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Biomedical subjects

C Borst

Publications and source records attributed to C Borst.

At least 73 records · Page 4Linked to original sources

Less invasive off-pump CABG using a suction device for immobilization: the 'Octopus' method.

OBJECTIVE: Target site immobilization is essential to enable meticulous anastomosis suturing during coronary artery bypass grafting on the beating heart. A novel device ('Octopus') was developed for local heart muscle immobilization by suction. The purpose of this study was to investigate the efficacy of the method through a limited access. METHODS: The suction device, placed on either side of the recipient coronary artery and fixed to the operating table-rail through an arm construction, restrains anastomosis site motion to 1 x 1 mm. A total of 27 patients underwent off-pump arterial bypass grafting using this method. Preoperatively, all patients had angina class III (NYHA) and were failed or unsuitable candidates for balloon angioplasty. Surgical access was via a 10-cm anterior thoracotomy (n = 26) or 10-cm subxiphoid incision (n = 1). RESULTS: Harvesting of the graft required 48 +/- 12 min (mean +/- S.D.). Immobilization with the 'Octopus' was effective and facilitated precise anastomosis suturing of 20 single and 7 sequential grafts. Immobilization did not change cardiac index and mean arterial blood pressure. During coronary surgery, however, inotropic drug support was used in 5 of 27 (18%) of patients. There was no myocardial infarction. Only minor transient complications were met. There were electro-cardiographical signs of pericarditis in 6 patients. The postoperative hospital stay ranged from 2 to 6 days, mean 4.0 +/- 1.2 days. The mean follow-up is 6.5 +/- 4 months (range, 1-12 months). All patients except one were in functional class I without angina. Social activities were resumed within 4 weeks. At 6 months angiography was performed in 15 out of 27 patients. The patency rate of 19 out of 20 anastomoses was 95%. All distal grafts were patent. One side to side anastomosis was occluded. CONCLUSIONS: The 'Octopus' immobilization method is safe and effective. It facilitates less invasive CABG in selected patients and gives way to fast recovery by reducing invasiveness.

Adult↗

Remodeling of the atherosclerotic arterial wall: a determinant of luminal narrowing in human coronary arteries.

BACKGROUND: The type of remodeling of the human femoral artery (enlargement or shrinkage) is related to the percentage luminal stenosis. OBJECTIVE: To assess how local changes in vessel size, together with plaque load, determine luminal narrowing in atherosclerotic human coronary arteries. METHODS: We obtained 576 segments of 28 coronary arteries from 10 patients who had died from noncardiac causes. The lumen area and area circumscribed by the internal elastic lamina (IEL) area, a measure of local vessel size in each histologic cross-section were measured, and the mean lumen diameter and mean IEL diameter were calculated. To correct for arterial tapering, expected reference diameter values were calculated at the same location using linear regression of all data points along the artery. The IEL diameter and lumen diameter were expressed as percentages of the calculated IEL diameter and lumen diameter at the same location (percentage lumen diameter stenosis and relative IEL diameter, respectively). RESULTS: We found a negative relation between the relative IEL diameter and the percentage lumen diameter stenosis. On average, a narrower than expected lumen diameter was accompanied by a smaller than expected IEL diameter. A larger than expected lumen diameter was accompanied by a larger than expected IEL diameter. This relation was found for the left anterior descending, circumflex, and right coronary arteries (y = -0.60x + 105.33, r = 0.48; y = -0.45x + 100.69, r = 0.84; and y = -0.39x + 101.84, r = 0.61, respectively, all P < 0.05). CONCLUSIONS: Local luminal narrowing was correlated with a decrease in vessel size. Local remodeling of the artery is one of the determinants of luminal narrowing in the atherosclerotic human coronary artery.

Coronary Artery Disease↗

Relationship between plaque mass and neointimal hyperplasia after stent placement in Yucatan micropigs.

