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Tissue adaptation to physical stress: a proposed "Physical Stress Theory" to guide physical therapist practice, education, and research.

The purpose of this perspective is to present a general theory--the Physical Stress Theory (PST). The basic premise of the PST is that changes in the relative level of physical stress cause a predictable adaptive response in all biological tissue. Specific thresholds define the upper and lower stress levels for each characteristic tissue response. Qualitatively, the 5 tissue responses to physical stress are decreased stress tolerance (eg, atrophy), maintenance, increased stress tolerance (eg, hypertrophy), injury, and death. Fundamental principles of tissue adaptation to physical stress are described that, in the authors' opinion, can be used to help guide physical therapy practice, education, and research. The description of fundamental principles is followed by a review of selected literature describing adaptation to physical stress for each of the 4 main organ systems described in the Guide to Physical Therapist Practice (ie, cardiovascular/pulmonary, integumentary, musculoskeletal, neuromuscular). Limitations and implications of the PST for practice, research, and education are presented.

Adaptation, Physiological↗

[Three-dimensional finite element analysis of stress in supporting bone of mandibular posterior fixed bridge. II. Stress distribution of the cortical bone beneath pontic of fixed bridge].

OBJECTIVE: Stress distribution of the cortical bone beneath the pontic of the fixed bridge was observed. METHODS: The three-dimensional finite element model was developed. 6 loadings were applied respectively and the Maximum Stress (epsilon max) and the Minimum Stress(epsilon min) of the cortical bone beneath the pontic of the fixed bridge were calculated. RESULTS: The stress values were very small before the bridge was inserted. After the bridge was inserted the stress increased, but the stress level in the cortical bone was much lower than that in the alveolar bone. The stress values of the cortical bone were only 9.5% (vertical loading) and 2.2% (horizontal loading) of the alveolar bone's. CONCLUSION: The stress value of the cortical bone beneath the pontic was very small. The load was born mainly by supporting tissue around the bridge abutment.

Alveolar Process↗

[Professional stress and blood pressure reactivity to stress do not predict blood pressure at 5 years].

High job strain has been reported to be associated with higher blood pressure. Job strain could lead to hypertension if individual perception of stress or cardiovascular reactivity to stress are high. We report the results of the first five-year follow up study, which aimed to assess the respective influences of perception of professional strain and cardiovascular reactivity to a mental stress test on BP. A cohort of 292 healthy subjects (mean +/- SEM, 38 +/- 1 years) was followed for progression to hypertension outcome which was defined as an increase in SBP or DBP higher than 7 mmHg or a DBP higher than 95 mmHg during the follow-up. The high strain (HS) group representing 20.9% of the subjects was compared with the remaining subjects (NHS). Similarly the 20.9% subjects with the highest BP stress reactivity (HR) were compared with the remaining subjects (NHR). The Kaplan-Meier survival estimates revealed that neither high job strain, nor high stress reactivity, increased incidence of progression to hypertension. Age, alcohol, salt diet, BMI, and occupation did not interfere with our results. In conclusion, high stress cardiovascular reactivity and high job strain do not appear to be major risk markers for future high BP in healthy young adults. Stress could be associated with high BP at a short term and could explain high blood pressure in a long run only in stress-sensible subjects.

Adolescent↗

Why is life stress ignored in studies of 'stress' and athletic performance?

Investigations of relationships between stress and athletic performance and stress and outcomes outside of sport psychology have a parallel evolution. Each area has advanced from early attempts to find simple, strong relationships to current strategies for evaluating the influences of individual differences and situational factors on more elusive relationships. However, the most common conceptualizations of stress are very different in research on sport psychology and stress, and most studies of stress and athletic performance do not involve the influences of stress outside athletics. We propose that the approaches used by sports psychologists and stress researchers could be combined to evaluate more fully the relationships between stress and athletic performance.

Achievement↗

[The adaptive reactions in hemopoietic system of the irradiated mice of two lines, differing in the level of emotionally-stress reactions on the emotional stress].

