Background. During the past decade, experimental studies have provided convincing evidence that microcirculatory dysfunction plays a pivotal role in the manifestation of tissue injury in ischemia-reperfusion and osteomyocutaneous flap transfer. The study of the mechanisms of injury, however, requires sophisticated experimental in vivo models. With the use of microsurgical techniques, osteomyocutaneous flap transfer can successfully be performed in rat hind limbs, allowing in vivo fluorescent microscopic analysis of post-ischemic microcirculatory dysfunction in all tissues involved, including periosteum, striated muscle, subcutis and skin. The drawback of this "acute" model is that the period of analysis is restricted to a few hours only. Me...
Acute ischemia reperfusion injury in skeletal muscle remains an important issue in several fields of...
Suitable and reproducible experimental models of translational research in reconstructive surgery th...
Background: Adipose tissue-derived stromal cells (ADSCs) might help repair ischemic cardiovascular t...
WOS: 000174592400006PubMed ID: 11921074Ischemia-reperfusion (I/R) injury is a topic that has been mu...
Suitable and reproducible experimental models of translational research in reconstructive surgery th...
AbstractBackground: postischaemic damage in skeletal muscle may be reflected in changes to microvasc...
Acute ischemia reperfusion injury in skeletal muscle remains an important issue in several fields of...
Acute ischemia reperfusion injury in skeletal muscle remains an important issue in several fields of...
The purposes of this study were to develope an in vivo model of skeletal muscle ischemia-reperfusion...
Background: Free muscle flap transfers, frequently used in plastic and reconstructive surgery, are a...
In reconstructive surgery, ischemia-reperfusion (I-R) injury of skeletal muscle tissue occurs during...
Background: Free muscle flap transfers, frequently used in plastic and reconstructive surgery, are a...
The field of reconstructive microsurgery is experiencing tremendous growth, as evidenced by recent a...
Ischemia — reperfusion injury (IRI) is a serious complication of revascularisation that biases a res...
OBJECTIVES: To develop a model of peripheral arterial disease (PAD) in rat skeletal muscle with sust...
Acute ischemia reperfusion injury in skeletal muscle remains an important issue in several fields of...
Suitable and reproducible experimental models of translational research in reconstructive surgery th...
Background: Adipose tissue-derived stromal cells (ADSCs) might help repair ischemic cardiovascular t...
WOS: 000174592400006PubMed ID: 11921074Ischemia-reperfusion (I/R) injury is a topic that has been mu...
Suitable and reproducible experimental models of translational research in reconstructive surgery th...
AbstractBackground: postischaemic damage in skeletal muscle may be reflected in changes to microvasc...
Acute ischemia reperfusion injury in skeletal muscle remains an important issue in several fields of...
Acute ischemia reperfusion injury in skeletal muscle remains an important issue in several fields of...
The purposes of this study were to develope an in vivo model of skeletal muscle ischemia-reperfusion...
Background: Free muscle flap transfers, frequently used in plastic and reconstructive surgery, are a...
In reconstructive surgery, ischemia-reperfusion (I-R) injury of skeletal muscle tissue occurs during...
Background: Free muscle flap transfers, frequently used in plastic and reconstructive surgery, are a...
The field of reconstructive microsurgery is experiencing tremendous growth, as evidenced by recent a...
Ischemia — reperfusion injury (IRI) is a serious complication of revascularisation that biases a res...
OBJECTIVES: To develop a model of peripheral arterial disease (PAD) in rat skeletal muscle with sust...
Acute ischemia reperfusion injury in skeletal muscle remains an important issue in several fields of...
Suitable and reproducible experimental models of translational research in reconstructive surgery th...
Background: Adipose tissue-derived stromal cells (ADSCs) might help repair ischemic cardiovascular t...