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Myocardial perfusion imaging with technetium-99m sestamibi SPECT in the evaluation of coronary artery disease.

Technetium-99m hexakis-2-methoxy-isobutyl-isonitrile (99mTc sestamibi) has been used for myocardial perfusion imaging in the evaluation of coronary artery disease (CAD) since 1990. The experience of its use in an Asian population with and without previous myocardial infarction (MI), diabetes mellitus (DM), hypertension (HPT) and collateral circulation (COL) is reported. One hundred and thirty-nine patients who underwent treadmill exercise testing with 99mTc sestamibi single photon emission computed tomography (SPECT) and coronary angiogram were studied. The overall sensitivity for the detection of CAD was 91.0% and specificity was 64.7%. For patient without previous myocardial infarction, the sensitivity was 83.8% and specificity was 83.3%. Patients with COL had a higher sensitivity while those with HPT had a lower specificity. Sensitivity was higher in patients with multi-vessel disease (MVD) than single vessel disease (SVD). The overall detection for individual artery stenosis was 74.1% with a specificity of 73.1%. Amongst the three major coronary arteries, sensitivity was highest for the right coronary artery and specificity was highest for the left circumflex artery. Specificity was higher in patients without MI or COL. We found that the agreement between 99mTc sestamibi SPECT and coronary angiogram for the extent of CAD was only 52.5%. The concordance rate was higher for patients with MVD than SVD. It is concluded that 99mTc sestamibi SPECT is a sensitive and specific test for the detection of CAD and localization of disease to individual coronary arteries in our patients with some differences in the subgroups. Agreement between coronary angiogram and 99mTc sestamibi for the extent of coronary artery disease was also satisfactory.

Adult↗

Mesenteric and celiac duplex scanning: a validation study.

PURPOSE: To validate the accuracy of previously established duplex ultrasound criteria for > or =50% superior mesenteric artery (SMA) and celiac artery (CA) stenosis by comparison with arteriography. METHODS: Duplex criteria established retrospectively in our laboratory in 1991 identified an end-diastolic velocity (EDV) > or =45 cm/sec, or no flow signal, as highly sensitive (100%) and specific (92%) indicators for SMA stenosis > or =50% or occlusion. EDV was more accurate (95%) than peak systolic velocity (PSV), which had a maximal accuracy of 86% at a PSV > or =300 cm/sec, with low sensitivity (62%), but high specificity (100%). For CA, accurate velocity thresholds were not identified, but we subsequently noted that retrograde common hepatic artery flow direction from SMA collateral was highly predictive of severe CA stenosis or occlusion. Since publication of those findings, 243 mesenteric duplex scans were performed for clinical evaluation of suspected chronic mesenteric ischemia. Angiographic confirmation was available for a subset of 46. SMA and CA diameters were measured on lateral aortograms by observers blinded to the duplex results, and the original duplex diagnostic criteria were tested for accuracy. In addition, receiver operator characteristic curve analysis was performed on the velocity data to identify the most accurate velocity thresholds in the new data. RESULTS: Duplex was technically adequate in 98% of SMA, 96% of CA, and 89% of hepatic arteries, and arteriograms were adequate in 100% of SMA and 98% of CA. For the SMA, EDV > or =45 cm/sec again provided the best sensitivity (90%), specificity (91%), positive predictive value (90%), negative predictive value (91%), and overall accuracy (91%). As in the retrospective study, PSV > or =300 cm/sec provided low overall accuracy (81%), low sensitivity (60%), but high specificity (100%). Lowering the PSV threshold improved sensitivity but reduced accuracy. For CA, retrograde common hepatic artery flow direction was 100% predictive of severe CA stenosis or occlusion. Velocity data in CA provided accuracy not found in the original study. EDV > or =55 cm/sec or no flow signal had best overall accuracy (95%) with high sensitivity (93%) and specificity (100%). PSV > or =200 cm/sec or no signal also had excellent accuracy (93%), sensitivity (93%), and specificity (94%). In addition, three of four anatomic anomalies were correctly identified by duplex. These included one right hepatic and one common hepatic artery originating from the SMA, and one common celiacomesenteric trunk. CONCLUSION: This validation analysis confirms that duplex velocity criteria are accurate in the identification of mesenteric occlusive disease. Retrograde common hepatic artery flow direction correctly predicts severe CA stenosis or occlusion. Duplex ultrasound may also identify mesenteric anatomic variants that can influence study interpretation.

