PRISM Mentors
| PRISM mentor | Research Interests |
|---|---|
|
Alma-Martina Cepika Surgery, General Surgery
Surgery, General Surgery Last Updated: November 17, 2025 |
Cepika Lab in the Department of Surgery, which opened in September 2025, is investigating the role of regulatory T cells (Tregs) in establishing tumor immune tolerance and preventing the response to cancer immunotherapy in human solid tumors. In addition, the laboratory will explore the role of intestinal epithelium in initiating the pathological immune response in inflammatory bowel disease (IBD), and collaborate on the development of IBD gene therapies. |
| PRISM mentor | Research Interests |
|---|---|
|
Allan L Reiss Neuroscience Institute
Neuroscience Institute Last Updated: February 07, 2024 |
My research group is currently focused on understanding brain function and inter-brain synchrony during naturalistic social interaction. We use ultra-portable near-infrared spectroscopy (NIRS) to address specific scientific questions with an emphasis on multi-modal assessment (e.g., behavioral, physiological, environmental setting, and eye-tracking in addition to functional NIRS). This overall scientific apprach is called "interaction neuroscience:.
|
| PRISM mentor | Research Interests |
|---|---|
|
Allan L Reiss Pediatrics
Pediatrics Last Updated: February 07, 2024 |
My research group is currently focused on understanding brain function and inter-brain synchrony during naturalistic social interaction. We use ultra-portable near-infrared spectroscopy (NIRS) to address specific scientific questions with an emphasis on multi-modal assessment (e.g., behavioral, physiological, environmental setting, and eye-tracking in addition to functional NIRS). This overall scientific apprach is called "interaction neuroscience:.
|
|
Agnieszka Czechowicz Pediatrics
Pediatrics Last Updated: November 13, 2024 |
The lab's current research is aimed primarily at understanding how hematopoietic stem cells interact with their microenvironment in order to subsequently modulate these interactions to ultimately improve bone marrow transplantation and unlock biological secrets that further enable regenerative medicine broadly. We are primarily focused on studying the cell surface receptors on hematopoietic stem/progenitor cells and bone marrow stromal cells, and are actively learning how manipulating these can alter cell state and cell fate. There are many exciting opportunities that stem from this work across a variety of disease states ranging from rare genetic diseases, autoimmune diseases, solid organ transplantation, microbiome and cancer. While we are primarily focused on blood and immune diseases, the expanded potential of this work is much broader and can be applied to other organ systems as well and we are very eager to develop collaborations across disease areas. The Czechowicz lab hopes to further add in the field of translation research. Goals
|
| PRISM mentor | Research Interests |
|---|---|
|
Allan L Reiss Radiology
Radiology Last Updated: February 07, 2024 |
My research group is currently focused on understanding brain function and inter-brain synchrony during naturalistic social interaction. We use ultra-portable near-infrared spectroscopy (NIRS) to address specific scientific questions with an emphasis on multi-modal assessment (e.g., behavioral, physiological, environmental setting, and eye-tracking in addition to functional NIRS). This overall scientific apprach is called "interaction neuroscience:.
|
| PRISM mentor | Research Interests |
|---|---|
|
Allan L Reiss Psychiatry, Child Psychiatry
Psychiatry, Child Psychiatry Last Updated: February 07, 2024 |
My research group is currently focused on understanding brain function and inter-brain synchrony during naturalistic social interaction. We use ultra-portable near-infrared spectroscopy (NIRS) to address specific scientific questions with an emphasis on multi-modal assessment (e.g., behavioral, physiological, environmental setting, and eye-tracking in addition to functional NIRS). This overall scientific apprach is called "interaction neuroscience:.
|
| PRISM mentor | Research Interests |
|---|---|
|
Alan Cheng Otolaryngology, Head & Neck Surgery
Otolaryngology, Head & Neck Surgery Last Updated: April 19, 2026 |
Our lab focuses on elucidating the mechanisms underlying inner ear hair cell development and regeneration. We employ a combination of imaging, molecular, and bioinformatic approaches to investigate regenerative processes in the inner ear, with the goal of reversing hearing loss and balance disorders. Our work has led to the identification of inner ear hair cell progenitors and the regeneration of new cochlear and vestibular hair cells. Ongoing studies aim to advance the maturation and functional integration of regenerated sensory cells.
|
| PRISM mentor | Research Interests |
|---|---|
|
Agnieszka Czechowicz Pediatrics, Hematology Oncology Stem Cell Tranplantation and Regenerative Medicine
Pediatrics, Hematology Oncology Stem Cell Tranplantation and Regenerative Medicine Last Updated: November 13, 2024 |
The lab's current research is aimed primarily at understanding how hematopoietic stem cells interact with their microenvironment in order to subsequently modulate these interactions to ultimately improve bone marrow transplantation and unlock biological secrets that further enable regenerative medicine broadly. We are primarily focused on studying the cell surface receptors on hematopoietic stem/progenitor cells and bone marrow stromal cells, and are actively learning how manipulating these can alter cell state and cell fate. There are many exciting opportunities that stem from this work across a variety of disease states ranging from rare genetic diseases, autoimmune diseases, solid organ transplantation, microbiome and cancer. While we are primarily focused on blood and immune diseases, the expanded potential of this work is much broader and can be applied to other organ systems as well and we are very eager to develop collaborations across disease areas. The Czechowicz lab hopes to further add in the field of translation research. Goals
|