On lines of the mice genetically differing on the sensitivity on emotional stress (steady--of the mouse of the line C57BL/6 or sensitive--of the mouse of the line BALB/c), the research of the development of the adaptive reactions in the system of the blood on the emotional stress influencing animals on the background of the preliminary irradiation in a low dose (0.9 Gy) is carried out. The unirradiated mice of the line C57BL/6 adequately reacted on the stress, that was shown in a moderate behavioural reaction during the period of stress, and the development of high-grade adaptive reactions in the hemopoietic system. Among the mice of the line C57BL/6 in conditions of the combined influence of ionizing radiation and of the emotional stress was not revealed of the infringements of the adaptive reactions of the hemogenesis. As opposed to these data, among unirradiated mice of the line BALB/c the sharply expressed behavioural reactions during the stress were marked, that was accompanied by incomplete development of the adaptive reactions in the system of a blood on the stress. Under the influence of stress on the previously irradiated animal line BALB/c was observed the inhibition of the medullar hemopoiesis.

Adaptation, Physiological↗

[Inflammatoin, oxidative stress and carbonyl stress in uremic patients].

OBJECTIVE: To evaluate the states of inflammation, oxidative stress and carbonyl stress in uremic patients and analyze their relationships. METHODS: One hundred and twenty-eight cases were divided into 6 groups: non-dialysis uremia group (n=25), peritoneal dialysis group (n=19), hemophan(Hem) membrane dialysis group (n=25), polyamide (PS) membrane dialysis group (n=25), diabetes with normal renal function group (n= 23) and normal control group (n=11). Spectrophotometry and immune turbidimetry were used to measure the serum SOD, VitC, VitE, MDA and total carbonyl compounds (TCC) levels. RESULTS: Compared with non-uremia groups, the uremia groups had lower serum SOD, VitE and VitC levels, but higher CRP, MDA and TCC levels (P < 0.01). The peritoneal dialysis group had higher SOD, VitC, VitE levels in comparison with the Hem group, but did not differ from PS group in those levels (P > 0.05). The MDA and TCC levels in the peritoneal dialysis group were lower than those in the two hemodialysis groups, but there were no significant differences in CRP level between the groups. Compared with Hem group, the PS group had higher VitC, VitE levels, higher TCC clearance, and the same SOD, MDA, CRP and pre-dialysis TCC levels. When the variables were analyzed with TCC, the results of multi-variate regression showed that the standardized coefficients were MDA (0.727, P < 0.01), CRP (0.370, P < 0.01), SOD (0.192, P < 0.05), VitC (-0.153, P < 0.01), VitE (0.054, P = 0.30) respectively. CONCLUSION: Uremic patients are in inflammatory, oxidative-stress and carbonyl-stress states. Inflammation and oxidative stress are probably the important mechanism of carbonyl stress. It is not yet clear whether dialysis methods can influence uremic inflammatory, oxidative-stress or carbonyl-stress state.

Adult↗

Chronic stress, aging and morphine analgesia: chronic stress affects the reactivity to morphine in young mature but not old rats.

The effect of chronic stress on analgesic responsiveness to morphine was studied in mature rats of different ages. Chronic stress consisted of eighteen 10-sec exposures (three/min) in 2 degrees C water for 54 consecutive days. From day 20, at 4-day intervals, the rats were not stressed but instead given i.p. injections of, sequentially: 10, 0 (saline), 5, (2 mg/kg of naltrexone) + 10, 2.5, 1, 20 and 10 mg/kg of morphine sulfate. On these days, tail-flick latencies were measured before and 5, 10, 15, 30, 60, 120 and 180 min after morphine injection. The responsiveness to morphine was significantly altered by exposure to chronic stress in young, mature rats (4 months) as compared to control rats. A dose of 10 mg/kg of morphine induced a diphasic response. Initial increased tail-flick reflexes (at 5 min after injection) were followed by slight but nonsignificant decreased responses to the tail-flick test. At 30 min, the dose-response curve was shifted to the right. No alteration of the response to morphine was observed in older rats (15-17 months) exposed to chronic stress, unless they had been submitted to chronic stress at 4 months of age. In addition, the response after a second exposure to chronic stress to morphine was highly dependent on, and similar to, the age-dependent response after a first exposure. These results demonstrate that the endogenous opiate system can be altered by exposure to chronic stress even after maturation has occurred and that this alteration has long-term effects on the reactivity to morphine.

