Key result
Tourniquet ischaemia in rabbits causes progressive ultrastructural damage, affecting energy organelles before myofilaments.
Why the study?
Does experimental tourniquet ischaemia cause ultrastructural changes in striated muscle?
Does experimental tourniquet ischaemia cause ultrastructural changes in striated muscle?
Tourniquet ischaemia up to 3 hours induces sublethal ultrastructural damage to skeletal muscle cells, primarily affecting energy-producing organelles.
May warrant caution on tourniquet duration in surgery; leaves open translation from rabbit models to human muscle.
The effect of experimental tourniquet ischaemia on the fine structure of a rabbit's hind limb striated muscle was studied. The tourniquet time varied from 1 to 4 h. Samples were obtained from the tibialis anterior muscle 30 min after releasing the tourniquet, the contralateral limb serving as the control. As the first sign of ischaemia, dilatation of the sarcoplasmic reticulum was observed after a tourniquet blockade of 1 h. After 4 h ischaemia myofibrillar components showed advanced degeneration. Ultrastructural alterations were distinct in the mitochondrial morphology. After 2 h, the mitochondria showed moderate but clear condensation. After 3 h many mitochondria showed high amplitude swelling and structural disorganization. Total blockade of the limb circulation up to 4 h effects the energy-producing organelles in the first place, especially sarcoplasmic reticulum, T tubules and mitochondria prior to the alterations in myofilaments. Ischaemia extended up to 3 h induces sublethal damage to the muscle cells.
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Santavirta et al. (2008) studied Tourniquet ischaemia. Tourniquet ischaemia vs. Contralateral limb was evaluated on Ultrastructural changes in striated muscle. Experimental tourniquet ischaemia for 1 to 4 hours in rabbit hind limbs caused progressive ultrastructural damage, primarily affecting energy-producing organelles before myofilaments.
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