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B D Krapohl

Publications and source records attributed to B D Krapohl.

7 recordsLinked to original sources

Arterial crush injury causes decrease in tissue perfusion at the level of the microcirculation in skeletal muscle flap.

This study was designed to evaluate the effects of crush injuries to the feeding arteries of a muscle flap on microcirculatory haemodynamics. Eighteen male Sprague-Dawley rats were divided into three experimental groups for intravital microscopy of the cremaster muscle flap. Group 1 served as control. In group 2 the common iliac artery and in group 3 additionally the lower abdominal aorta was crushed with a Kocher clamp (17.4 N) over 5 min. Microcirculatory parameters (red blood cell velocity, vessel diameter, and capillary perfusion) were monitored before and 2 h after crush. In the one-level crush group, red blood cell velocities significantly decreased by 39.17% (P=0.046) in first order arterioles and by 32. 91% (P=0.0106) in second order arterioles. In capillary perfusion, a drop of 48.02% (P=0.0039) was noted. In the two-level crush group, red blood cell velocities significantly dropped over 32.06% (P=0. 0250) in first order arterioles, 35.91% (P=0.0065) in second order arterioles, and 45.69% (P=0.0782) in first order venules. Capillary perfusion was reduced by 20.16% (P=0.374). Arterial crush injuries as possible thrombogenic insults may result in a significant decrease in skeletal muscle perfusion although the blood supply through the crushed supplying vessel is maintained.

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Failure in developing a model for complete vascular thrombosis in the common iliac artery in the rat.

The purpose of this study was to develop a model for complete arterial thrombosis proximal to the rat cremaster flap for subsequent fibrinolytic studies at the microcirculatory level. We divided 20 male Sprague-Dawley rats into four experimental groups of five animals each. We assigned each group to an established thrombosis model using crush and standard microsurgical anastomosis, crush and intimal abrasion, inverted arterial suture, and intravascular silk sutures combined with microsurgical anastomosis at the common iliac artery. Vessel patency was examined using the milking test 30, 60, 90, and 120 min after the thrombogenic insults. The model of perpendicular silk sutures and anastomosis caused complete arterial thrombosis in one animal over 120 min. The other models failed in all animals. In conclusion, the thrombogenic models used in this study are not capable of creating a reliable complete arterial thrombosis in the common iliac artery of the rat.

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Tissue-plasminogen activator restores muscle flap perfusion in the rat.

This study was designed to evaluate the effect of tissue-plasminogen activator on skeletal muscle flap perfusion after a thrombogenic insult. Twenty-four male Sprague-Dawley rats were divided into 4 experimental groups of 6 animals each. In group 1 (sham), the cremaster muscle was isolated as an end-organ flap. In group 2, after cremaster muscle isolation, a semicircular inverted suture as a thrombogenic insult was performed at the ipsilateral common iliac artery. In group 3, local tissue-plasminogen activator infusion followed the inverted suture. In group 4, vehicle was infused. After 24 hours, the cremaster muscle flap hemodynamics and leukocyte-endothelial interactions were measured using intravital microscopy. Capillary perfusion significantly decreased after the inverted suture from a median of 6.23 (group 1) to 1.50 (group 2) functional capillaries per visual field. Tissue-plasminogen activator significantly increased capillary perfusion after the thrombogenic insult from a median of 1.50 (group 2) and 2.50 (group 4) to 6.00 (group 3). Tissue-plasminogen activator restored capillary perfusion after a thrombogenic insult to the main feeding artery.

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[Applicability of the robot arm for microsurgical operations].

In this project, we evaluated a new robotic arm, RAMS (Robot Assisted Microsurgery) Workstation, for microsurgical procedures. We assigned seven microsurgical tasks to the robotic arm to investigate its capabilities and limitations during microsurgery. The robotic arm was able to function as the primary operating tool in removal of foreign bodies and thrombi as well as in intravascular positioning and holding of needles and catheters. The robot worked with great precision and without vibration. It served as an assisting tool in vessel dissection, ligation of side branches, and microsurgical anastomosis. The main drawbacks include a long warm-up period, the large size, poor rotation of the tip of the robotic arm, and frequent unintended shut-downs. The RAMS Workstation is a precise tool and can assist the surgeon as a "second" or "third hand". It cannot entirely replace the microsurgical instruments held by the surgeon.

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Thrombogenic stimulus causes long-term decrease of muscle flap perfusion.