Age Factors↗

Genome-wide identification and analysis of paclobutrazol-resistance gene family in cotton and the positive role of GhPRE3 in salt stress and drought stress resistance.

Compared with other transcription factors, much less studies have been performed on paclobutrazol-resistance (PRE), a subgroup of the extensive bHLH transcription factor gene family, and the research in cotton was also limited. By utilizing the PRE genes and their conserved domains identified in Arabidopsis, a total of 23, 22, 11, and 12 PRE genes were identified from two major cultivated cotton species and their two ancestors, respectively. The cotton PRE gene family was categorized into three subgroups based on evolutionary tree analysis. Motif and intron analyses indicated that the PRE gene has remained highly conserved throughout evolution. Collinearity analysis indicated that gene duplication, particularly through fragment replication, has significantly contributed to the expansion of the cotton PRE family. An exploration of the conserved elements within the PRE gene family uncovered numerous elements associated with plant stress resistance. Additionally, cotton transcriptome and qRT-PCR analysis showed that PRE genes were associated with a variety of abiotic stresses, including salt, drought, and cold treatments. Subcellular localization experiments indicated that the GhPRE3 gene is associated with membrane proteins. Finally, we selected the GhPRE3 gene for a VIGS experiment, which revealed that under salt stress and drought stress conditions, the wilting of leaves in the GhPRE3-silenced plants was significantly more severe than that observed in the control group, with T-AOC levels notably lower and MDA levels significantly higher. Overexpression of GhPRE3 enhanced seed germination and root development in transgenic Arabidopsis thaliana under salt stress and drought stresses. This suggests that GhPRE3 plays a positive regulatory role in cotton tolerance to salt and drought stressed, providing a reference for molecular genetic breeding of cotton with salt and drought tolerance.

Gossypium↗

Mutations in WSC genes for putative stress receptors result in sensitivity to multiple stress conditions and impairment of Rlm1-dependent gene expression in Saccharomyces cerevisiae.

Intracellular signaling by mitogen-activated protein (MAP) kinase cascades plays an essential role in the cellular response to environmental stress. In the yeast Saccharomyces cerevisiae, the PKC1-regulated, stress-activated MAP kinase pathway, the MPK1 cascade, is activated by heat and by a decrease in osmolarity. The genes WSC1, WSC2 and WSC3 encode putative receptors that maintain cell wall integrity under conditions of heat stress. Genetic studies place the function of the WSC genes upstream of the MPK1 kinase cascade. To further define the role of the WSC family in the stress response we determined whether: (1) the wscdelta mutants are sensitive to other environmental stress conditions, in addition to heat shock; (2) expression from four transcriptional control elements, known to be activated by stress, is impaired in wscdelta mutants; and (3) Wsc4, a Wsc homolog, has functions that overlap with those of the other Wsc family members. We report here that deletion of WSC and PKC1 causes hypersensitivity to ethanol, hydrogen peroxide and DNA-damaging drugs. In wscdelta mutants expression of beta-galactosidase from the AP-1 response element (ARE), the heat shock response element (HSE) or the stress response element (STRE) is not reduced. In contrast, expression of a reporter gene placed under the control of the Rlm1 (transcription factor)-dependent response element is significantly reduced in wscdelta mutants. This suggests that the lysis defect of wscdelta mutants is at least in part caused by a defect in transcriptional regulation by Rlm1. Phenotypic analysis of the effect of deleting WSC4 in a wsc1delta mutant show that, unlike WSC2 or WSC3, deletion of WSC4 does not exacerbate the lysis defect of a wsc1delta strain. In contrast, deletion of WSC4 enhances the sensitivity of the wsc1delta mutant to heat shock, ethanol, and a DNA-damaging drug, suggesting that WSC4 plays a role in the response to environmental stress but that its function may differ from those of the other WSC family members.

