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Biomedical subjects

R Schulz

Publications and source records attributed to R Schulz.

At least 271 records · Page 15Linked to original sources

The measurement of caregiver outcomes in Alzheimer disease research.

The focus of this paper is on the measurement of outcomes for caregivers of patients with Alzheimer disease and related disorders. The discussion addresses theory-based and proven measures and seven major measurement domains: health effects, caregiver characteristics and contextual measures, service utilization, burden, positive aspects of caregiving, quality of care provided, and measures related to normative caregiver transitions such as institutionalization and death of the care recipient. Also provided are a brief summary of existing measurement approaches for assessing caregiver outcomes and general recommendations regarding the measurement of caregiver outcomes.

Alzheimer Disease↗

[Cortisol levels in blood and urine of trotting horses].

Statistical analysis of normally occurring cortisol levels in serum and urine of horses served to recommend thresholds for this corticosteroid in these body fluids, as application of exogenous cortisol as well as ACTH may elevate the cortisol concentrations above the proposed threshold. The present study contributes to the general issue of how to establish thresholds for trotting horses upon sportive examination. 100 randomly selected post competition serum and urine samples, respectively, were submitted to cortisol analysis by means of HPLC. Concentrations of the endogenous corticosteroid in serum and urine followed a log-normal distribution with mean values of 61 and 49 ng/ml, respectively. The probability was 1: 100,000 to exceed concentration limits of 230 (serum) and 394 ng/ml (urine). Designation of thresholds for cortisol has proven problematic and is discussed here.

Adrenocorticotropic Hormone↗

Expression of mu-, delta- and kappa-opioid receptors in baculovirus-infected insect cells.

The mu-, delta- and kappa-opioid receptors have been expressed in Sf9 and 'High Five' insect cells using the baculovirus expression system. In both cell lines highest receptor levels (pmol/mg membrane protein) were observed 48 h after infection. Concomitant exposure to the narcotic antagonist naloxone (1 microM) enhanced the production of each receptor type. However, "High Five' cells differed from Sf9 cells in a 2-3-fold higher receptor density in the cell membrane and were therefore employed for receptor characterization. In membranes of 'High Five' cells opioid receptor levels ranged from 1.0 +/- 0.2 pmol/mg protein for the kappa-opioid receptor, 1.7 +/- 0.2 pmol/mg for the delta-opioid receptor to 2.1 +/- 0.5 pmol/mg for the mu-opioid receptor. The mu-, delta- and kappa-opioid receptor agonists [D-Ala2,N-methyl-Phe4-Gly-ol5]enkephalin ([3H]DAMGO), [D-Pen2,D-Pen5]enkephalin ([3H]DPDPE) and (5 alpha, 7 alpha, 8 beta)-(+)-N-methyl-N-(7-(1-pyrrolidinyl-1-oxaspiro(4,5)dec-8-yl) benzeneacetamide ([3H]U69,563) bound to the opioid receptors with Kd values of 3.4 +/- 0.3 nM, 4.5 +/- 0.1 nM and 1.2 +/- 0.3 nM, respectively, resembling those reported for opioid receptors expressed in mammalian cells. Testing the functionality of the receptors in 'High Five' cells, we found that high affinity agonist binding was strongly reduced in the presence of GTP gamma S/sodium, indicating their coupling to G proteins. Furthermore, activation of the three receptor types inhibited forskolin-stimulated cAMP formation. The results presented here suggest that the 'High Five' cell/baculovirus system provides a convenient method for high level expression of functionally intact opioid receptors as judged by receptor binding studies, their G-protein coupling and inhibition of adenylyl cyclase.

Adenylyl Cyclases↗

Sequence analysis of an operon of a NAD(P)-reducing nickel hydrogenase from the cyanobacterium Synechocystis sp. PCC 6803 gives additional evidence for direct coupling of the enzyme to NAD(P)H-dehydrogenase (complex I).

The sequence of a NAD(P)-reducing hydrogenase operon of Synechocystis sp. PCC 6803 containing genes for a small and a large hydrogenase subunit and six additional ORFs was determined. Until now only 11 of the 14 polypeptides of the NADH-dehydrogenase of E. coli were found in Synechocystis. By sequence homologies we suggest that the missing subunits of the peripheral part of the dehydrogenase, containing most of the FeS-clusters, are encoded by three ORFs of this operon. This hypothesis is discussed in relation to the NAD(P)-reducing hydrogenase of Synechocystis.