Aged↗

Pre- and intraoperative transcranial Doppler: prediction and surveillance of tolerance to carotid clamping.

We report 91 patients (mean age 70 years) operated upon, prospectively for a total of 100 carotid revascularizations (nine bilateral). Eighty-five of these patients had pre-, intra-, and postoperative transcranial Doppler investigations. Preoperatively, these 85 patients (92 procedures) were classified into two groups based on the results of their Doppler examinations: Group A (65 patients, 72 procedures), those who did not require an intraoperative indwelling shunt and Group B (20 patients, 20 procedures), those who did. The shunt was inserted only when the mean stump (back) pressure was less than 50 mmHg after cross-clamping. Group A all had satisfactory collaterality with a functional anterior and one or two posterior communicating arteries. Group B had no communicating arteries (anterior or posterior) identified by transcranial Doppler. In 17 of 20 patients in this group, the stump pressure was less than 50 mmHg and a shunt was placed. The overall prediction based on Doppler examination of whether or not patients would need a shunt during operation for the two groups A and B (i.e., 92 procedures) was correct in 95.6% (88/92) of cases. Moreover, six hemodynamically significant stenoses (four in the cavernous portion, two in the middle cerebral artery) were disclosed. Sensitivity and specificity of transcranial Doppler as correlated with arteriographic findings were 70 and 90%. Preoperative transcranial Doppler can measure the velocities of the principal cerebral arteries and the collateral capacity of the circle of Willis, and can forecast tolerance to carotid cross-clamping. Intraoperatively, the velocity of flow in the middle carotid artery was correlated with stump pressure, which allowed for surveillance of the shunt.

Aged↗

Stroke: indications for emergent surgical intervention.

As the brain attack message is disseminated throughout our medical community and the awareness of the public increases, neurosurgeons will have the opportunity to treat patients with stroke at a much earlier time in the evolution of the process than we have been accustomed. Are the relatively unimpressive results of acute surgical intervention in patients operated on later in the course of the disease applicable to those who seek medical attention early, within the first few hours of ictus? There is little firm data. However, there is an overwhelming amount of anecdotal and experimental evidence supporting the potential for ultra-early intervention, which frequently should be surgical. New surgical techniques may improve safety and feasibility of emergent operations. In the coming years, diagnostic techniques such as perfusion/diffusion magnetic resonance imaging will allow the clinician to determine who may benefit from intervention. These determinations will be made on physiological data, addressing the issues of tissue viability and degree of compromise of the blood-brain barrier. In the future, the window of opportunity for intervention will not be solely a function of time from ictus or a qualitative impression based on collateral circulation as extrapolated from angiography, transcranial Doppler, or magnetic resonance angiography. These new magnetic resonance imaging techniques, which are beginning to be tested clinically or are still in the developmental stages, will provide the functional data now provided by positron emission tomography and xenon computed tomography, but with improved sensitivity, specificity, and logistical ease. Neurosurgeons have been leaders in stroke care and have provided some of the most important experimental rationale for the brain attack concept. These contributions include demonstration of the ischemic penumbra, the importance of time and potential collateral circulation as factors determining viability of ischemic tissue, and the value of early revascularization and many neuroprotective maneuvers in preserving brain tissue after arterial occlusion. There is every reason to preserve and to enhance the role of the neurosurgeon as a "stroke expert" and as a leading member of the brain attack team. Early access to patients with stroke will offer us the opportunity to test clinically, in a rigorous fashion, the value of surgical revascularization procedures (open or endovascular) and medical maneuvers that we have developed clinically and tested in the laboratory. We have shown, as we did with the bypass study, that neurosurgeons know how to perform these trials and abide by their results, even when they are not to our liking.

Cerebral Angiography↗

Morphology and topography of identified primary afferents in trigeminal subnuclei principalis and oralis.

