43205 (map)

Learn more about Paola Malerba

Contact Information

  • Call us at:
  • (614) 355-5894
  • Email Paola Malerba, PhD
  • Center for Biobehavioral HealthAbigail Wexner Research Institute700 Children’s DriveColumbus, OH 43205 (map)

Learn more about Paola Malerba

Biography

Paola Malerba, PhD, is an applied mathematician who has dedicated her studies to neuroscientific research. Her work focuses on understanding how neural networks produce brain rhythms and what role they play in brain function. Her interdisciplinary expertise starts from dynamical systems and includes collaborations with behavioral neuroscientists, psychologists, electrophysiologists and clinicians. She has publications in data analysis and modeling the electrophysiology of single cells, modelling of biophysical network oscillations with emphasis on the role of heterogeneity and noise, and study of spatio-temporal patterns in human EEG.

See Paola Malerba’s Curriculum Vitae (CV)

Biography

Paola Malerba, PhD, is an applied mathematician who has dedicated her studies to neuroscientific research. Her work focuses on understanding how neural networks produce brain rhythms and what role they play in brain function. Her interdisciplinary expertise starts from dynamical systems and includes collaborations with behavioral neuroscientists, psychologists, electrophysiologists and clinicians. She has publications in data analysis and modeling the electrophysiology of single cells, modelling of biophysical network oscillations with emphasis on the role of heterogeneity and noise, and study of spatio-temporal patterns in human EEG.

See Paola Malerba’s Curriculum Vitae (CV)

Biography

Paola Malerba, PhD, is an applied mathematician who has dedicated her studies to neuroscientific research. Her work focuses on understanding how neural networks produce brain rhythms and what role they play in brain function. Her interdisciplinary expertise starts from dynamical systems and includes collaborations with behavioral neuroscientists, psychologists, electrophysiologists and clinicians. She has publications in data analysis and modeling the electrophysiology of single cells, modelling of biophysical network oscillations with emphasis on the role of heterogeneity and noise, and study of spatio-temporal patterns in human EEG.

See Paola Malerba’s Curriculum Vitae (CV)

Paola Malerba, PhD, is an applied mathematician who has dedicated her studies to neuroscientific research. Her work focuses on understanding how neural networks produce brain rhythms and what role they play in brain function. Her interdisciplinary expertise starts from dynamical systems and includes collaborations with behavioral neuroscientists, psychologists, electrophysiologists and clinicians. She has publications in data analysis and modeling the electrophysiology of single cells, modelling of biophysical network oscillations with emphasis on the role of heterogeneity and noise, and study of spatio-temporal patterns in human EEG.

See Paola Malerba’s Curriculum Vitae (CV)

Paola Malerba, PhD, is an applied mathematician who has dedicated her studies to neuroscientific research. Her work focuses on understanding how neural networks produce brain rhythms and what role they play in brain function. Her interdisciplinary expertise starts from dynamical systems and includes collaborations with behavioral neuroscientists, psychologists, electrophysiologists and clinicians. She has publications in data analysis and modeling the electrophysiology of single cells, modelling of biophysical network oscillations with emphasis on the role of heterogeneity and noise, and study of spatio-temporal patterns in human EEG.

See Paola Malerba’s Curriculum Vitae (CV)

Academic and Clinical Areas

Center for Biobehavioral Health

Principal Investigator

Malerba Lab

Principal Investigator

Patient-Centered Pediatric Research Program

Faculty

Primary Department

Center for Biobehavioral Health

Academic and Clinical Areas

Center for Biobehavioral Health

Principal Investigator

Malerba Lab

Principal Investigator

Patient-Centered Pediatric Research Program

Faculty

Primary Department

Center for Biobehavioral Health

Academic and Clinical Areas

Center for Biobehavioral Health

Principal Investigator

Malerba Lab

Principal Investigator

Patient-Centered Pediatric Research Program

Faculty

Primary Department

Center for Biobehavioral Health

Center for Biobehavioral Health

Principal Investigator

Malerba Lab

Principal Investigator

Patient-Centered Pediatric Research Program

Faculty

Primary Department

Center for Biobehavioral Health

  • Center for Biobehavioral Health
  • Principal Investigator
  • Malerba Lab
  • Principal Investigator
  • Patient-Centered Pediatric Research Program
  • Faculty
  • Primary Department
  • Center for Biobehavioral Health