Ethanol↗

Cold-stress-induced modulation of antioxidant defence: role of stressed conditions in tissue injury followed by protein oxidation and lipid peroxidation.

The aim of this study was to determine the effects of cold stress on antioxidant enzyme activities and examine protein oxidation and lipid peroxidation in various tissues (brain, liver, kidney, heart and stomach). Twenty male Wistar rats (3 months old) weighing 220 +/- 20 g were used. The rats were randomly divided into two groups of ten: the control group and the cold stress group. Cold stress was applied to the animals by maintaining them in a cold room (5 degrees C) for 15 min/day for 15 days. Blood samples were taken for measuring plasma corticosterone levels. Tissues were obtained from each rat for measuring the antioxidant enzyme activities, protein oxidation and lipid peroxidation. Corticosterone levels were increased in the cold stress group. Copper, zinc superoxide dismutase activities were increased in the brains, livers and kidneys, whereas they decreased in the hearts and stomachs of rats in the cold stress group. Catalase activities were increased in the brains, livers, kidneys and hearts, whereas they decreased in the stomachs of rats in the cold stress group. Selenium-dependent glutathione peroxidase activities were increased in the brain, liver, heart and stomach. Reduced glutathione levels were decreased, while levels of protein carbonyl, conjugated diene and thiobarbituric-acid-reactive substances were increased in all tissues of the cold stress group. These results lead us to conclude that cold stress can disrupt the balance in an oxidant/antioxidant system and cause oxidative damage to several tissues by altering the enzymatic and non-enzymatic antioxidant status, protein oxidation and lipid peroxidation.

Adaptation, Physiological↗

The heat stress transcription factor HsfA2 serves as a regulatory amplifier of a subset of genes in the heat stress response in Arabidopsis.

Within the Arabidopsis family of 21 heat stress transcription factors (Hsfs) HsfA2 is the strongest expressed member under heat stress (hs) conditions. Irrespective of the tissue, HsfA2 accumulates under heat stress similarly to other heat stress proteins (Hsps). A SALK T-DNA insertion line with a complete HsfA2-knockout was analyzed with respect to the changes in the transcriptome under heat stress conditions. Ascorbate peroxidase 2 (APX2) was identified as the most affected transcript in addition to several sHsps, individual members of the Hsp70 and Hsp100 family, as well as many transcripts of genes with yet unknown functions. For functional validation, the transcription activation potential of HsfA2 on GUS reporter constructs containing 1 kb upstream promoter sequences of selected target genes were analyzed using transient reporter assays in mesophyll protoplasts. By deletion analysis the promoter region of the strongest affected target gene APX2 was functionally mapped in detail to verify potential HsfA2 binding sites. By electrophoretic mobility shift assays we identified TATA-Box proximal clusters of heat stress elements (HSE) in the promoters of selected target genes as potential HsfA2 binding sites. The results presented here demonstrate that the expression of HsfA2 in Arabidopsis is strictly heat stress-dependent and this transcription factor represents a regulator of a subset of stress response genes in Arabidopsis.

Arabidopsis↗

Prenatal stress potentiates stress-induced behavior and reduces the propensity to play in juvenile rats.