1. Intra-axonal recording, receptive field mapping, horseradish peroxidase injection, cytochrome oxidase staining, and computer-assisted reconstruction/morphometric methods were used to elucidate the structure and topography of trigeminal primary afferent collaterals in the normal adult rat. Prior studies focused on trigeminal brain stem subnuclei interpolaris and caudalis. This work is extended here to the remaining 2 subnuclei, principalis (PrV) and oralis (SpVo), where collaterals from 66 axons in 37 adult rats were studied. In nine rats, three to five axons were stained for within-nucleus comparisons of different fibers. Quantitative analyses were restricted to vibrissa sensitive fibers. 2. All of the axons conducted rapidly with small, low-threshold receptive fields. The majority responded to vibrissa deflection (n = 47); the remainder responded to guard hair deflection; gentle pressure applied to hairy skin, glabrous skin, lingual mucosa, or an incisor; or jaw movement. All descended in the trigeminal sensory root where some bifurcated into ascending and descending branches. Each well-stained fiber gave rise to transversely oriented collaterals in PrV and SpVo. 3. Within PrV and SpVo, fibers with differing adaptation properties and receptive fields had indistinguishable collateral morphologies. Arbors from single axons were rostrocaudally discontinuous, small relative to collaterals in subnuclei interpolaris and caudalis, circumscribed and topographically organized in a manner consistent with cytochrome oxidase and bulk-labeled primary afferent staining patterns. In SpVo and caudal PrV, the map is inverted with the nose pointing medially. In rostral PrV, the map turns 90 degrees such that the nose points dorsally. 4. Axons had different quantitative properties along the rostrocaudal axis of the trigeminal brain stem complex. Whereas arbors subtended similar transverse areas throughout PrV and SpVo, collaterals in the rostral third of PrV had a relatively low bouton density. Arbors in the caudal two thirds of PrV had the highest bouton density. Arbors in SpVo tended to be more variable in size and shape than those of caudal PrV, and their bouton numbers were significantly lower than in PrV. 5. In PrV, arbors were largely confined to somatotopically corresponding cytochrome oxidase patches, precluding significant overlap of neighboring whisker projections. In SpVo, termination sites were not as strictly confined and numerous examples of within- and between-row overlap were obtained for whisker afferents in cases where multiple axons were stained.(ABSTRACT TRUNCATED AT 400 WORDS)

Afferent Pathways↗

The collateral ligament flexion-extension test (CLEFT) in total knee replacement.

We present a simple preoperative clinical test, the collateral ligament extension-flexion test (CLEFT). In patients undergoing total knee arthroplasty, with a preoperative valgus or varus deformity, this test establishes which knees have balanced collateral ligaments. It predicts which knees will not require soft tissue adjustment during the course of their surgery despite, in some cases, large deformities. The mechanism of the test is based on the observation that, in certain patients, a deformity present in extension is seen to correct in flexion. The sensitivity of this observation was checked in 44 consecutive patients undergoing total knee arthroplasty, and who had either a valgus or varus deformity in extension greater than 10 degrees. In 34 patients the test was positive, and none of these required ipsilateral collateral ligament release. All of the 10 patients with a negative test required soft tissue adjustment. In patients undergoing unconstrained total knee arthroplasty this test is reliably predictive of those knees with preoperative deformity which can be corrected simply by correctly aligned bone cuts. It supports the principle of bony resection prior to soft tissue adjustment in this form of surgery.

Biomechanical Phenomena↗

Metabolic recovery in caudate nucleus of children following cerebral hemispherectomy.

In 3 children who had undergone cerebral hemispherectomy (hemidecortication) between the ages of 1 year 5 months and 4 years for the alleviation of intractable epilepsy, cerebral glucose utilization was studied serially with positron emission tomography. Three to 7 months after hemispherectomy, glucose utilization in the caudate nuclei on the side of hemispherectomy had decreased to below preoperative values, presumably due to total deprivation of ipsilateral cortical input. One to 2.5 years after surgery, complete restoration of glucose metabolic activity to preoperative levels was seen in 2 patients and partial recovery was seen in 1 patient. These alterations of cerebral glucose utilization are believed to reflect microscopic anatomical reorganizational changes (e.g., collateral sprouting) that have been documented following similar lesions in several animal models. Our findings suggest that positron emission tomography may provide a sensitive measure of developmental brain plasticity in vivo.