Research

Lab(s)

Center for Biobehavioral Health

Malerba Lab

At Nationwide Children’s Hospital, Paola Malerba is studying sleep rhythms in the human brain. Sleep helps us embed our memories in our understanding of the world. Specific brain oscillations found during sleep are crucial for this process, and their presence and coordination across brain regions promotes memory performance. Furthermore, non-invasive sleep interventions including targeted memory reactivation (with sound) and transcranial electrical stimulation (aiming at specific brain waves) are capable to enhance sleep oscillations and memory and motor performance. However, it is unknown how these rhythms emerge, organize or how they mediate memory consolidation. In recent work (Sleep 2018), Paola and collaborators have introduced a data-driven EEG analysis method to classify sleep slow oscillations (SOs, a hallmark of deep sleep) depending on their topography on the electrode manifold. This work is opening a new line of research: introducing a new theory of sleep-dependent consolidation in the presence of brain injury, disease or degeneration. Studying how sleep oscillations changes in these conditions can provide insights on how sleep rhythms influence memory consolidation, and at the same time open avenues for interventions aimed at ameliorating the consequences of brain injuries/disease on cognition and motor skills. Publications

                  Milani G, Antonioni A, Baroni A, Malerba P, Straudi S. Relation Between EEG Measures and Upper Limb Motor Recovery in Stroke Patients: A Scoping Review. Brain Topogr. 2022 Sep 22;  

                


                  Niknazar H, Malerba P, Mednick SC. Slow oscillations promote long-range effective communication: The key for memory consolidation in a broken-down network. Proc Natl Acad Sci U S A. 2022 Jun 28; 119: e2122515119.

                


                  Malerba P, Whitehurst L, Mednick SC. The space-time profiles of sleep spindles and their coordination with slow oscillations on the electrode manifold. Sleep. 2022 Jun 6;  

                


                  Simon KC, Malerba P, Nakra N, Harrison A, Mednick SC, Nagel M. Slow oscillation density and amplitude decrease across development in pediatric Duchenne and Becker muscular dystrophy. Sleep. 2021 Apr 9; 44: 

                


                  Sanda P, Malerba P, Jiang X, Krishnan GP, Gonzalez-Martinez J, Halgren E, Bazhenov M. Bidirectional Interaction of Hippocampal Ripples and Cortical Slow Waves Leads to Coordinated Spiking Activity During NREM Sleep. Cereb Cortex. 2021 Jan 1; 31: 324-340.

View More Publications

Research

Lab(s)

Center for Biobehavioral Health

Malerba Lab

At Nationwide Children’s Hospital, Paola Malerba is studying sleep rhythms in the human brain. Sleep helps us embed our memories in our understanding of the world. Specific brain oscillations found during sleep are crucial for this process, and their presence and coordination across brain regions promotes memory performance. Furthermore, non-invasive sleep interventions including targeted memory reactivation (with sound) and transcranial electrical stimulation (aiming at specific brain waves) are capable to enhance sleep oscillations and memory and motor performance. However, it is unknown how these rhythms emerge, organize or how they mediate memory consolidation. In recent work (Sleep 2018), Paola and collaborators have introduced a data-driven EEG analysis method to classify sleep slow oscillations (SOs, a hallmark of deep sleep) depending on their topography on the electrode manifold. This work is opening a new line of research: introducing a new theory of sleep-dependent consolidation in the presence of brain injury, disease or degeneration. Studying how sleep oscillations changes in these conditions can provide insights on how sleep rhythms influence memory consolidation, and at the same time open avenues for interventions aimed at ameliorating the consequences of brain injuries/disease on cognition and motor skills. Publications

                  Milani G, Antonioni A, Baroni A, Malerba P, Straudi S. Relation Between EEG Measures and Upper Limb Motor Recovery in Stroke Patients: A Scoping Review. Brain Topogr. 2022 Sep 22;  

                


                  Niknazar H, Malerba P, Mednick SC. Slow oscillations promote long-range effective communication: The key for memory consolidation in a broken-down network. Proc Natl Acad Sci U S A. 2022 Jun 28; 119: e2122515119.