Amino Acid Sequence↗

Self major histocompatibility complex class I antigens expressed solely in lymphoid cells do not induce tolerance in the CD4+ T cell compartment.

Transgenic mice expressing self major histocompatibility complex (MHC) class I (H-2Kb) antigen solely in lymphoid cell lineages do not acquire tolerance to H-2Kb expressed on skin grafts. H-2Kb-specific cytotoxic T cell responses were completely abrogated in these mice, even after they had rejected skin grafts. Moreover, thymocytes expressing T cell receptors that confer H-2Kb reactivity on cytotoxic CD8+ T cells were eliminated. The ability to reject grafts correlated with the presence of a novel population of H-2Kb-reactive CD4+ T cells. At least some of these CD4+ T cells recognize peptides derived from H-2Kb by processing. We conclude that self MHC I antigens induce tolerance in the CD8 T cell compartment via negative selection when expressed exclusively by lymphoid cells. In contrast, tolerance to MHC class II-restricted self peptides derived by processing of such MHC I antigens is not induced in the CD4 T cell compartment. This suggests that effective transfer of self antigens from lymphoid cells to MHC II-positive cells that can process and present them as self peptides to thymocytes or CD4+ T cells does not take place in vivo. Thus, sequestration of self antigens and MHC II molecules in distinct cell types in the thymic microenvironment allows potentially autoreactive and functionally competent CD4+ T cells that recognize cryptic MHC II-restricted self peptides to mature into the peripheral T cell repertoire under normal physiological circumstances.

Animals↗

Characterization of 5'AMP-activated protein kinase activity in the heart and its role in inhibiting acetyl-CoA carboxylase during reperfusion following ischemia.

Despite the high expression of 5'AMP activated protein kinase (AMPK) in heart, the activity and function of this enzyme in heart muscle has not been characterized. We demonstrate that rat hearts have a high AMPK activity, comparable to that found in liver, which could be stimulated up to 3-fold by 5'AMP. Cardiac AMPK is also under phosphorylation control, since in vitro incubation of cardiac AMPK with protein phosphatase 2A completely abolished activity, while incubation with ATP/Mg(2+) resulted in over a 2-fold increase in activity. To investigate the function of AMPK in heart muscle, isolated working rat hearts were subjected to 30 min of global no-flow ischemia, followed by 60 min of aerobic reperfusion. AMPK activity was increased in heart at the end of reperfusion compared to aerobic controls (379 +/- 53 (n=5) vs. 139 +/- 19 (n=5) pmol x min(-1) x mg protein(-1), P<0.05, respectively). Treatment of AMPK in vitro with protein phosphatase 2A reversed this activation. Since AMPK can phosphorylate and inactivate acetyl-CoA carboxylase (ACC) in other tissues, and heart ACC has an important role in regulating fatty acid oxidation, we measured ACC activity in hearts reperfused post-ischemia. ACC activity was decreased at the end of reperfusion compared to aerobic controls (3.64 +/- 0.36 (n=9) vs. 10.93 +/- 0.60 (n=11) nmol x min(-1) x mg protein(-1), respectively, P<0.05). A significant negative correlation (r= -0.78) was observed between AMPK activity and ACC activity measured in aerobic and reperfused ischemic hearts. Low ACC activity could be reversed if ACC was extracted from hearts in the absence of phosphatase inhibitors, suggesting that phosphorylation of ACC decreased enzyme activity. This suggests that following ischemia AMPK is phosphorylated and activated (possibly by an AMPK kinase). AMPK then phosphorylates and inactivates ACC. The resultant decrease in malonyl-CoA levels could explain the acceleration of fatty acid oxidation that is observed during reperfusion of ischemic hearts.

AMP-Activated Protein Kinases↗

Rapid increase in inducible nitric oxide synthase gene expression in the heart during endotoxemia.

Inducible, Ca(2+)-independent nitric oxide (NO) synthase activity in the heart is elevated during endotoxemia and the resulting excess release of NO depresses cardiac contractile function. We show here that this is due to an extremely rapid induction of inducible NO synthase gene expression. Following injection of endotoxin (bacterial lipopolysaccharide) in rats we detected increased inducible NO synthase mRNA levels in the left ventricular wall within 30 min which then peaked at 3 h. This was followed by an increase in myocardial inducible NO synthase enzyme activity and plasma levels of NO metabolites, nitrate and nitrite, which peaked at 6 and 12 h, respectively. The extremely rapid induction of inducible NO synthase may serve to protect the heart against microbial infection and concomitantly alter myocardial mechanical function.