Brain↗

ST monitoring for myocardial ischemia during and after coronary angioplasty.

We performed 12-lead electrocardiographic monitoring in 97 patients during coronary angioplasty (PTCA) of a single vessel to correlate ischemic ST changes with clinical, angiographic and coronary hemodynamic variables and to determine the optimum lead or combination of leads for their detection. Ischemia (chest pain or ST change, group A) occurred in 79 patients (80%), but in only 15 of 23 patients (65%) with collaterals (p less than 0.05). Ischemia occurred more often in left anterior descending and left circumflex PTCA than right coronary PTCA, but pain was the only manifestation more often in left circumflex and right coronary PTCA. Ischemic ST change was silent in 16% and this proportion did not differ in clinical or angiographic groups except for diabetes with 3 of 5 (60%) having silent ischemia (p less than 0.05). Patients in group A (ischemia) compared to group B (no ischemia) had less severe lesions (85 +/- 9 vs 91 +/- 7%, p less than 0.01), higher transstenotic gradients (62 +/- 19 vs 53 +/- 9 mm Hg, p less than 0.05) and lower distal occluded pressures (24 +/- 11 vs 33 +/- 10 mm Hg, p less than 0.01), suggesting less collateral flow. Compared with a 12-lead electrocardiogram, the best single lead for detecting ST change during PTCA in each artery had a sensitivity of 80% and this increased to 93% using the best 2 leads. The best 3 leads (V3/III/V5 for left anterior descending and III/V2/V5 for right coronary and left circumflex) increased sensitivity to 100%.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Experimental ischemic liver injury and regeneration over 3 months: histological observations in the rat.

Liver histopathology of segmental portal ischemia occurring over a long-term period has not been previously described. For these reasons histological changes in the rat liver were studied from 1 h to up to 90 days after a left lateral and middle segmental portal obstruction. Within 3 h, the hepatocytes showed glycogen depletion in Rappaport zones 1 and 2 and pericentral and central lobular congestion of sinusoids and veins, whereas within 3 days, vein thrombosis appeared in the center of the lobule and liver necrosis was observed in Rappaport zones 2 or 3 or both, followed by restitutio ad integrum of the liver lobule morphology after 20-40 days. These results can be explained in light of two conditions occurring in the rat liver: (i) the peculiar low sensitivity of the liver to O2 debit and the protective or vasoactive effects used during hypoxia; and (ii) the sinusoidal network as a collateral source of the hepatic vascular system. Therefore, morphological assessment of this arteriolar and sinusoidal system, implicated in assuring efficient collateral blood supply in the rat liver with portal ischemia, is essential for understanding the mechanisms behind a natural and timely repair of ischemic injuries in the human liver.

Animals↗

[Correlation between results of bicycle stress test and coronaric arteriography. Study of 153 patients (author's transl)].

In 153 patients the results of bicycle stress test were compared with data obtained from coronaric arteriography. There were corresponding results from both tests in most cases. There are other discrepancies which cannot be explained by defining the stress test as "unspecific" or "not very sensitive". In fact, each time, time differences can be referred, besides method limits, to particular physio-pathological stages of the coronaric disease (collateral circulation, Prinzmetal angina) or they can be considered completely independent of the coronaric disease (myocardial disease without coronaric disease, enzymatic defects; haemoglobinic alterations, etc.). The two tests have different indications, but they can also complementary information.

Adolescent↗

[Ulnar parametacarpal flap. Anatomical study and clinical application].

The ulnar border of the hand provides a new skin flap which is very useful in the reconstruction of defects of the palm of the hand and ulnar fingers. An anatomical study of the dorsal carpal branch of the ulnar artery and its various branches has led us to propose the ulnar parametacarpal flap either as a pedicle or free microsurgical transfer. The territory of the dorsal carpal branch of the ulnar artery allows harvesting of a simple sensitive skin flap or a composite flap comprising a bone or tendon island flap. Description of the distal communicating vessels with the ulnar collateral artery of the little finger extends the territory of the ulnar parametacarpal flap; based on a retrograde blood supply, it can reach the dorsal and palmar surfaces of the ulnar fingers. The authors present several clinical applications and define the place of this new flap among the various treatment options for the hand.