                


                  Malerba P, Whitehurst L, Mednick SC. The space-time profiles of sleep spindles and their coordination with slow oscillations on the electrode manifold. Sleep. 2022 Jun 6;  

                


                  Simon KC, Malerba P, Nakra N, Harrison A, Mednick SC, Nagel M. Slow oscillation density and amplitude decrease across development in pediatric Duchenne and Becker muscular dystrophy. Sleep. 2021 Apr 9; 44: 

                


                  Sanda P, Malerba P, Jiang X, Krishnan GP, Gonzalez-Martinez J, Halgren E, Bazhenov M. Bidirectional Interaction of Hippocampal Ripples and Cortical Slow Waves Leads to Coordinated Spiking Activity During NREM Sleep. Cereb Cortex. 2021 Jan 1; 31: 324-340.

View More Publications

Research

Lab(s)

Center for Biobehavioral Health

Malerba Lab

At Nationwide Children’s Hospital, Paola Malerba is studying sleep rhythms in the human brain. Sleep helps us embed our memories in our understanding of the world. Specific brain oscillations found during sleep are crucial for this process, and their presence and coordination across brain regions promotes memory performance. Furthermore, non-invasive sleep interventions including targeted memory reactivation (with sound) and transcranial electrical stimulation (aiming at specific brain waves) are capable to enhance sleep oscillations and memory and motor performance. However, it is unknown how these rhythms emerge, organize or how they mediate memory consolidation. In recent work (Sleep 2018), Paola and collaborators have introduced a data-driven EEG analysis method to classify sleep slow oscillations (SOs, a hallmark of deep sleep) depending on their topography on the electrode manifold. This work is opening a new line of research: introducing a new theory of sleep-dependent consolidation in the presence of brain injury, disease or degeneration. Studying how sleep oscillations changes in these conditions can provide insights on how sleep rhythms influence memory consolidation, and at the same time open avenues for interventions aimed at ameliorating the consequences of brain injuries/disease on cognition and motor skills. Publications

                  Milani G, Antonioni A, Baroni A, Malerba P, Straudi S. Relation Between EEG Measures and Upper Limb Motor Recovery in Stroke Patients: A Scoping Review. Brain Topogr. 2022 Sep 22;  

                


                  Niknazar H, Malerba P, Mednick SC. Slow oscillations promote long-range effective communication: The key for memory consolidation in a broken-down network. Proc Natl Acad Sci U S A. 2022 Jun 28; 119: e2122515119.

                


                  Malerba P, Whitehurst L, Mednick SC. The space-time profiles of sleep spindles and their coordination with slow oscillations on the electrode manifold. Sleep. 2022 Jun 6;  

                


                  Simon KC, Malerba P, Nakra N, Harrison A, Mednick SC, Nagel M. Slow oscillation density and amplitude decrease across development in pediatric Duchenne and Becker muscular dystrophy. Sleep. 2021 Apr 9; 44: 

                


                  Sanda P, Malerba P, Jiang X, Krishnan GP, Gonzalez-Martinez J, Halgren E, Bazhenov M. Bidirectional Interaction of Hippocampal Ripples and Cortical Slow Waves Leads to Coordinated Spiking Activity During NREM Sleep. Cereb Cortex. 2021 Jan 1; 31: 324-340.

