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The Influence of Hindlimb Unloading on Bone and Muscle Tissues in Rat Model and bones during gravitational hindlimb unloading in rats. After hindlimb unloading during 7, 14, 21, and 30

Effect of vibrostimulation of foot and supporting afferentation on functional state of shin muscles in rats during hindlimb unloading of the soleus, gastrocnemius, and tibial anterior muscles in rats after 7 and 14 days of hindlimb unloading

Effect of vibrostimulation of foot and supporting afferentation on functional state of shin muscles in rats during hindlimb unloading of the soleus, gastrocnemius, and tibial anterior muscles in rats after 7 and 14 days of hindlimb unloading

The Influence of Hindlimb Unloading on Bone and Muscle Tissues in Rat Model and bones during gravitational hindlimb unloading in rats. After hindlimb unloading during 7, 14, 21, and 30

Characterization of spinal cord glial cells in a model of hindlimb unloading in mice hindlimb unloading model (HUM) in mice. The characteristics of the lumbar spinal cords of HUM mice 30. days

The Influence of Hindlimb Unloading on the Bone Tissue’s Structure. Nevertheless, the physiological and pathological mechanisms of interconnection between unloading hindlimb

Characterization of spinal cord glial cells in a model of hindlimb unloading in mice hindlimb unloading model (HUM) in mice. The characteristics of the lumbar spinal cords of HUM mice 30. days

Functional State of the Neuromotor Apparatus of the Gastrocnemius Muscle in Rat Under Microgravity: Effect of Spinal Cord Stimulation conditions of gravitational unloading, as well as in conditions of gravitational unloading combined

Morphological changes in myelinated fibers of the spinal cord and the sciatic nerve in mice after modeling of the hypogravity and the approach of their correction by preventive gene therapy). In the present study, under conditions of hypogravity modeling by the hindlimb unloading, we obtained data

Influence of Gravitational Unloading on Titin’s Structure in the Rat Hind Limb Muscles digitorum longus in rat after 7 days of gravitational unloading. Electrophysiological and immunological

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