Hand↗

Characterization of a lipophilic antifolate resistance provoked by treatment of mammalian cells with the antiparasitic agent pyrimethamine.

We describe the characterization of an antitumor drug resistance following multiple step selection of hamster cells to the 2,4-diaminopyrimidines (DAP) metoprine, pyrimethamine (Pyr), and trimethoprim (Tmp). Pyr and Tmp are DAP lipophilic antifolates currently used as antiparasitic and antibacterial antibiotics, respectively. Dihydrofolate reductase (DHFR) from hamster cells bore a low or poor affinity to these DAP as compared to the hydrophilic folate antagonist methotrexate (MTX). Metoprine-resistant cells over-expressed DHFR enzyme and consequently displayed a high level of resistance to both hydrophilic and lipophilic antifolates including DAP but maintained wild type sensitivity to pleiotropic drugs involved in multi-drug resistance (MDR). In contrast, although Pyr- and Tmp-resistant cells expressed parental levels of wild type DHFR, they displayed a high degree of resistance to DAP and, surprisingly, to the lipophilic MTX analogs piritrexim (PTX) and trimetrexate (TMTX), while maintaining sensitivity to MTX. These drug-resistant cells maintained wild type mRNA levels of the MDR gene product P-glycoprotein and showed collateral hypersensitivity to pleiotropic drugs. To study the underlying mechanism of this apparently new resistance phenotype, we have employed fluorescein-methotrexate (F-MTX) labeling of cells and its displacement by different antifolates. Parental AA8 and Pyr-resistant cells showed a similar level of F-MTX labeling, however, while DAP, TMTX, and PTX showed an efficient competitive displacement of F-MTX from AA8 cells, Pyr-resistant cells displayed a persistent retention of F-MTX labeling in the presence of high concentrations of these lipophilic antifolates. Pyr-resistant cells showed a wild type displacement of F-MTX with MTX. This DAP resistance phenotype was unstable as it was rapidly lost upon growth under nonselective conditions. Furthermore, when the antifolate resistance levels of Pyr-resistant cells were plotted versus the ratios of the 50% F-MTX displacement values obtained with resistant and parental AA8 cells, a good correlation (r2 > 0.98) was obtained. We conclude that Pyr-resistant cells possess a novel phenotype that derives its resistance to lipophilic antifolates solely from a predominant decrease in the accumulation of DAP and lipid-soluble analogs of MTX.

Animals↗

How to use information from echocardiography and magnetic resonance for diagnosing myocardial viability.

The identification of viable myocardium in patients with coronary artery disease with or without a history of myocardial infarction and regions of akinesia is of great clinical importance. Viable myocardium which is underperfused due to severe atherosclerotic disease in the feeding vessel needs to be revascularized both to ameliorate symptoms and improved prognosis. In contrast, scarred myocardium should not be revascularized and medical therapy for heart failure should be instituted. Due to the complexity of the problem, which requires information about wall motion and coronary artery anatomy, viability tests are usually requested after the results of left heart catheterization with coronary angiography are known. Often cardiac catheterization itself already provides important clues to the presence of viable myocardium: the degree of wall motion abnormality, post-extrasystolic improvement of wall motion, the presence of angina in a patient with single-vessel disease and the presence of collaterals, are all associated with viability. Echocardiography has become a strong competitor to myocardial perfusion studies in assessing myocardial viability. Published figures for sensitivity and specificity parallel those of scintigraphic techniques and even positron emission tomography scans. However, there are insufficient data on the use of echocardiography in patients with severely depressed left ventricular function. A new and exciting technique to detect viable myocardium is magnetic resonance imaging, which has been shown to have similar diagnostic accuracy as FDG-PET.

Cardiac Catheterization↗

The effects of D-alpha-aminoadipic acid on long-term potentiation in the hippocampus of the rat in vitro.

