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Recanalization and thrombectomy of internal anastomosis in a patient with tetralogy of Fallot using the AngioJet rheolytic catheter.

The modified Blalock-Taussig shunt is the palliative treatment of choice for tetralogy of Fallot. Shunt thrombosis is a potential complication, requiring high-risk reoperation. The use of percutaneous rheolytic devices for thrombus removal in such occluded shunts has not been previously reported. We describe a case in which use of a rheolytic catheter resulted in significant thrombus removal and rapid reversal of cyanosis and dyspnea in a 5-year-old patient. The patient remains free of symptoms at 30-day follow-up.

Anastomosis, Surgical↗

Late recanalization at the site of failed percutaneous transluminal coronary angioplasty.

Percutaneous transluminal coronary angioplasty (PTCA) was performed unsuccessfully, resulting in disruption and near-total closure of the proximal right coronary artery at the site of stenosis following balloon inflation. The artery could not be reopened in the catheterization laboratory despite intracoronary nitroglycerin, sublingual nifedipine, and multiple balloon inflations. Myocardial revascularization surgery was immediately performed with excellent graft flow. No apparent myocardial infarction resulted. Catheterization performed at one year showed normal left ventriculography, total occlusion of the bypass graft, and reopening and normalization of the right coronary artery at the site of PTCA-induced occlusion. Possible mechanisms for this phenomenon and its clinical implications are discussed.

Aged↗

Sheath introducer technique for recanalizing total occlusions of the superficial femoral artery.

Symptomatic patients with total superficial femoral artery occlusions were approached with a modified Dotter technique followed by PTA and/or atherectomy. In 21 lesions studied, 7 (33%) were crossed with a conventional guide wire. Of the remaining 14 lesions (67%), 12/14 (86%) were crossed successfully using the pliable distal tip of the sheath introducer. The average angiographic lesion length crossed was 42 +/- 29 mm (range 8-109 mm). One insertion site vessel complication requiring surgical repair was seen. Although more advanced technologies have been developed to treat "wire resistant" total occlusions, the use of the introducer technique described is effective in many patients and adds no additional cost or time to the standard angioplasty procedure.

Adult↗

Successful limb salvage after recanalization of an occluded infrapopliteal artery utilizing a balloon expandable (Palmaz-Schatz) stent.

This case describes the first reported successful management of an infrapopliteal artery intimal dissection utilizing the Palmaz-Schatz balloon expandable stent. Stent deployment relieved the compromised blood flow caused by the intimal flap which could not be corrected by prolonged balloon inflation or removed with directional atherectomy, and averted any emergency surgical procedure.

Aged↗

The use of a new wire in a 6-year-old coronary artery occlusion: the Jagwire recanalization guidewire.

Chronic total occlusions are difficult to treat, usually because they cannot be crossed with a guidewire or dilating catheter. A variety of angioplasty systems designed to facilitate coronary angioplasty of chronic total occlusions have been used. We report the case of a 6-year-old occlusion of the right coronary artery that was treated with the Jagwire, a new guidewire designed for use in challenging lesions. This device successfully crossed the lesion and resulted in a successful angioplasty. The patient's angina dramatically improved following the procedure.

Angioplasty, Balloon, Coronary↗

Vascular recanalization with the argon laser: the role of blood in the transmission of laser energy.

Successful revascularization of stenosed arteries with the argon laser optical fiber catheter requires delivery of high-power-density energy to the lesion. Because of the high energy absorption by hemoglobin at the argon laser wavelengths, which would attenuate transmission of laser energy to the obstruction, we measured argon laser transmission through blood at different concentrations. We found that no transmission occurred through 1 mm of whole blood with hematocrit of 42 and that blood must be diluted to a hematocrit below 1 for laser energy to be delivered. Successful use of the intravascular argon laser is dependent on the creation of a transmission medium by displacement of blood by saline or other non-absorbing substance.

Arterial Occlusive Diseases↗

Mechanism of CW Nd:YAG laser recanalization with modified fiber tips: influence of temperature and axial force on tissue penetration in vitro.

Modified fiber tips are used for laser angioplasty of totally occluded peripheral arteries. It has not been established, however, to what extent the mechanism of action of various laser probes is optical, thermal, or mechanical. We examined transparant contact probes (hemispherical contact probes and ball-shaped fibers) and metal laser probes, coupled to a continuous-wave Nd-YAG laser. By using homogeneous thick porcine fatty tissue samples submerged in blood plasma, tissue penetration was measured in relation to the temperature of the probe and the axial force exerted on the tissue. By using 15 W, 1 s laser pulses, the surface of transparent contact probes had to be first contaminated by carbonized tissue particles to achieve tissue penetration. Penetration increased from 1 to 10 mm per pulse when axial force increased from 20 to 100 g. Metal probes had to be sufficiently insulated from the liquid environment by water vapour entrapped in a denatured protein layer to exceed the threshold temperature of 225 degrees C for tissue penetration. When axial force increased from 20 to 80 g at 10 W continuous exposure, the velocity of tissue penetration increased in the range from 1 to 4 mm/s. Tissue penetration by modified fiber tips is attributed to both remodeling and vaporization of tissue. With transparent contact probes, tissue is heated partly by direct light absorption and partly by a hot probe surface. Axially directed force is necessary to displace lateral non-ablated tissue and to overcome mechanical resistance. We conclude that mechanical dilation due to axial catherization force (Dotter effect) contributes substantially to tissue penetration by transparent contact probes.

Angioplasty, Laser↗