We examined the hypothesis that prenatal stress potentiates defensive responsiveness which may interfere with the expression of appetitive behavioral activities. Sibling pairs of prenatally stressed and control juvenile rats were placed in an unfamiliar environment. The latency and frequency of social play, a sought-after activity of juvenile rats, were measured on 4 successive days beginning at 25 days of age. However, on Day 27, electric foot shock was administered in order to assess directly whether exposure to threat facilitates the occurrence of defensive behavior in prenatally stressed rats. In addition, to determine whether previous exposure to threat produces long-term suppressive effects on play, rats were retested on Day 28 in the absence of shock. Throughout the testing period, the latency to play, as indicated by one rat pouncing on the opponent, was significantly higher in prenatally stressed than control rats. The frequency of play, however, did not differ reliably between groups. These data suggest that prenatally stressed rats take longer to adapt to the test situation before initiating play than control rats. In both groups, exposure to shock on Day 27 significantly increased the latency to play. More importantly, prenatally stressed rats exhibited significantly higher durations of defensive freezing than control animals. When retested on Day 28, however, the duration of freezing declined significantly and no longer differed between groups. Data appear to support the hypothesis that prenatally stressed juvenile rats are responsive to stress which may modulate the inclination to exhibit social behavior.

Adrenocorticotropic Hormone↗

End-systolic regional wall stress-length and stress-shortening relations in an experimental model of normal, ischemic and reperfused myocardium.

Assessment of left ventricular function is influenced by a number of hemodynamic factors. The purpose of this study was to evaluate the end-systolic regional wall stress-dimension relation in a series of 25 mongrel dogs. In Group A (n = 18) the regional wall stress-velocity of circumferential fiber shortening relation was measured before and after three interventions: volume infusion, metoprolol infusion and dobutamine infusion. The electrocardiogram, left ventricular pressure and its first derivative (dP/dt), arterial pressure and echocardiograms were recorded at baseline and after phenylephrine administration (to increase afterload). For each dog values for regional wall stress were plotted against the velocity of circumferential fiber shortening. For all dogs the relations were inversely linear (r = -0.65 to -0.98). Volume infusion increased end-diastolic volume (p less than 0.05) without shifting the slope or intercept of the relation, indicating its independence from preload. Dobutamine caused a shift in the intercept to the right but no change in slope and metoprolol shifted the relation to the left without altering the slope. The effect of ischemia and reperfusion on the end-systolic regional wall stress-length relation was examined in Group B (n = 7), at baseline, after 5 min of mid-left anterior descending coronary artery occlusion and after 10 min of reperfusion. Afterload was increased by hydraulic aortic occlusion. Regional wall stress was lowest at baseline, highest during ischemia and intermediate after reperfusion (100.2 +/- 32.1, 193.5 +/- 81.5, 141.9 +/- 67.6 kdyn/cm2, respectively, p less than 0.001). The end-systolic regional wall stress-length relation was linear during baseline, ischemia and reperfusion (r = 0.96, 0.95, 0.98, respectively, p less than 0.05). Ischemia caused an increase in the slope and a shift in the intercept to the right compared with baseline. Reperfusion represented an incomplete return toward baseline. This study demonstrates that the regional wall stress-velocity of circumferential fiber shortening relation is linear, independent of preload, incorporates afterload and is sensitive to changes in contractility. In addition, the regional wall stress-length relation can be measured in a nonhomogeneously contracting left ventricle and is predictably altered by ischemia and reperfusion. This relation may prove useful to determine whether alterations in regional systolic function result from changes in local load or contractility in the left ventricle with a regional wall motion abnormality.

Animals↗

Comparison of contrast-enhanced real-time live 3-dimensional dobutamine stress echocardiography with contrast 2-dimensional echocardiography for detecting stress-induced wall-motion abnormalities.