Many studies on long-term potentiation (LTP) in hippocampal region CA1 focus on receptor-mediated events that are often presumed to be linked to postsynaptic processes. Whereas it is now well-known that LTP consists of multiple components involving increases in postsynaptic responsiveness as well as enhanced presynaptic release of transmitter, little specific information has accrued on the nature of the presynaptic receptor-linked events. In the course of a series of experiments examining the actions of several antagonists of N-methyl-D-aspartate (NMDA) receptors on LTP, we made certain observations that suggested the role of a novel type of amino acid receptor which possibly was located presynaptically and that seemed to contribute to the induction of LTP. LTP evoked in region CA1 following high frequency stimulation (HFS) of the Schaffer collateral-commissural pathway measured 20-30 min after HFS always was attenuated incompletely when induced during administration of DalphaAA at doses ranging from 50 mu M to as high as 1000 mu M, whereas 2-amino-5-phosphonopropionate (AP5), at a concentration of 30 mu M, always abolished the process completely. 6,7-Dinitroquinoxaline-2,3-dione (DNQX) (10 mu M) administered alone also did not block LTP completely unless delivered in combination with DalphaAA. These non-AP5-like effects of DalphaAA could not be attributed to incomplete antagonism of postsynaptic NMDA receptors, since DalphaAA (200 mu M) completely and reversibly blocked the membrane depolarising effects of NMDA, as assessed through intracellular recording. Furthermore, the pharmacologically isolated NMDA-receptor-mediated component of the low-frequency, stimulus-evoked synaptic response was always abolished reversibly by DalphaAA (200 mu M). The most parsimonious explanation of these data is that a receptor which is only activated during HFS, is sensitive to the antagonising actions of AP5 and possibly also to DNQX but not to DalphaAA, and which could conceivably exist on terminals of the Schaffer collateral-commissural fibres, makes a significant contribution to LTP.

2-Amino-5-phosphonovalerate↗

Transient protein kinase C activation primes long-term depression and suppresses long-term potentiation of synaptic transmission in hippocampus.

Activity-dependent long-lasting plasticity in hippocampus and neocortex includes long-term potentiation (LTP) and long-term depression (LTD) of synaptic strength. Recent studies have confirmed theoretical predictions that the sensitivity of LTP- and LTD-inducing mechanisms is dynamically regulated by previous synaptic history. In particular, prior induction of either repeated short-term potentiations or LTP lowers the threshold for induction of LTD and raises the threshold for LTP. In the current study, transient activation of protein kinase C with phorbol 12,13-diacetate was able to substitute for synaptic activity in priming synapses to exhibit enhanced homosynaptic LTD and to suppress the induction of LTP at Schaffer collateral synapses in area CA1 of hippocampal slices. This priming lasted 30 min, but not 3 hr, following phorbol 12,13-diacetate bath application. These data suggest that a protein kinase C-sensitive phosphorylation site may be an activity-sensitive target mediating the rapid expression of LTP and LTD.

Animals↗

Ophthalmic artery flow direction on color flow duplex imaging is highly specific for severe carotid stenosis.

BACKGROUND/PURPOSE: Collateral flow patterns are important risk factors for brain ischemia in the presence of internal carotid artery (ICA) stenosis or occlusion. Ophthalmic artery (OA) flow reversal, routinely studied by transcranial Doppler sonography, is an important marker for high-grade ICA stenosis or occlusion. The authors sought to define the value of assessing OA flow direction with color flow duplex ultrasonography (CDUS) in the setting of significant ICA disease. METHODS: Of all patients having routine carotid ultrasound in the neurosonology laboratory between July 1995 and November 2000, 152 had both carotid and orbital (OA flow direction by reduced power orbital CDUS) examinations as well as angiographic confirmation of stenosis to which North American Symptomatic Carotid Endarterectomy Trial criteria could be applied. Degree of angiographic stenosis in these 152 patients (304 arteries) was correlated with OA flow direction. RESULTS: Of 304 arteries, 101 had greater than 80% stenosis by angiogram. In 56 of these 101 arteries with high-grade stenosis or occlusion, the ipsilateral OA was reversed; however, OA flow direction was never reversed ipsilateral to arteries with less than 80% stenosis (sensitivity 55%, specificity 100%, negative predictive value 82%, and positive predictive value 100% for OA flow reversal as a marker of high-grade carotid lesions). DISCUSSION/CONCLUSIONS: OA flow direction is easily studied with CDUS. Reversed OA flow direction is highly specific (100%) for severe ipsilateral ICA stenosis or occlusion, with excellent positive predictive value, moderate negative predictive value, and limited sensitivity. OA flow reversal is not only quite specific for severe ICA disease, which may be helpful if the carotid CDUS is difficult or inadequate, but may also provide additional hemodynamic insights (i.e., the inadequacy of other collateral channels such as the anterior communicating artery). OA evaluation can provide important hemodynamic information and should be included as part of carotid CDUS if there is any evidence of ICA stenosis or occlusion.

