Spinal and sensory neuromodulation of spinal neuronal networks in humans


Дәйексөз келтіру

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Аннотация

The present experiments were designed to gain additionally insight into how the spinal networks process direct spinal stimulation and peripheral sensory inputs to control posture and locomotor movements. We have developed a plantar pressure stimulation system that can deliver naturalistic postural and gait-related patterns of pressure to the soles of the feet to simulate standing and walking, thereby activating and/or modulating the automated spinal circuitry responsible for standing and locomotion. In the present study we compare the patterns of activation among selected motor pools and the kinematic consequences of these activation patterns in response to patterned heel-to-toe mechanical stimulation of the soles of the feet, and/or transcutaneous electrical spinal stimulation, for postural and locomotion regulation. The studies were performed in healthy individuals (n = 12) as well as in subjects (n = 2) with motor complete spinal cord injury. We found that plantar pressure stimulation and/or spinal stimulation can effectively facilitate locomotor output in the subjects placed with their legs in gravity neutral position. We have shown synergistic effects of combining sensory and spinal cord stimulation, suggesting that the two networks are different, but complementary. Also we provide evidence that plantar stimulation could serve as a novel neuro-rehabilitation tool alone or as part of a multi-modal approach to restoring motor function after complete paralysis due to SCI.

Авторлар туралы

Y. Gerasimenko

Pavlov Institute of Physiology; Department of Integrative Biology and Physiology

Хат алмасуға жауапты Автор.
Email: yuryg@ucla.edu
Ресей, St. Petersburg; Los Angeles, CA

Z. McKinney

Department of Bioengineering

Email: yuryg@ucla.edu
АҚШ, Los Angeles, CA

D. Sayenko

Department of Integrative Biology and Physiology

Email: yuryg@ucla.edu
АҚШ, Los Angeles, CA

Parag Gad

Department of Integrative Biology and Physiology

Email: yuryg@ucla.edu
АҚШ, Los Angeles, CA

R. Gorodnichev

Velikie Luky State Academy of Physical Education and Sport

Email: yuryg@ucla.edu
Ресей, Velikiye Luki

W. Grundfest

Department of Bioengineering

Email: yuryg@ucla.edu
АҚШ, Los Angeles, CA

V. Edgerton

Department of Integrative Biology and Physiology; Institute Guttmann. Hospital de Neurorehabilitació

Email: yuryg@ucla.edu
АҚШ, Los Angeles, CA; Badalona

I. Kozlovskaya

Russian Federation State Scientific Center−Institute for Bio-Medical Problems

Email: yuryg@ucla.edu
Ресей, Moscow

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