PURPOSE: To determine whether the amount of neointima found after stent placement is related to the preexistent plaque mass in the peripheral arteries in micropigs. MATERIALS AND METHODS: Twenty-six peripheral arteries were studied in 14 Yucatan micropigs in a denudation and diet-induced atherosclerosis model. Quantitative angiographic and intravascular ultrasound (US) analysis were performed before and after stent placement and at follow-up 6 weeks after stent placement. At follow-up, the peripheral arterial tree was fixed by means of pressure perfusion, processed for histologic analysis, and analyzed morphometrically with a computer-based system. RESULTS: Preexistent plaque correlated strongly with intimal hyperplasia measured on US images (r = .81, P < .001) or in histologic sections (r = .53, P = .006). No correlation was found between dilation ratio and intimal hyperplasia or between balloon-to-lesion ratio and intimal hyperplasia. In multivariate models of intimal hyperplasia, preexistent plaque and early gain in lumen diameter depicted at angiography were independent explanatory variables. CONCLUSION: The amount of plaque present before stent placement was a determinant of the amount of intimal hyperplasia present after stent placement.

Angiography↗

Compensatory enlargement in coronary and femoral arteries is related to neither the extent of plaque-free vessel wall nor lesion eccentricity. A postmortem study.

Arteries may demonstrate compensatory enlargement in response to plaque accumulation. It has been proposed that enlargement is achieved by the expansion of the nondiseased (plaque-free) vessel wall. In this study, we assessed this hypothesis. Post mortem, 32 atherosclerotic coronary arteries (left anterior descending, n = 10; left circumflex, n = 11; and right coronary, n = 11) and 54 atherosclerotic femoral arteries were pressure fixed. Cross sections (coronary arteries, n = 537; femoral arteries, n = 1602) were obtained for analysis every 2.5 mm for the coronary arteries and every 5.0 mm for the femoral arteries. From these cross sections, we determined the degree of remodeling and an eccentricity index. Finally, we measured the extent of plaque-free vessel wall. The plaque-free vessel wall was defined as (1) no plaque present or (2) plaque thickness < 0.5 mm. A very weak, negative correlation was observed between the degree of remodeling and the extent of the plaque-free vessel wall (coronary arteries: no plaque r2 = .13, P < .01; < 0.5 mm plaque r2 = .15, P < .05; femoral arteries: no plaque r2 = .02, P < .01; < 0.5 mm plaque r2 = 0.04, P < .01). The degree of remodeling did not correlate with the eccentricity index (coronary arteries r2 = .002, P > .05 and femoral arteries r2 = .001, P > .05). Thus, compensatory enlarged segments did not reveal a larger circumference of plaque-free vessel wall compared with segments that failed to enlarge. This study provides no support for the hypothesis that nondiseased vessel-wall expansion is responsible for compensatory enlargement in atherosclerotic arteries.

Aged↗

The impact of atherosclerotic arterial remodeling on percentage of luminal stenosis varies widely within the arterial system. A postmortem study.

Luminal stenosis can be based on large atherosclerotic plaques in compensatory enlarged segments or on relatively little plaques in shrunken segments. In the present study, the contribution of plaque formation and remodeling to luminal narrowing was compared among six types of arteries prone to symptomatic atherosclerosis. Cross-sections (n = 5195) were obtained at regular intervals from 329 arteries. For each artery, the cross-section that contained the least amount of plaque was considered to be the reference. For each cross-section, the percentage of lumen area decrease was expressed as a percentage of the lumen area at the reference site (luminal stenosis). Similarly, the area encompassed by the internal elastic lamina (IEL area) was expressed as a percentage of the IEL area at the reference site (relative IEL area). All cross-sections were categorized in three groups: relative IEL area > 105% (enlargement), 95% to 105% (no remodeling), and < 95% (shrinkage). The prevalence of enlargement (50% to 75%) was significantly higher compared with shrinkage (8% to 25%). Shrinkage was observed most frequently in the femoral arteries (25%) and infrequently in the renal arteries (8%). For all types of arteries, the relative IEL area correlated negatively with luminal stenosis (P < .001). Regression analysis of relative IEL area on luminal stenosis, however, showed significant differences in the first-order regression coefficients among artery types. On average, plaque increase was more compensated for by enlargement in the coronary, common carotid, and renal arteries compared with the arteries obtained from the lower extremities. Anatomic regional differences were observed in the impact of arterial wall remodeling on percent luminal stenosis in de novo atherosclerotic lesions.

Aged↗

Twin-twin transfusion syndrome. Three possible pathophysiologic mechanisms.