Animals↗

Chronic exposure of NG 108-15 cells to inhibitory acting drugs reduces stimulatory prostaglandin E1 receptor number.

Prolonged exposure of neuroblastoma x glioma (NG 108-15) hybrid cells to inhibitory acting drugs results in sensitization of adenylate cyclase. We now report that chronic activation (3 days) of either inhibitory delta-opioid receptors, alpha 2B-adrenoceptors, or muscarinic M4 receptors significantly decreases the number of stimulatory, adenylate cyclase-coupled prostaglandin E1 receptors. Pharmacological characterization further revealed that the loss of [3H]prostaglandin E1-binding sites most likely corresponds to a reduction of the number of high-affinity, G protein-coupled prostaglandin E1 receptors. The decline in functionally active prostaglandin E1 receptors developed in a time- and dose-dependent manner and could be prevented by pretreatment of the cells with pertussis toxin. Heterologous prostaglandin E1 receptor regulation was blocked by concomitant exposure of the cells to antagonists for inhibitory receptors and was rapidly reversed (t 1/2 < 30 min) upon termination of chronic inhibitory drug treatment. The decrease in high-affinity prostaglandin E1 receptors developed regardless of whether full or partial agonists were used for pretreatment. In addition, the concentrations of inhibitory drugs required to maximally affect prostaglandin E1 receptor number closely resembled those mediating maximal adenylate cyclase inhibition. The data demonstrate that chronic inhibitory drug treatment of NG 108-15 hybrid cells reduces the number of functionally active, excitatory prostaglandin E1 receptors. Thus, it is proposed that adaptations at the level of stimulatory receptor systems contribute to the regulatory mechanisms associated with drug dependence.

Adenylate Cyclase Toxin↗

Calcium responsiveness in regional myocardial short-term hibernation and stunning in the in situ porcine heart. Inotropic responses to postextrasystolic potentiation and intracoronary calcium.

BACKGROUND: We tested the hypothesis that decreased calcium responsiveness is responsible for the reduction in contractile function in regional hibernating and stunned myocardium in situ. METHODS AND RESULTS: In 19 anesthetized swine, the left anterior descending coronary artery flow was reduced to decrease anterior myocardial work index (sonomicrometry) by approximately 60%. During 90 minutes of hypoperfusion, creatine phosphate recovered (as determined by biopsy specimens and bioluminescence) and no necrosis developed (as determined by staining with triphenyl tetrazolium chloride). In 10 swine, changes in the intracellular calcium concentration were induced by systematic variation of the postextrasystolic time interval at a constant prematurity. In 9 additional swine, a graded IC calcium infusion was performed. Under control conditions, anterior myocardial work increased with a fully compensated postextrasystolic time interval from 380+/-93 (mean+/-SD) to 523+/-98 mm Hg . mm. IC calcium infusion increased anterior myocardial work under control conditions from 356+/-85 to a maximum of 428+/-93 mm Hg . mm. Although the maximal responses were decreased during postextrasystolic potentiation (222+/-68 versus 523+/-98 mm Hg . mm) and calcium infusion (176+/-32 versus 428+/-93 mm Hg . mm) after 90 minutes of ischemia, the relationships between increases in anterior myocardial work and, respectively, postextrasystolic time interval and IC calcium were not different. The same was true after 30 minutes of reperfusion. CONCLUSIONS: Both regional hibernating myocardium and stunned myocardium in situ are characterized by a decrease in overall myocardial calcium responsiveness; however, there appears to be no significant myocardial desensitization to calcium.

Animals↗

Morphine dependence in human neuroblastoma SH-SY5Y cells is associated with adaptive changes in both the quantity and functional interaction of PGE1 receptors and stimulatory G proteins.

