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M Czeredarczuk

Publications and source records attributed to M Czeredarczuk.

5 recordsLinked to original sources

A correlation of air plethysmography and color-flow-assisted duplex scanning in the quantification of chronic venous insufficiency.

PURPOSE: Air plethysmography has been useful in assessing patients who have chronic venous insufficiency. Limb reflux times determined by color-flow-assisted duplex scanning have been shown to correlate with the severity of chronic venous insufficiency. The purpose of this study was to compare air plethysmographic measurements with reflux times obtained by color-flow-assisted duplex scanning in patients with chronic venous insufficiency. METHODS: One hundred twenty-two limbs in 61 consecutive patients with various stages of chronic venous insufficiency were evaluated; air plethysmographic and color-flow-assisted duplex scans were performed at the same sitting. Fifty-nine of the patients had venous ulceration. Values obtained by air plethysmographic scans included venous filling index, ejection volume, residual volume, ejection fraction, and residual volume fraction. Color-flow-assisted duplex scan values included reflux times in the deep and superficial venous segments and total and mean limb reflux times. RESULTS: Using the Pearson correlation, the venous filling index was found to correlate significantly with total limb venous reflux times, mean total limb reflux times, and venous reflux times in the deep venous system, as determined by color-flow-assisted duplex scans (p < 0.001). CONCLUSIONS: Limb reflux time as determined by color-flow-assisted duplex scans correlated significantly with the air plethysmographic variable accepted as a measure of the severity of venous reflux, the venous filling index. This study confirms the validity of total limb reflux times in the quantification of chronic venous insufficiency.

Adult↗

Examination of carotid arteries with quantitative color Doppler flow imaging.

The results of conventional duplex scanning were compared with QCDFI. A total of 224 consecutive patients comprising 442 unilateral carotid systems were examined by conventional duplex techniques. MPSV, as determined by QCDFI, were recorded for each of the 442 carotid segments and grouped according to the previously determined degrees of stenosis. The predictive value of QCDFI was confirmed by angiography with an overall accuracy of 91%. Results obtained by duplex scanning correlated with angiography 89% of the time. Based on QCDFI data, a scale to grade carotid stenosis was developed.

Aged↗

Distribution and quantification of venous reflux in lower extremity chronic venous stasis disease with duplex scanning.

PURPOSE: The purpose of this study was to use color-flow duplex scanning to identify the anatomic distribution of venous reflux and to quantify venous reflux times in patients with various stages of chronic venous insufficiency (CVI). METHODS: Color-flow-assisted duplex scanning was used to identify the anatomic distribution of venous reflux and to quantify reflux times in the deep and superficial venous systems of patients with symptomatic (CVI). Two hundred two patients with class I to III CVI were examined. RESULTS: Only 11% (22 patients) had a documented history of phlebothrombosis. Of the 403 limbs evaluated, 192 had venous ulcers whereas 211 were classified as having class I or II CVI. Nonocclusive venous obstruction was found in only 16 limbs (4%). Venous ulceration was significantly associated with reflux in multiple venous segments as opposed to reflux in isolated venous segments (p < 0.001). Total limb reflux time (Rt) was determined by summing the reflux times of all the venous segments in a limb. The mean Rt of patients with venous ulcerations was significantly longer than the mean Rt of limbs with class I and II CVI (p < 0.01). A total limb reflux time of greater than 9.66 seconds was predictive of ulceration. Total limb deep segment reflux time and total limb superficial segment reflux time were also determined by summing the reflux times of the appropriate segments in the limb. The mean deep segment reflux time was prolonged in limbs with venous ulcers when compared with limbs with class I and II CVI disease. The mean superficial segment reflux time of limbs with class I and II CVI and limbs with venous ulcers could not be used to distinguish between the two groups. In assessing the contribution of segments of the deep system to ulceration, reflux times of different segments were compared with wound duration and area. Reflux in the common femoral vein was significantly associated with wound area and duration (p < 0.05) whereas reflux time in the distal posterior tibial vein was associated with wound duration (p < 0.05).

Adult↗

Venous duplex imaging: should it replace hemodynamic tests for deep venous thrombosis?