View More Publications

Lab(s)

Center for Biobehavioral Health

Malerba Lab

At Nationwide Children’s Hospital, Paola Malerba is studying sleep rhythms in the human brain. Sleep helps us embed our memories in our understanding of the world. Specific brain oscillations found during sleep are crucial for this process, and their presence and coordination across brain regions promotes memory performance. Furthermore, non-invasive sleep interventions including targeted memory reactivation (with sound) and transcranial electrical stimulation (aiming at specific brain waves) are capable to enhance sleep oscillations and memory and motor performance. However, it is unknown how these rhythms emerge, organize or how they mediate memory consolidation. In recent work (Sleep 2018), Paola and collaborators have introduced a data-driven EEG analysis method to classify sleep slow oscillations (SOs, a hallmark of deep sleep) depending on their topography on the electrode manifold. This work is opening a new line of research: introducing a new theory of sleep-dependent consolidation in the presence of brain injury, disease or degeneration. Studying how sleep oscillations changes in these conditions can provide insights on how sleep rhythms influence memory consolidation, and at the same time open avenues for interventions aimed at ameliorating the consequences of brain injuries/disease on cognition and motor skills. Publications

                  Milani G, Antonioni A, Baroni A, Malerba P, Straudi S. Relation Between EEG Measures and Upper Limb Motor Recovery in Stroke Patients: A Scoping Review. Brain Topogr. 2022 Sep 22;  

                


                  Niknazar H, Malerba P, Mednick SC. Slow oscillations promote long-range effective communication: The key for memory consolidation in a broken-down network. Proc Natl Acad Sci U S A. 2022 Jun 28; 119: e2122515119.

                


                  Malerba P, Whitehurst L, Mednick SC. The space-time profiles of sleep spindles and their coordination with slow oscillations on the electrode manifold. Sleep. 2022 Jun 6;  

                


                  Simon KC, Malerba P, Nakra N, Harrison A, Mednick SC, Nagel M. Slow oscillation density and amplitude decrease across development in pediatric Duchenne and Becker muscular dystrophy. Sleep. 2021 Apr 9; 44: 

                


                  Sanda P, Malerba P, Jiang X, Krishnan GP, Gonzalez-Martinez J, Halgren E, Bazhenov M. Bidirectional Interaction of Hippocampal Ripples and Cortical Slow Waves Leads to Coordinated Spiking Activity During NREM Sleep. Cereb Cortex. 2021 Jan 1; 31: 324-340.

View More Publications

Lab(s)

Center for Biobehavioral Health

Malerba Lab

At Nationwide Children’s Hospital, Paola Malerba is studying sleep rhythms in the human brain. Sleep helps us embed our memories in our understanding of the world. Specific brain oscillations found during sleep are crucial for this process, and their presence and coordination across brain regions promotes memory performance. Furthermore, non-invasive sleep interventions including targeted memory reactivation (with sound) and transcranial electrical stimulation (aiming at specific brain waves) are capable to enhance sleep oscillations and memory and motor performance. However, it is unknown how these rhythms emerge, organize or how they mediate memory consolidation. In recent work (Sleep 2018), Paola and collaborators have introduced a data-driven EEG analysis method to classify sleep slow oscillations (SOs, a hallmark of deep sleep) depending on their topography on the electrode manifold. This work is opening a new line of research: introducing a new theory of sleep-dependent consolidation in the presence of brain injury, disease or degeneration. Studying how sleep oscillations changes in these conditions can provide insights on how sleep rhythms influence memory consolidation, and at the same time open avenues for interventions aimed at ameliorating the consequences of brain injuries/disease on cognition and motor skills.

Lab(s)

Center for Biobehavioral Health

Malerba Lab

  • Center for Biobehavioral Health

  • Malerba Lab

                   Milani G, Antonioni A, Baroni A, Malerba P, Straudi S. Relation Between EEG Measures and Upper Limb Motor Recovery in Stroke Patients: A Scoping Review. Brain Topogr. 2022 Sep 22;  
    
    
    
                   Niknazar H, Malerba P, Mednick SC. Slow oscillations promote long-range effective communication: The key for memory consolidation in a broken-down network. Proc Natl Acad Sci U S A. 2022 Jun 28; 119: e2122515119.
    