Chronic exposure of all-trans-retinoic acid-differentiated SH-SY5Y cells to morphine (10 mu M; 2 days) results in sensitization of adenylate cyclase as characterized by a significant increase in both PGE1 receptor-mediated as well as receptor-independent (NaF, 10 mM; forskolin, 100 mu M) stimulation of effector activity. To investigate the underlying biochemical alterations, chronic opioid regulation of each of the components comprising the stimulatory PGE1 receptor system was examined. On receptor level, chronic morphine treatment was found to reduce PGE1 receptor number (Bmax) by approximately 40%, whereas their affinity slightly increased. Binding experiments performed in the presence of GTPgammaS (100 mu M) further indicate that the decrease in PGE1 receptor density is associated with a loss of functionally G protein-coupled receptors. On post-receptor level, chronic morphine treatment substantially increased the abundance and functional activity of stimulatory G proteins, as assessed by cholera toxin-catalyzed ADP-ribosylation of GSalpha and S49 cyc- reconstitution assays. No changes were found on the level of adenylate cyclase. Evaluation of the functional interaction between PGE1 receptors and GS in situ by application of a C-terminal anti-GSalpha antibody revealed a more intense coupling efficiency between these two entities, since a significant higher amount of antibody (2.3-fold) was required in morphine dependent cell membranes to half-maximally attenuate PGE1 receptor-stimulated adenylate cyclase activity. In addition, limitation of the amount of functionally available GSalpha within the PGE1 receptor/adenylate cyclase signal transduction cascade abolished the generation of a supersensitive adenylate cyclase response during the state of naloxone (100 mu M)-precipitated withdrawal. These data demonstrate that in human neuroblastoma SH-SY5Y cells chronic morphine-induced sensitization of adenylate cyclase is associated with distinct quantitative and qualitative adaptations within the stimulatory adenylate cyclase-coupled PGE1 receptor system. Thus, alterations in the functional activity of stimulatory receptor systems are suggested to contribute to the cellular mechanisms underlying opioid dependence.

Adaptation, Physiological↗

No attenuation of ischaemic preconditioning by the calcium antagonist nisoldipine.

In anaesthetized dogs, intracoronary infusion of calcium prior to a prolonged ischaemic period reduced infarct size, thereby mimicking the protective effects of ischaemic preconditioning and suggesting that an increase in the intracellular calcium concentration might be an important mechanism underlying this phenomenon. The aim was to determine whether pretreatment with the calcium antagonist nisoldipine attenuates the reduction in infarct size achieved by ischaemic preconditioning. In 10 enflurane-anaesthetized pigs serving as controls (group 1), the inflow into the cannulated left anterior descending coronary artery was reduced (low-flow ischaemia) to achieve a 90% reduction in an anterior myocardial work index (sonomicrometry) for 90 min. In 11 pigs (group 2), a cycle of 10 min of low-flow ischaemia and 15 min of reperfusion (preconditioning) preceded the prolonged ischaemia. In groups 3 (n = 9) and 4 (n = 7), nisoldipine was administered by intravenous infusion (500 ng/kg/min) starting 40 min prior to and then throughout a protocol identical to that of groups 1 and 2, respectively. Subendocardial blood flow was measured with radiolabelled microspheres. Infarct size (% area at risk) was determined by triphenyltetrazolium staining in all pigs after 120 min of reperfusion. Subendocardial blood flow in the area at risk was similar in all four groups (group 1: 0.09 +/- 0.04 ml/min/g; group 2: 0.05 +/- 0.03; group 3: 0.09 +/- 0.03; group 4: 0.07 +/- 0.03). Group 2 had reduced infarct size when compared with group 1 (2.6 +/- 3.0% v 12.4 +/- 8.7%, P = 0.004), and there was a trend for a reduction in infarct size following nisoldipine treatment (group 3: 10.2 +/- 7.1%, group 4: 1.6 +/- 2.8%, P = 0.01). Thus administration of nisoldipine in pigs tended to decrease infarct size, and did not abolish the cardioprotection afforded by ischaemic preconditioning.

Analysis of Variance↗

Hibernating myocardium: a review.