OBJECTIVE: To propose a classification of twin-twin transfusion syndrome based upon three categories of placental anastomotic patterns. STUDY DESIGN: A mathematical model developed to compute fetal blood volume in monochorionic twins combines fetoplacental circulation with net fetofetal transfusion along placental anastomoses. We included (1) unequal cotyledonic sharing, assuming that smaller fractions cause smaller twins with lower blood pressure, and (2) significantly decreasing anastomotic resistance, combining Poiseuille's law with placental anastomotic growth. Fetoplacental compensatory mechanisms were not studied. RESULTS: First, unidirectional arteriovenous anastomoses produce steadily increasing fetal discordance by small anastomotic blood flow. Second, arteriovenous plus compensating anastomoses (venoarterial, arterioarterial, venovenous) produce fetal discordance followed by a dynamic steady state of minimal net fetofetal transfusion and large anastomotic flow. This circumstance mitigates further discordant growth. Third, unequal cotyledonic sharing plus superficial compensating anastomoses (arterioarterial, venovenous) produce fetal discordance followed by a steady state of equal fetal growth and small anastomotic flow. The model predictions include spontaneous disappearance and reversal of discordance. Serial measurement of fetal growth patterns and anastomotic flow could identify the syndrome's underlying pathophysiology. CONCLUSION: Testing the model predictions by relating clinical presentation with placental anatomy could increase our understanding and direct diagnostic and therapeutic strategies to match the underlying placental anatomy.

Arteriovenous Anastomosis↗

Application of intravascular ultrasound in remodelling studies.

Arterial remodelling is an important determinant of luminal narrowing in de novo atherosclerosis as well as in restenosis following balloon angioplasty. To date, intravascular ultrasound is the best diagnostic modality to study changes in arterial size in vivo. The role of arterial wall remodelling in de novo atherosclerosis and restenosis has been well established by intravascular ultrasound studies. Single intravascular ultrasound studies have demonstrated that the artery may enlarge, fail to enlarge or even shrink if plaque accumulates. In restenosis studies, serial intravascular ultrasound studies have allowed examination of the remodelling process over time and have shown that arterial shrinkage and not intimal hyperplasia is the predominant factor responsible for luminal narrowing after balloon angioplasty. This article will focus on the applicability of intravascular ultrasound to the study of vascular remodelling in de novo atherosclerosis, in restenosis after balloon angioplasty, atherectomy and stenting, in saphenous vein grafts and in the coronary arteries of transplanted hearts.

Angioplasty, Balloon↗

Remodelling: historical perspectives and definition of terms.

The changes that occur in both the structure and geometry of blood vessels in pathological conditions has been termed remodelling. The importance of the changes in geometry have only been recently widely appreciated, although geometric remodelling has been recognized for more than 30 years. Geometric remodelling can be favourable, as occurs with compensatory enlargement, or unfavourable, as with constriction. Vascular remodelling is recognized to occur in a variety of pathological conditions, including atherosclerosis, hypertension, arterio-venous grafts, and following restenosis. A better understanding of the pathophysiology should permit development of new therapeutic strategies to treat these conditions.

Adaptation, Physiological↗

Arterial remodelling by atherosclerosis.

Until recently, plaque formation was considered to be the only determinant of atherosclerotic luminal narrowing. Recent post-mortem and intravascular ultrasound studies, however, revealed that arterial remodelling is another important determinant of luminal narrowing in de novo atherosclerosis. The change in total arterial circumference relative to a reference cross-section ranges from excessive enlargement with an actual increase in lumen to arterial shrinkage contributing to lumen narrowing. The mechanisms responsible for this spectrum of remodelling are unknown, but their identification will be important for the potential development of therapeutic strategies to promote favourable remodelling.

Adaptation, Physiological↗

Atherosclerotic arterial remodeling in the superficial femoral artery. Individual variation in local compensatory enlargement response.