BACKGROUND: Two-dimensional (2D) contrast-enhanced dobutamine stress echocardiography (DSE) is used clinically to diagnose stress-induced wall-motion abnormality (WMA). We hypothesized that contrast-enhanced real-time 3-dimensional (3D) DSE could improve the detection rate of WMA, because from a single full-volume acquisition, multiple segments can be visualized. METHODS: We acquired both 2D and 3D DSE in 78 patients with known or suggested coronary artery disease (mean age: 65 years; 44 men). Dobutamine was infused using a standard protocol, and atropine added, if required. For 2D DSE, the intravenous contrast agent was injected at each stage and images displayed in a quadscreen format. For 3D DSE, contrast harmonic 3D data sets (full volumes) were acquired at baseline and peak stress. Using custom software, 3 short-axis views (from apex to base) were created, and wall motion scored using a wall-motion score index using a 16-segment model. A positive stress test was defined as new or worsened WMA or fixed abnormality during stress. RESULTS: Heart rate increased from 72 +/- 13 to 133 +/- 15/min (86 +/- 11% of age-predicted). A total of 1248 segments were analyzed at each stage for both modalities. A single segment at baseline and 5 segments at peak stress could not be assessed with contrast 2D DSE. In contrast, 88 segments at baseline and 39 segments at peak stress could not be assessed with contrast 3D DSE. With 3D DSE, the majority of uninterpretable segments were in the anterior and lateral walls. Significant correlations were noted between wall-motion score index by 2D and 3D DSE at baseline (r = 0.78) and peak stress (r = 0.83). The concordance rate (positive/negative findings) between modalities was 69% (54/78) on a patient basis and 88% (206/234) on a perfusion territory basis. When using 2D DSE results as the gold standard, sensitivity and specificity for detecting WMA by 3D DSE was 58% and 75%, respectively. Sensitivity and specificity values were 67% and 94% for the right coronary artery, 53% and 81% for the left anterior descending coronary artery, and 88% and 100% for the left circumflex coronary artery territory, respectively. CONCLUSION: Contrast-enhanced 3D DSE was feasible in the majority of patients. However, the moderate concordance between both modalities was a result of: (1) difficulties in visualizing the anterolateral segments because of the relatively large imprint of the transducer; and (2) lower frame rates with 3D DSE resulting in the erroneous diagnosis of dyssynchrony.

Aged↗

Three-dimensional finite element modelling of the human ACL: simulation of passive knee flexion with a stressed and stress-free ACL.

In this study, a three-dimensional finite element model of the human anterior cruciate ligament (ACL) was developed and simulations of passive knee flexion were performed. The geometrical model of the ACL was built from experimental measurements performed on a cadaveric knee specimen which was also subjected to kinematics tests. These experiments were used to enforce the particular boundary conditions used in the numerical model. A previously developed transversely isotropic hyperelastic material model was implemented and the ability to pre-stress the ligament was also included. The model exhibited the key characteristics of connective soft tissues: anisotropy, nonlinear behaviour, large strains, very high compliance for compressive or bending loading along the collagen fibres and incompressibility. Simulations of passive knee flexion were performed, with and without pre-stressing the ACL. The resultant force generated by the ACL was monitored and the results compared to existing experimental data. The stress distribution within the ligament was also assessed. When the ACL was pre-stressed, there was a good correlation between the predicted and experimental resultant forces reported in the literature over the entire flexion-extension range. The stress distribution in the pre-stressed and stress-free ACL were similar, although the magnitudes in the pre-stressed ACL were higher, particularly at low flexion angles.

Anterior Cruciate Ligament↗

Compressive/tensile stresses and lignified cells as resistance components in joints between cladodes of Opuntia laevis (Cactaceae): responses to applied stresses.

Cactaceae are a diverse group of plants with a wide variety of morphologies and reproductive strategies. Many species have segmented stems in which terminal cladodes may be separated from main stem cladodes with varying amounts of resistance. Previous results demonstrated that lignified xylem cells in tensile portions of stem joints provide the main resistance to separation of cladodes within cactus plants. The purpose of the present study was to determine if stem joints of Opuntia laevis would produce additional lignified xylem cells in response to additional externally applied stresses. Normal average stress levels, which accompany the addition of a new cladode, were applied to 12 plants. In contrast, double the average stress levels were applied to 13 other plants. After exposure to the two stress regimens for 6 months, the amount and location of lignified xylem cells in joint segments were similar for both stress treatments. So, although the results support the hypothesis that lignified xylem cells act as the main resistance to stress at joints of cladodes, doubling the normal amount of applied stress was insufficient to alter the amount or location of lignified xylem cells in stem joints. These results indicate that normal amounts of lignified xylem cells can resist up to two times the normal amount of stress for 6 months without producing additional lignified xylem cells.