Blood Flow Velocity↗

Exercise-induced U-wave alterations as a marker of well-developed and well-functioning collateral vessels in patients with effort angina.

OBJECTIVES: We sought to determine whether exercise-induced U-wave alterations are observed in association with well-developed and well-functioning collateral vessels. BACKGROUND: Although exercise-induced electrocardiographic (ECG) U-wave alterations including negative and prominent U waves have been established as a marker of significant or critical narrowing of a major coronary artery, the relation between this finding and the degree of collateral development has not yet been determined. METHODS: Patients with stable effort angina were divided into two groups according to the presence (group A, n = 46) or absence (group B, n = 79) of exercise-induced either negative or prominent U waves in the precordial leads; the clinical profiles, coronary angiographic findings and also ischemic status during 60 s of coronary balloon occlusion were compared between the two groups. RESULTS: The incidence of severe angina (CCS [Canadian Cardiovascular Society] class III or IV) was higher (p < 0.05) in group A (52%) than in group B (32%) patients. Good collateral vessels (Rentrop grade 2 or 3) into the perfusion territory of the culprit vessel were observed more frequently (p < 0.05) in group A (70%) than in group B (43%) patients. Coronary balloon angioplasty was carried out in 23 patients of group A and 40 patients of group B. Both ischemic ST changes (52% vs. 85%) and angina (57% vs. 80%) during balloon inflation were less (p < 0.05) frequently observed in group A than in group B. The incidence of no apparent myocardial ischemia with ST deviation or angina during the balloon inflation was higher (p < 0.05) in group A (39%) than in group B (10%) patients. In the prediction of the absence of myocardial ischemia during balloon inflation by the presence of exercise-induced U-wave alterations, the sensitivity was 69% (9/13) and the specificity was 72% (36/50) in the study patients. CONCLUSIONS: Exercise-induced U-wave alterations are a marker for well-developed collateral circulation in patients with stable but severe effort angina. This finding is also highly predictive of the absence of myocardial ischemia during transient coronary balloon occlusion and possibly of low-risk for development of acute myocardial infarction or hemodynamic instability upon abrupt closure of the culprit coronary artery.

Angina Pectoris↗

Dynamic spin labeling angiography in extracranial carotid artery stenosis.

BACKGROUND AND PURPOSE: Similar to digital subtraction angiography, dynamic spin labeling angiography (DSLA) provides time-resolved measurements of the influx of blood into the cerebral vascular tree. We determined whether DSLA may help in assessing the degree of stenosis and whether it provides information about intracerebral collateralization and allows us to monitor the hemodynamic effects of vascular interventions. METHODS: We developed a segmented DSLA sequence that allowed the formation of images representing inflow delays in 41-ms increments. Thirty patients with unilateral carotid artery stenosis and 10 control subjects underwent DSLA. Arrival times of the labeled arterial blood bolus were measured in the carotid siphon (CS) and the middle cerebral artery (MCA) on both sides, and the corresponding side-to-side arrival time differences (ATDs) were calculated. ATDs before and after carotid endarterectomy or percutaneous angioplasty were studied in 10 patients. RESULTS: The degree of stenosis was significantly correlated with ATD in the cerebral vessels. Receiver operating characteristic analysis yielded a cutoff CS ATD of 110 ms to separate stenoses <70% from those > or =70%, with a sensitivity of 90% and a specificity of 67%. In one third of patients, ATD was higher in the MCA than in the CS; this finding suggested an absence of collateralization. Most patients had reduced ATD in the MCA. The degree of ATD reduction was regarded as a quantitative measure of collateralization. Successful intervention resulted in normalized ATDs. CONCLUSION: DSLA is a promising method that allowed us to noninvasively quantify the hemodynamic effect of extracranial carotid stenosis and the resulting intracranial collateralization.

Aged↗