BACKGROUND: In previous studies on atherosclerotic arterial remodeling, compensatory enlargement of the artery in response to plaque accumulation was inferred from pooled data based on one cross section per artery. We assessed local arterial remodeling individually by analyzing 45 artery segments at 0.5-cm intervals over a length of 10 to 15 cm. METHODS AND RESULTS: Twenty patients were studied by 30-MHz intravascular ultrasound (IVUS) before balloon angioplasty of the superficial femoral artery (370 cross sections), and 25 femoral artery segments were studied postmortem (551 cross sections). In each cross section, the area surrounded by the internal elastic lamina (IEL area) and the plaque area were measured. The IEL area was larger in the cross section with the largest plaque area than in the cross section with the smallest plaque area (32.5+/-13.0 and 32.0+/-11.5 mm2 versus 28.9+/-9.7 [P=NS] and 26.7+/-10.1 [P<.05] mm2 for IVUS and histology, respectively [mean+/-SD]). A significant positive correlation was found between plaque area and IEL area for the pooled data (r=.61 and r=.47 and slope=1.07 and 0.90 for IVUS and histology, respectively; both P<.001). In 12 of 20 and 16 of 25 individual arterial segments, however, no significant correlation was observed between plaque area and IEL area for IVUS and histology, respectively. A large variation was found in the correlation of the regression of plaque to IEL area (IVUS, r=-.40 to .89; histology, r=-.13 to .91) and slope (IVUS, -0.28 to 1.29; histology, -0.18 to 1.32). CONCLUSIONS: In the majority of atherosclerotic femoral arteries, significant compensatory enlargement could not be determined. It is inferred that arterial remodeling in response to plaque formation may vary among individuals.

Aged↗

Excimer laser induced bubble: dimensions, theory, and implications for laser angioplasty.

BACKGROUND AND OBJECTIVE: Previous studies have demonstrated that during Xenon-Chloride excimer laser ablation of tissue, rapidly expanding and imploding bubbles (diameter < 3 mm), predominantly containing water vapor, are formed. These short lived bubbles (life time < 300 microseconds) induce mechanical damage in adjacent tissue. In the present study, a theoretical analysis of the volume of vaporized water is correlated with measured bubble volumes formed in hemoglobin solution. STUDY DESIGN/MATERIALS AND METHODS: The dimensions of the rapidly expanding and imploding vapor bubble induced by the XeCl excimer laser pulses (308 nm, 115 ns), delivered via a 300, 550, or 950 microns diameter monofiber in 16% w/v hemoglobin solution (at 37 degrees C), were measured. RESULTS: Theoretical analysis and the experimental data correlated well (correlation coefficient r = 0.97). The diameter of excimer laser induced bubbles increased with increasing pulse energy. For a given radiant exposure, the bubble size was decreased by either decreasing the fiber tip area or by decreasing the absorption coefficient of the hemoglobin solution. CONCLUSION: We conclude that, for a wide range of conditions, theory agrees well with experimental data. Thus, during delivery of excimer laser pulses in blood, bubble dimensions can be reduced by flushing with saline or by reduction of the area radiated with each laser pulse, for example, by pulse multiplexing or using a smaller multifiber catheter.

Angioplasty, Laser↗

Computation of a location shift between two subsequent intra vascular ultrasound registrations by cross-correlation analysis of the lumen area functions.

For longitudinal studies on atherosclerosis and restenosis after angioplasty by intravascular ultrasound (IVUS), it is essential that repeated studies are performed at exactly the same location along an arterial section. In human femoral arteries, lumen and plaque area functions of two subsequent IVUS pullback maneuvers were compared by cross-correlation analysis. In cross-correlation analysis of two functions with equal abscissa values, the data sets are repetitively correlated after incremental shifts of the two functions along the abscissa. This results in multiple correlation coefficients with a maximum at the relative position where the two functions show the closest match. In group A (12 patients), both pullbacks were performed after angioplasty and in group B (17 patients) one pullback was performed before angioplasty and the second immediately after angioplasty. In group A, cross-correlation showed a shift between lumen area functions of 5 mm in one patient and no shift in the other patients. Maximum correlation coefficients in group A ranged from 0.644 to 0.978. Four patients from group B showed shifts from 2.5 to 35 mm. Maximum coefficients were significantly smaller than in group A: 0.259-0.864 (p < 0.01). Plaque area functions in group B showed higher correlations (0.468-0.862, p = 0.034) and only two shifts. Cross-correlation of lumen and plaque area functions may be used to compute location shifts between two subsequent IVUS registrations and to correct such shifts.

Aged↗

Residual stenosis determined by intravascular ultrasound and duplex ultrasound after balloon angioplasty of the superficial femoral artery.