Noninvasive diagnosis of deep venous thrombosis has traditionally relied on detection of alterations in venous hemodynamics. Although phleborheography is among the most sensitive tests, it is inadequate for diagnosing infrapopliteal and nonocclusive proximal thrombi and for surveillance of patients at high risk for deep venous thrombosis. Venous duplex imaging is a new technique being rapidly accepted, however, without the same critical analysis given to previous diagnostic modalities. The purpose of this study is to evaluate the diagnostic acumen of venous duplex imaging compared to phleborheography and ascending phlebography in two distinct patient groups, and to determine whether patient selection, and thus the location or magnitude of thrombi have significant influence on these diagnostic tests. One hundred ten extremities in 103 patients were prospectively evaluated with venous duplex imaging, phleborheography, and ascending phlebography within the same 24-hour period. Patients were categorized into one of two groups: Diagnostic--patients evaluated because of clinical suspicion of acute deep venous thrombosis; and Surveillance--patients at high risk of postoperative deep venous thrombosis after total joint replacement, but not symptomatic. Patients in the diagnostic group had a greater frequency of deep venous thrombosis (p less than 0.001) and significantly more occluding above-knee thrombi (p = 0.054) compared to those in the surveillance group. Phleborheography detected 73% (27/37) of above-knee thrombi in the diagnostic group compared to 29% (2/7) in the surveillance group (p = 0.036). This difference was not noted with venous duplex imaging, which detected 100% of above-knee thrombi in both diagnostic and surveillance groups and 78% (7/9) of all below-knee thrombi.(ABSTRACT TRUNCATED AT 250 WORDS)

Humans↗

The comparative value of noninvasive testing for diagnosis and surveillance of deep vein thrombosis.

This is a prospective analysis of 351 patients in two distinct groups undergoing ascending phlebography, impedance plethysmography (IPG), and/or phleborheography (PRG) within the same 24-hour period. One hundred twenty patients also had a 125I-fibrinogen uptake test (RFUT). The two patient groups consisted of the following: those patients evaluated because of suspicion of deep vein thrombosis (DVT) (diagnostic) and those patients at high risk for postoperative DVT (total joint replacement) who had routine noninvasive testing and ascending phlebography (surveillance). The overall sensitivities for IPG and PRG were significantly better in the diagnosis group (71% [69 of 97 patients] and 78% [82 of 105], respectively) compared with the surveillance group (20% [14 of 71] and 27% [17 of 63], respectively) (p less than 0.0001). The sensitivities for IPG and PRG detecting proximal (A/K) thrombi was 83% (68 of 82 patients) and 92% (79 of 86) in the diagnosis group compared with 32% (11 of 34) and 33% (9 of 27) in the surveillance group (p less than 0.0001). Although there was no difference in overall incidence of DVT between the diagnosis group (56%, 118 of 212 patients) and the surveillance group (55%, 76 of 139), the results can be explained by the difference in A/K thrombi (84% [99 of 118] and 47% [36 of 76]) (p less than 0.001) and occlusive A/K thrombi (84% [58 of 69] and 23% [7 of 31]) (p less than 0.0001), respectively. Of the patients with A/K thrombi, 97% (67 of 69) in the diagnosis group had hemodynamically detectable thrombi compared with only 48% (12 of 25) in the surveillance group (p less than 0.001). Combining the RFUT with the noninvasive studies for surveillance significantly improved the sensitivity for both A/K and distal thrombi. Patient selection also appears to have a significant influence on the results of the combination of IPG and RFUT when the current surveillance group is compared with similarly performed studies in a previously reported diagnosis group. The location and magnitude of thrombi in any patient population can be skewed depending on indications and timing of testing, thereby significantly affecting the sensitivity of noninvasive tests. IPG and PRG are reliable for evaluating patients with suspected DVT. However, patients with postoperative DVT have a high incidence of nonocclusive thrombi. Because noninvasive hemodynamic tests cannot identify accurately postoperative DVT, they cannot be used to generate epidemiologic data or as end points for studies evaluating efficacy of prophylaxis in patients undergoing total joint replacement, and anatomic studies of the deep venous system continue to be required.

Fibrinogen↗