Within a few seconds after a sudden reduction of coronary blood flow regional contractile dysfunction ensues. The mechanisms responsible for the rapid reduction in contractile function during acute myocardial ischemia remain unclear, but may involve a rise in inorganic phosphate. When severe ischemia, such as resulting from a sudden and complete coronary artery occlusion, is prolonged for more than 20-40 min, myocardial infarction develops, and there is irreversible loss of contractile function. When myocardial ischemia is less severe but nevertheless prolonged, the myocardium is dysfunctional but can remain viable. In such ischemic and dysfunctional myocardium, contractile function is reduced in proportion to the reduction in regional myocardial blood flow; i.e. a state of "perfusion-contraction matching" exists. The metabolic status of such myocardium improves over the first few hours, as myocardial lactate production is attenuated and creatine phosphate, after an initial reduction, returns towards control values. Ischemic myocardium, characterized by perfusion-contraction matching, metabolic recovery and lack of necrosis, has been termed "short-term hibernating myocardium". Short-term hibernating myocardium can respond to an inotropic stimulation with increased contractile function, however, at the expense of a renewed worsening of the metabolic status. This situation of an increased regional contractile function at the expense of metabolic recovery during inotropic stimulation can be used to identify short-term hibernating myocardium. When inotropic stimulation is prolonged, the development of short-term hibernation is impaired and myocardial infarction develops. The mechanisms responsible for the development of short-term myocardial hibernation remain unclear at present; a significant involvement of adenosine and of activation of ATP-dependent potassium channels has been excluded. Whereas short-term hibernation is well characterized in animal experiments, the existence of hibernation over weeks or months (long-term hibernation) can only be inferred from clinical studies. Hibernation, as defined by Rahimtoola, is a state of chronic contractile dysfunction which is fully reversible upon reperfusion. Clinical syndromes consistent with the existence of myocardial hibernation include unstable and stable angina, acute myocardial infarction and left ventricular dysfunction and/or congestive heart failure. In long-term hibernating myocardium morphological alterations occur; the myofibrils are reduced in number and disorganized and myocardial glycogen content as well as the extracellular collagen network are increased. Thus, despite the fact that the myocardium remains viable during persistent ischemia and contractile dysfunction is reversible upon reperfusion, there are severe morphological alterations. Understandably, full functional recovery following reperfusion might therefore require weeks or even months.

Animals↗

Lesions of the Achilles tendon. A sonographic, biomechanical and histological study.

Thirty-four Achilles tendons were explanted post-mortem. The explanation took place less than 24 h after death. The tendons were examined by means of ultrasonography and after explanation assessed histologically and biomechanically. In the sonograms 19 changes in echogenicity were noted. Changes in form with an increase in the diameter of the tendon of up to 10 mm (compared with the contralateral side) were found in 6 tendons. The changes in echogenicity and form were found most frequently 2-4 cm from the insertion of the tendon at the os calcis. At a speed of 5 mm/min, the average force needed until rupture occurred was calculated as 27.6 N/mm2. The tear was located on average 29.7 mm from the bony insertion of the tendon at the calcaneus. Histologically, necroses could be found most frequently in all regions of the tendon, followed by scars and fissures. When there were differences of more than 25% in tensile strength between the right and left sides, there was a histological change in the weaker tendon at the site of the tear. Sonographic changes in form pointed to histological lesions in this region. Changes in the echogenicity led to the detection of degenerative changes of the tendon, but they have to be analysed carefully, as they are prone to artefacts. There was not statistically relevant correlation either with regard to tensile strength or to the site of the rupture for sonographically proven changes in the area of the rupture. However, when there was a sonographically abnormal finding in the course of a tendon, the tendon tore at an earlier point than those exhibiting no abnormality. Sonography proved to be a useful method in the detection of degenerative lesions of tendons. A direct influence on the biomechanics of the tendon could not be found.

Achilles Tendon↗

Infective endocarditis in the elderly in the era of transesophageal echocardiography: clinical features and prognosis compared with younger patients.

PURPOSE: Advanced age is considered to be associated with a more severe prognosis in infective endocarditis (IE), which is relevance in view of a change in epidemiology of the disease with an increasing proportion of elderly people. We wanted to examine whether in the era of improved diagnostic sensitivity for IE by transesophageal echocardiography the clinical course in elderly persons would be still more severe than in younger patients. PATIENTS: During the period from 1989 to 1993, 104 patients with 106 episodes of IE were treated at our university hospital. Three groups were compared: group A with 28 patients younger than 50 years, group B with 58 patients aged 50 to 70, and group C with 20 patients older than 70. Transesophageal echocardiography was performed in 78% of the patients; it was not performed in 22% of the patients with a conclusive transthoracic examination. The patients were followed up for an average of 25 months after the diagnosis. RESULTS: No significant differences were observed among the age groups with respect to the possible source of infection, the frequency of positive blood cultures, and the type of infective organisms. Elderly patients more often had predisposing valvular conditions (eg, degenerative and calcified lesions and prosthetic valves), which decreased the sensitivity of transthoracic echocardiography to 45% as compared with 75% in group A. Transesophageal echocardiography improved the diagnostic yield by 45% in group C and by 47% in group B. Vegetations were smaller in group C and B as compared with group A, whereas other echocardiographic characteristics were similar. Fever and leukocytosis were less frequent in group C (55% and 25%, respectively) than in group A (82% and 61%, respectively). The interval between the onset of symptoms and the diagnosis of IE was similar in all groups. Elderly patients underwent surgical therapy as frequently (65%) as the other groups. The 1-year survival in group C (26%) was comparable with that in group A (22%) and group B (22%). The major determinant of survival was the occurrence of embolic complications. CONCLUSION: Infective endocarditis in elderly patients caused less severe clinical symptoms than in young patients. The early diagnosis in elderly patients was facilitated by the high sensitivity of transesophageal echocardiography, which enabled the timely initiation of an appropriate medical and surgical therapy. This led to a clinical outcome similar to that for younger patients.