    
    
                   Malerba P, Whitehurst L, Mednick SC. The space-time profiles of sleep spindles and their coordination with slow oscillations on the electrode manifold. Sleep. 2022 Jun 6;  
    
    
    
                   Simon KC, Malerba P, Nakra N, Harrison A, Mednick SC, Nagel M. Slow oscillation density and amplitude decrease across development in pediatric Duchenne and Becker muscular dystrophy. Sleep. 2021 Apr 9; 44: 
    
    
    
                   Sanda P, Malerba P, Jiang X, Krishnan GP, Gonzalez-Martinez J, Halgren E, Bazhenov M. Bidirectional Interaction of Hippocampal Ripples and Cortical Slow Waves Leads to Coordinated Spiking Activity During NREM Sleep. Cereb Cortex. 2021 Jan 1; 31: 324-340.
    
    

View More Publications

  • Milani G, Antonioni A, Baroni A, Malerba P, Straudi S. Relation Between EEG Measures and Upper Limb Motor Recovery in Stroke Patients: A Scoping Review. Brain Topogr. 2022 Sep 22;
  • Niknazar H, Malerba P, Mednick SC. Slow oscillations promote long-range effective communication: The key for memory consolidation in a broken-down network. Proc Natl Acad Sci U S A. 2022 Jun 28; 119: e2122515119.
  • Malerba P, Whitehurst L, Mednick SC. The space-time profiles of sleep spindles and their coordination with slow oscillations on the electrode manifold. Sleep. 2022 Jun 6;
  • Simon KC, Malerba P, Nakra N, Harrison A, Mednick SC, Nagel M. Slow oscillation density and amplitude decrease across development in pediatric Duchenne and Becker muscular dystrophy. Sleep. 2021 Apr 9; 44:
  • Sanda P, Malerba P, Jiang X, Krishnan GP, Gonzalez-Martinez J, Halgren E, Bazhenov M. Bidirectional Interaction of Hippocampal Ripples and Cortical Slow Waves Leads to Coordinated Spiking Activity During NREM Sleep. Cereb Cortex. 2021 Jan 1; 31: 324-340.

Education

Date of Appointment at Nationwide Children’s Hospital: 07/01/2019

Graduate School

Boston University

Date Completed: 05/16/2010

Education

Date of Appointment at Nationwide Children’s Hospital: 07/01/2019

Graduate School

Boston University

Date Completed: 05/16/2010

Education

Date of Appointment at Nationwide Children’s Hospital: 07/01/2019

Graduate School

Boston University

Date Completed: 05/16/2010

Date of Appointment at Nationwide Children’s Hospital: 07/01/2019

Graduate School

Boston University

Date Completed: 05/16/2010

Date of Appointment at Nationwide Children’s Hospital: 07/01/2019

Graduate School

Boston University

Date Completed: 05/16/2010

Contact Information

Center for Biobehavioral Health

Call us at: (614) 355-5894

Email Paola Malerba

                    Abigail Wexner Research Institute700 Children's DriveColumbus, OH 43205 (map)

Contact Information

Center for Biobehavioral Health

Call us at: (614) 355-5894

Email Paola Malerba

                    Abigail Wexner Research Institute700 Children's DriveColumbus, OH 43205 (map)

Contact Information

Center for Biobehavioral Health

Call us at: (614) 355-5894

Email Paola Malerba

                    Abigail Wexner Research Institute700 Children's DriveColumbus, OH 43205 (map)

Center for Biobehavioral Health

Call us at: (614) 355-5894

Email Paola Malerba

                    Abigail Wexner Research Institute700 Children's DriveColumbus, OH 43205 (map)

Call us at: (614) 355-5894

Email Paola Malerba

                    Abigail Wexner Research Institute700 Children's DriveColumbus, OH 43205 (map)

Call us at: (614) 355-5894

Email Paola Malerba

                    Abigail Wexner Research Institute700 Children's DriveColumbus, OH 43205 (map)
  • Call us at:
  • (614) 355-5894
  • Email Paola Malerba
  • Abigail Wexner Research Institute700 Children’s DriveColumbus, OH 43205 (map)

Connect with Paola Malerba

Connect on LinkedIn

Connect on ResearchGate