Exact determination of the percentage luminal stenosis after balloon angioplasty is essential when deciding to redilate or not, especially since the percentage luminal stenosis may be a predictor for long-term outcome. Conflicting percentage residual stenosis is frequently observed when angiography is compared with duplex or intravascular ultrasound measurements. The aim of the present study was to compare the percentage luminal stenosis after balloon angioplasty determined by duplex and intravascular ultrasound. In 22 patients, balloon angioplasty was performed in the superficial femoral artery to treat disabling claudication. Intravascular ultrasound studies were performed immediately after balloon angioplasty; duplex studies were performed 24-36 h after intervention. Intravascular ultrasound percentage luminal stenosis was calculated with respect to a proximal reference lumen. Duplex percentage luminal stenosis was determined by two methods: first, by assuming that the increase in peak flow velocity is directly related to lumen area; and second, by considering a peak flow velocity ratio of 1.6 and 2.4 is representative for > 30% and > 50% diameter stenosis, respectively. The percentage luminal stenosis calculated from duplex measurements was higher compared with intravascular ultrasound measurements (y = 0.38x + 20.1, r = 0.57). Excluding cross-sections with vascular wall damage (dissection or plaque fracture) over more than 60 degrees of the circumference improved the slope and correlation coefficient of intravascular ultrasound measurements versus duplex measurements (y = 0.88x + 7.8, r = 0.70). Thus, after balloon angioplasty, conflicting percentage luminal stenosis is frequently observed using intravascular ultrasound and duplex measurements. These differences in percentage luminal stenosis may partly be explained by the extent of vascular wall damage visualized on the intravascular ultrasound image.

Angioplasty, Balloon↗

Coronary artery bypass grafting without cardiopulmonary bypass and without interruption of native coronary flow using a novel anastomosis site restraining device ("Octopus").

OBJECTIVE: This study assessed the feasibility of coronary artery bypass grafting on the beating heart without interruption of native coronary blood flow using a novel anastomosis site restraining device. BACKGROUND: Recently, an end-to-side bypass technique was described that does not require interruption of flow in the recipient artery. METHODS: By means of a suction device ("Octopus"), in 31 pigs the epicardium was grasped and immobilized through an arm contraption fixed to the operating table. In the first 15 consecutive pigs (study I), the two-dimensional motion of an epicardial beacon was monitored. In 16 subsequent pigs (study II), an internal mammary artery was grafted under the microscope in two steps to a proximal coronary artery segment, without cardiopulmonary bypass. First, the internal mammary artery was sutured end-to-side to the outside of the coronary artery. Secondly, an orifice was punched in the partitioning coronary wall by an excimer laser catheter introduced through a temporary side-branch of the internal mammary artery. RESULTS: Study II: During 43 suction periods in four anastomosis areas, immobilization was achieved for 15 to 169 min (>30 h in total) in 13 open- and 9 closed-chest procedures without hemodynamic deterioration. The area circumscribed by the edges of the beacon trajectory (area in which the anastomosis is to be tracked) was reduced from 73.0 +/- 43.0 mm(2) (mean +/- SD) to 1.3 +/- 0.5 mm(2) (p<0.001) in the open-chest and to 0.2 +/- 0.2 mm(2) in the closed-chest procedure. At 6 weeks, no myocardial or coronary suction lesions were found. Study II: Nonocclusive anastomosis surgery required 25 +/- 3 min. No leakage, serious arrhythmias, graft closure or hemodynamic deterioration occurred during the procedure or for 2 h after ligating the coronary artery proximally. At 6 weeks, all seven grafts were patent. CONCLUSIONS: Coronary bypass on the beating heart without interruption of coronary flow is feasible. In both open- and in closed-chest procedures, the "Octopus" reduced anastomosis site motion to about 1 X 1 mm without adverse consequences.

Anesthesia, General↗

Fogarty and percutaneous transluminal coronary angioplasty balloon injury induce comparable damage to the arterial wall but lead to different healing responses.