Journal Article↗

Loss of stress-induced expression of catalase3 during leaf senescence in Arabidopsis thaliana is restricted to oxidative stress.

Different stress conditions can induce changes in the activity of the antioxidant enzymes superoxide dismutase (SOD, EC 1.15.1.1), ascorbate peroxidase (APX, EC 1.11.1.11) and catalase (CAT, EC 1.11.1.6). The enzyme activities of all SOD and APX isoforms detected in young Arabidopsis leaves remained unaffected or slightly decreased after moderate paraquat treatment. While CAT2 activity also remained unaffected under these conditions, CAT3 enzyme activity was enhanced. In contrast to the enzyme activities, mRNA levels of both cat2 and cat3 were enhanced under oxidative stress induced by either paraquat or the fungal toxin cercosporin. This indicates that, with respect to enzyme activity level, CAT3 is the enzyme which is most sensitive to oxidative stress in this developmental stage and that the enzyme activity of CAT2 is possibly regulated at the post-transcriptional level. Interestingly, cat3 mRNA level and CAT3 activity are not elevated by paraquat treatment in senescing leaves. In contrast, the response to other stress conditions, such as water stress induced by flooding of detached leaves and heat stress, is maintained in senescing leaves. Since changes in stress response are not a general phenomenon in leaf senescence but appear to be restricted to oxidative stress, this might be a specific mechanism to promote senescence in Arabidopsis thaliana.

Journal Article↗

Regional diastolic function by pulsed Doppler myocardial mapping for the detection of left ventricular ischemia during pharmacologic stress testing: a comparison with stress echocardiography and perfusion scintigraphy.

OBJECTIVES: We evaluated regional diastolic function by pulsed Doppler myocardial mapping for the detection of left ventricular ischemia during pharmacologic stress testing. BACKGROUND: Evaluation and quantification of diastolic myocardial function remain a challenge for imaging techniques in stress tests. METHODS: A prospective study compared the detection of coronary artery stenosis: 1) by pulsed Doppler myocardial mapping, 2) by two-dimensional echocardiographic dobutamine stress test, and 3) by perfusion scintigraphy in 64 patients using coronary angiography for reference. An age matched subgroup of 10 patients with normal angiograms and two-dimensional echocardiographic stress test served as control group. Peak myocardial contraction velocity (Vc) and lengthening rate during early diastolic left ventricular (LV) filling (VE) were measured in 12 LV segments from three apical views. RESULTS: In controls, myocardial velocities increased during stress by > or =3.6 cm/s (p < 0.001). In LV segments depending on a stenosed artery (n = 70), VE decreased by > or =1 cm/s and, thus, was different from control segments (n = 112, p < 0.001) and from scar segments (n = 13, p < 0.01), whereas the change of Vc was similar to that in scar segments. A stress induced 2 cm/s reduction of VE discerned the best diagnostic accuracy (sensitivity 84%, specificity 93%) in comparison with two-dimensional echocardiography (78% and 71%) and perfusion scintigraphy (61% and 86%). Using receiver operating curves at incremental levels of luminal narrowing, these relations persisted. CONCLUSIONS: Quantification of diastolic myocardial function by pulsed Doppler myocardial mapping during dobutamine stress test was shown to be a feasible, accurate, reproducible, noninvasive technique that should be considered to be a sensitive alternative to the present echocardiographic and scintigraphic imaging techniques for stress tests.

Cardiotonic Agents↗