This study was designed to evaluate the effect of a continuous thrombogenic insult at the feeding artery on skeletal muscle flap perfusion over 24 hours. Twelve male Sprague-Dawley rats were divided into two experimental groups. In the control group (N = 6) and in the treatment group (N = 6) the right cremaster muscle was isolated on its neurovascular pedicle and the tubular muscle flap was preserved in the medial part of the hind limb over a 24-hour period for subsequent microcirculatory observation. In the treatment group, an inverting suture was applied over half of the circumference of the ipsilateral common iliac artery to create a continuous thrombogenic stimulus. Intravital microcirculatory measurements obtained were red blood cell velocities, vessel diameters, capillary perfusion, endothelial edema index, and leukocytic-endothelial interactions. There were no statistically significant differences seen in red blood cell velocities, vessel diameters, and leukocytic-endothelial interactions between the groups. However, the inverting suture caused a significant drop in capillary perfusion from 6.23 to 1.50 capillaries per visual field (median; p = 0.002). An arterial thrombogenic insult may result in a significant decrease in capillary perfusion in muscle flaps over 24 hours although the blood flow through the thrombogenic main feeding vessel is maintained.

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Effects of 8-Gy radiation on the microcirculation of muscle flaps in the rat.

Combination of radical excision and radiation has been used as a treatment modality for cancer patients. As a result, in reconstructive surgery there is often a need to harvest flaps in the vicinity of previously irradiated tissues. Radiation has been shown to cause progressive injury to the macrocirculation and microcirculation, often jeopardizing flap survival. The purpose of this study was to examine whether radiation significantly affects the sequence of leukocyte-endothelial interactions or the hemodynamics of the muscle flap in both acute and chronic situations. Male Sprague-Dawley rats (n = 42) were divided into seven groups of six rats each. Rats in group I were not irradiated. Groups II through VII received 8-Gy radiation to the right groin and scrotum. Groups II, III, and IV were examined at 4, 24 and 72 hours, respectively, and groups V, VI, and VII were examined at 1, 2 and 12 weeks. For intravital microscopy, the cremaster muscle was dissected on its neurovascular pedicle. Vessel diameters and red blood cell velocities were measured in the central cremasteric branches and branch arterioles. Capillary perfusion was evaluated in 27 visual fields of each flap. Leukocyte-endothelial interactions were evaluated by numbers of rolling, adhering, and transmigrating leukocytes in post-capillary venules. In the same postcapillary venule, we measured the endothelial edema index (constriction index). The hemodynamics of irradiated flaps did not differ significantly from those of controls. Diameter and red blood cell velocity were increased in the first- and second-order arterioles and were highest at 72 hours and 1 week. After irradiation, third-order arterioles were constricted. Radiation reduced capillary perfusion by 4.3, percent. None of the differences were statistically significant. Neither leukocyte behavior nor the constriction indices differed among the groups. In conclusion, low-dose radiation of 8 Gy does not affect hemodynamics or leukocyte-endothelial interactions of muscle flaps in the rat. Muscle tissue with intact microvasculature can be harvested for reconstructive procedures after low-dose radiation.

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Effect of tissue-plasminogen activator on leukocyte-endothelial interactions at the microcirculatory level.

In free tissue transfer and replantation surgery, there is a debate over whether any pharmacologic agents should be used to improve vessel patency and tissue survival. Because tissue-plasminogen activator (t-PA) is a highly effective and safe fibrinolytic, it may be useful in obtaining and maintaining vessel patency. The direct effects of t-PA on skeletal muscle hemodynamics and leukocyte activation at the microcirculatory level were investigated. Male Sprague-Dawley rats (n = 20) were divided into three experimental groups: control (n = 8), vehicle (n = 6), and t-PA (n = 6). Using the cremaster muscle flap model and intravital microscopy, red blood cell velocity, vessel diameter, capillary perfusion, endothelial edema index, and leukocyte-endothelial interactions (rolling, adhering, and transmigrating leukocytes) in postcapillary venules were measured. In the vehicle and t-PA groups, vehicle or t-PA was infused by means of a catheter inserted into the lower abdominal aorta for local infusion. Except for a significant reduction in the diameter of the first order arterioles from 117 microm to 82 microm (medians; p = 0.026), t-PA did not significantly affect red blood cell velocity, vessel diameter, or capillary perfusion compared with vehicle. However, leukocyte-endothelial interactions did differ significantly in postcapillary venules. Adhering leukocytes counted per visual field decreased from 4.67 in the vehicle group and 3.50 in the control group to 1.67 in the t-PA group (medians; p = 0.015 and p = 0.005, respectively); transmigrating leukocytes in the t-PA group decreased from 4.75 in the vehicle group and 3.50 in the control group to 1.67 in the t-PA group (medians; p = 0.002 and p = 0.043, respectively). t-PA treatment significantly decreased the number of both adhering and transmigrating leukocytes. These novel findings on leukocyte-endothelial interactions suggest that t-PA has anti-inflammatory effect.

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