Who is Professor Clinton Rubin?

Learn more about the brains behind the Marodyne LiV device.
professor clinton rubin

Professor Clinton Rubin is a prominent researcher and academic in the field of biomedical engineering. He is best known for his work on the effects of mechanical signals on bone and stem cell biology, and of course, the Marodyne LiV device. Here are some key points about him:

Professor Clinton Rubin is a prominent researcher and academic in the field of biomedical engineering. He is best known for his work on the effects of mechanical signals on bone and stem cell biology, and of course, the Marodyne LiV device. Here are some key points about him:

1. Academic background

Professor Rubin holds a Ph.D. in anatomy and has made significant contributions to understanding how mechanical forces influence biological processes, particularly the bone remodelling cycle.

2. Professional role

Professor Rubin is a distinguished professor and chair of the Department of Biomedical Engineering at Stony Brook University in New York. His leadership in this role has advanced the field of biomedical engineering significantly. 

3. Research contributions

Professor Rubin’s research has focused on how low-intensity mechanical signals can prevent bone loss and promote bone formation. His studies have shown that specific types of vibrations can stimulate bone growth and improve bone density, which has important implications for treating osteoporosis and other bone-related conditions. Read some of the research here.

professor clinton rubin

1. Academic background

Professor Rubin holds a Ph.D. in anatomy and has made significant contributions to understanding how mechanical forces influence biological processes, particularly the bone remodelling cycle.

2. Professional role

Professor Rubin is a distinguished professor and chair of the Department of Biomedical Engineering at Stony Brook University in New York. His leadership in this role has advanced the field of biomedical engineering significantly. 

3. Research contributions

Professor Rubin’s research has focused on how low-intensity mechanical signals can prevent bone loss and promote bone formation. His studies have shown that specific types of vibrations can stimulate bone growth and improve bone density, which has important implications for treating osteoporosis and other bone-related conditions. Read some of the research here.

professor clinton rubin
marodyne liv device on wooden floor

4. Marodyne LiV device

One of his most notable contributions is the development of the Marodyne LiV (Low-intensity Vibration) device. Developed alongside NASA, the device is based on his research findings and is designed to improve bone health through non-invasive, low-frequency vibrations. 

5. Publications and awards

He has authored numerous scientific papers and has been recognized with various awards for his contributions to biomedical engineering and bone health research. His work is widely cited and respected in the scientific community. 

6. Innovator and thought leader

Professor Rubin is considered a thought leader in his field, continually exploring new ways to apply mechanical stimuli to enhance health and treat diseases. His innovative approach has paved the way for new therapies aimed at improving patient outcomes.

marodyne liv device on wooden floor

4. Marodyne LiV device

One of his most notable contributions is the development of the Marodyne LiV (Low-intensity Vibration) device. Developed alongside NASA, the device is based on his research findings and is designed to improve bone health through non-invasive, low-frequency vibrations. 

5. Publications and awards

He has authored numerous scientific papers and has been recognized with various awards for his contributions to biomedical engineering and bone health research. His work is widely cited and respected in the scientific community. 

6. Innovator and thought leader

Professor Rubin is considered a thought leader in his field, continually exploring new ways to apply mechanical stimuli to enhance health and treat diseases. His innovative approach has paved the way for new therapies aimed at improving patient outcomes.