PURPOSE: Fogarty balloon denudation in experimental animals often serves as a model for percutaneous transluminal coronary angioplasty (PTCA). We compared the healing response of the arterial wall with the use of Fogarty and PTCA balloon dilation. METHODS: Carotid arteries of rabbits were injured with a 2F Fogarty (n = 9) or a 3 mm PTCA balloon (n = 6). At 1 day endothelial cell removal was qualitatively evaluated in Fogarty balloon lesions and in PTCA balloon lesions with a modified "en face" silver nitrate staining. Medial necrosis was morphometrically determined as percentage medial area. After 21 days endothelial cell coverage was assessed in the center of the lesion with an antibody to CD31 and intimal proliferation with an antibody to the nuclear antigen Ki-67. Intimal hyperplasia area was measured with morphometry. Acute lumen gain directly after Fogarty balloon dilation and PTCA balloon dilation was determined by serial angiography. All data are means +/- SEM. RESULTS: At 21 days intimal hyperplasia area was higher in the Fogarty balloon lesions than in the PTCA balloon lesions. Intimal hyperplasia area was 0.19 +/- 0.02 mm2 and 0.03 +/- 0.01 mm2, respectively. Immediately after injury the acute gain in luminal diameter did not differ between Fogarty and PTCA balloon dilation (0.37 +/- 0.03 mm and 0.38 +/- 0.05 mm, respectively). At 1 day after injury endothelial cell removal was complete in all segments. Medial necrosis caused by Fogarty (67% +/- 7%) and PTCA balloon dilation (74% +/- 9%) did not differ. At 21 days endothelial cell coverage was almost complete both in the Fogarty balloon lesions and in the PTCA balloon lesions. Intimal proliferation was also higher in the Fogarty balloon lesions than in the PTCA balloon lesions. CONCLUSION: Despite comparable endothelial cell abrasion and medial necrosis, Fogarty balloon injury elicited significantly augmented intimal hyperplasia compared with PTCA balloon dilation.

Angioplasty, Balloon, Coronary↗

Interventional thermal injury of the arterial wall: unfolding of von Willebrand factor and its increased binding to collagen after 55 degrees C heating.

PURPOSE: Thermal angioplasty alters the thrombogenicity of the arterial wall. In previous studies, platelet adhesion was found to increase after heating human subendothelium to 55 degrees C and decrease after heating to 90 degrees C. In the present electron microscopic study, the mechanism of this temperature-dependent platelet adhesion to the heated arterial wall is elucidated by investigating temperature-dependent conformational changes of von Willebrand factor (vWF) and collagen types I and III and the binding of vWF to heated collagen. METHODS: Purified vWF and/or collagen was applied to electron microscopic grids and heated by floating on a salt-solution of 37 degrees C, 55 degrees C or 90 degrees C for 15 s. After incubation with a polyclonal antibody against vWF and incubation with protein A/gold, the grids were examined by electron microscopy. RESULTS: At 37 degrees C, vWF was coiled. At 55 degrees C, vWF unfolded, whereas heating at 90 degrees C caused a reduction in antigenicity. Collagen fibers heated to 37 degrees C were 60.3 +/- 3.1 nm wide. Heating to 55 degrees C resulted in the unwinding of the fibers, increasing the width to 87.5 +/- 8.2 nm (p < 0.01). Heating to 90 degrees C resulted in denatured fibers with an enlarged width of 85.1 +/- 6.1 nm (p < 0.05). Heating of collagen to 55 degrees C resulted in an increased vWF binding as compared to collagen heated to 37 degrees C or to 90 degrees C. Incubation of collagen with vWF, prior to heating, resulted in a vWF binding after heating to 55 degrees C that was similar to the 37 degrees C binding and a decreased binding after 90 degrees C. CONCLUSIONS: After 55 degrees C heating, the von Willebrand factor molecule unfolds and collagen types I and III exhibit an increased adhesiveness for von Willebrand factor. Heating to 90 degrees C denatures von Willebrand factor and collagen. The conformation changes of von Willebrand factor and its altered binding to collagen type I and III may explain the increased and decreased platelet adhesion to subendothelium after 55 degrees C and 90 degrees C heating, respectively.

Analysis of Variance↗

Fundamental laser-tissue interactions.

Pulsed xenon chloride excimer and holmium laser-tissue interaction is primarily based on tissue water vaporization. Consequently, each ablative laser pulse produces a rapidly expanding and imploding vapour bubble in blood or the target tissue. In experimental studies, explosive water vaporization is the major mechanical cause of observed tissue dissections. By reduction of the induced bubble volume, a reduction in experimentally and clinically observed dissections after coronary excimer laser angioplasty is to be expected. This reduction of mechanical damage, however, in combination with efficient and substantial plaque debulking is the major challenge in the development of laser angioplasty.

Angioplasty, Laser↗