Adolescent↗

Changes in left ventricular filling during follow-up study in survivors and nonsurvivors of idiopathic dilated cardiomyopathy.

The assessment of left ventricular diastolic function by Doppler echocardiography shows both a nonrestrictive and restrictive type of filling in idiopathic dilated cardiomyopathy. These different filling patterns are related to the symptoms of cardiac failure and the prognosis. It remains to be established whether changes of Doppler parameters during follow-up procedures were of clinical relevance. Doppler echocardiography of left ventricular filling was done in 45 patients with idiopathic dilated cardiomyopathy at the time of their diagnosis and repeatedly during a follow-up study of 38 +/- 19 months. The deceleration time of early filling, the maximum early and atrial Doppler velocities and their ratios, as well as echocardiographic parameters of cardiac dimensions and systolic function, were measured. During the follow-up period, seven patients died and four patients underwent heart transplantation because of progressive heart failure. The deceleration time was shorter in patients who died or had to undergo heart transplantation as compared with survivors (119 +/- 43 ms vs 188 +/- 63 ms; P < .005). There was no difference in changes of clinical symptoms in survivors and nonsurvivors. The systolic function improved only in survivors. The difference in deceleration time remained significant between both groups, and it also remained a prognostic discriminator. Peak early velocity increased in nonsurvivors (from 0.66 +/- 0.20 m/s to 0.95 +/- 0.21 m/s; P < .01), while it remained constant in survivors (0.65 +/- 0.17 m/s and 0.67 +/- 0.25 m/s). The peak early/atrial velocity ratio varied widely in either group during the follow-up study, its changes were closely related to the concomitant changes of clinical symptoms (r = .59; P < .005) with a decrease of the peak early/atrial velocity ratio in patients with clinical improvement and an increase of the peak early/atrial velocity ratio in those without clinical improvement. The Doppler echocardiographic deceleration time discriminated between survivors and nonsurvivors in idiopathic dilated cardiomyopathy at the time of the initial diagnostic procedure, and this difference was persistent during the follow-up study. The serial evaluation of patients with idiopathic dilated cardiomyopathy showed a close association of changes in diastolic filling with changes in clinical symptoms.

Blood Flow Velocity↗

A life span model of successful aging.

To lay the foundation for our model, we first describe existing conceptions of successful aging, underlying assumptions of development, and criteria for success. The model presented extends the discourse on this topic in three directions: (a) It frames the discussion of successful aging in the broader context of life course development; (b) it accounts for both normative and nonnormative (i.e., exceptional) success; and (c) it integrates motivational processes into a theory of successful aging. Successful aging is equated with the development and maintenance of primary control throughout the life course, which is achieved through control-related processes that optimize selection and failure compensation functions. Selection processes regulate the choice of action goals so that diversity is maintained and positive and negative trade-offs between performance domains and life stages are taken into account. Compensation mechanisms serve to maintain, enhance, and remediate competencies and motivational resources after failure experiences. Both compensation and selection processes are motivated by desires for primary control and can be characterized in terms of primary and secondary control processes.

Activities of Daily Living↗

Longitudinal analysis of specific domains of internal control and depressive symptoms in patients with recurrent cancer.

The relation between perceptions of control and depressive symptoms was examined in a longitudinal study of patients with recurrent cancer. Five domains of control (self-blame, control over cancer onset, control over symptoms, control over the course of the illness, and overall control over life events) were found to be independent of one another. In cross-sectional analyses, depression symptomatology was negatively correlated with illness course control, symptom control, and overall control. Cross-lagged longitudinal analyses using structural equation modeling suggested only onset control and overall control were significantly associated with depressive symptomatology over the 8-month interval. Greater baseline onset control predicted greater follow-up depression, whereas higher baseline depression predicted lower follow-up overall control. The importance of developing and using domain-specific measures of control and investigating the association of control and adjustment in longitudinal analysis are discussed.

Adult↗