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Mechanical amplification of stimuli by hair cells.

Unlike any other known sensory receptor, the hair cell uses positive feedback to augment the stimulus to which it responds. In the internal ears of many vertebrates, hair cells amplify the inputs to their mechanosensitive hair bundles. Outer hair cells of the mammalian cochlea display a unique form of somatal motility that may underlie their contribution to amplification. In other receptor organs, hair cells may effect amplification by hair-bundle movements driven by the activity of myosin or of transduction channels. Recent work has demonstrated the presence of several myosin isozymes in hair bundles, confirmed that bundles display myosin ATPase activity, and shown that the work performed by myosin molecules could account for one aspect of the amplificatory process.

Animals↗

START: a European state-of-the-art on-line instrument for clinical oncologists.

START ('State-of-the-Art Oncology in Europe'), a freely available resource on the Internet, is a European 'information base' of current clinical approaches to human tumours. Its aim is to help clinical oncologists make appropriate clinical decisions by providing them with updated information reflecting state-of-the-art cancer treatment as perceived by the European oncology community. It is based upon contributions from authors and internal reviewers from all over Europe as selected by START's editorial board under the supervision of an advisory board and a scientific committee. Close collaborations with the main European cancer societies are ongoing. An external feedback process augments the mechanisms for rendering START a truly European instrument. START is concerned with evidence-based cancer medicine, and the main clinical options are thus codified and their bases indicated in accord with a scale worked out from the perspective of clinical decision-making. Therapeutic options may be 'standard', 'investigational', or 'suitable for individual clinical use' (within the context of a decision made jointly by the patient and the physician). The goal of instruments such as START is to improve the quality of patient care. In addition, START hopes to make contributions to the methodology by which medical research is transformed into clinical decisions.

Decision Making↗

The role of video in facilitating perception and action of a novel coordination movement.

Two groups (n = 10 in each) practiced a novel, bimanual coordination pattern that was demonstrated on video. One of the groups received augmented video feedback of their own responses after each trial following a demonstration. The video-feedback group showed better performance in acquisition and retention than the no-feedback group. On error-detection tests, the video-feedback group was better able to distinguish between correct and incorrect movement patterns. The authors concluded that video feedback helps to make relative phase information salient by aiding the discrimination process. Prepractice ability on a scanning task revealed that individuals who persevered with in-phase-type movements, even though the task demands dictated otherwise, had the most difficulty determining and subsequently performing the required movement. Video feedback helped them to compensate for those difficulties.

Adult↗

Cardiovascular responses during nonweight-bearing and touchdown ambulation.

The purpose of this study was to compare selected physiological responses of nonweight-bearing (NWB) and touchdown (TD) ambulation using axillary crutches. Ten subjects walked at a constant rate for five minutes at a mean velocity of 48.42 m/min for NWB and 48.95 m/min for TD. Weight bearing was controlled with an augmented sensory feedback device. Heart rate, blood pressure, oxygen consumption, and perceived exertion were measured. Myocardial oxygen consumption was estimated from heart rate alone and from the double product of systolic blood pressure and heart rate. Oxygen consumption and systolic blood pressure were similar for NWB and TD. Heart rate and myocardial oxygen consumption were significantly higher during NWB, and this was attributed to greater upper and lower extremity isometric exercise required for NWB versus TD ambulation. Physiologically, TD may be preferable to NWB for persons who are deconditioned or limited in their exercise capacity.

Adult↗

Ambulance paramedic activities in North Ayrshire: a five-year review.

BACKGROUND: Ambulance paramedics have been practising in North Ayrshire for some time. The aim of this study was to determine the range and number of procedures that are undertaken by paramedics, and whether they are performed in accordance with standard operating procedures. METHODS: A five-year prospective observational study of patients attended by paramedics in a mixed urban/rural area of south-west Scotland. Data were collected on all procedures undertaken in the prehospital arena. A single investigator decided whether each procedure was performed in accordance with standard operating procedures in the light of available information. RESULTS: Data on 6600 patients were available, a mean of 42 patients per paramedic per year. Oxygen administration increased significantly and the number of occasions when excess time was spent on scene decreased significantly during the study. Paramedics treated significantly fewer patients requiring intravenous cannulation, intubation, defibrillation and cardiopulmonary resuscitation in year 5 compared with year 1. Paramedics administered drugs in accordance with standard operating procedures in almost all cases. CONCLUSION: Paramedic exposure to extended skills is low in this region, leading to concerns about advanced skills retention. Paramedics can administer drugs appropriately according to protocol. Increasing paramedic experience, possibly augmented by feedback via audit, may be influencing paramedic decision making.

Allied Health Personnel↗

ADP-stimulated fibrinogen binding is necessary for some of the inositol phospholipid changes found in ADP-stimulated platelets.

ADP-stimulation of washed human platelets suspended in Tyrode/albumin solution containing Ca2+ (2 mM) and fibrinogen (0.4 mg/ml) causes extensive, reversible aggregation without appreciable secretion of granule contents. Under these conditions ADP (10 microM) stimulation decreased the amounts of phosphatidylinositol 4,5-bisphosphate (PtdInsP2) and phosphatidylinositol 4-phosphate (PtdInsP) at 10 s. Omitting fibrinogen from the suspending medium or blocking fibrinogen binding to the platelets using Arg-Gly-Asp-Ser (RGDS, 0.23 mM) inhibited these decreases in PtdInsP2 and PtdInsP. In contrast, ADP-induced decreases in PtdInsP2 and increases in PtdInsP at 60 s compared to 10 s were not affected by RGDS or the absence of fibrinogen. In platelets prelabelled with [3H]glycerol and [32P]phosphate, changes in labelling of the inositol phospholipids paralleled the changes in amount. The ADP-induced changes in phosphatidic acid (PtdOH) at 10 s were unaffected by RGDS; this finding supported previous reports that phospholipase C was not the cause of the early decreases in PtdInsP2 and PtdInsP. These results indicate that the early decreases in PtdInsP2 and PtdInsP at 10 s are dependent on fibrinogen binding to the platelets and occur after fibrinogen binding which is activated by ADP stimulation. It is proposed that the fibrinogen-dependent changes in PtdInsP2 and PtdInsP may have a feedback role augmenting platelet aggregation or other responses of platelets that might occur after fibrinogen binding, possibly due to effects on actin polymerisation.

Adenosine Diphosphate↗

Role of macula densa adenosine triphosphate (ATP) in tubuloglomerular feedback.

BACKGROUND: Recent studies have shown that adenosine triphosphate (ATP) is liberated from macula densa cells in response to increased tubular NaCl in vitro. We tested the hypothesis that increased NaCl in the macula densa stimulates the release of ATP, resulting in extracellular formation of adenosine which is involved in signal transmission of the tubuloglomerular feedback response. METHODS: Rabbit afferent arterioles and attached macula densas were simultaneously microperfused in vitro. Tubuloglomerular feedback was induced by increasing macula densa Na/Cl from 11/10 to 81/80 mmol/L and was measured before and after treatment. RESULTS: We first tested whether hydrolysis of ATP is required for tubuloglomerular feedback. When we enhanced conversion of ATP to adenosine by adding hexokinase or apyrase to the bath and arteriole lumen, the tubuloglomerular feedback response was augmented. During the control period, tubuloglomerular feedback decreased arteriole diameter by 2.2 +/- 0.2 microm. In the presence of hexokinase, tubuloglomerular feedback decreased diameter by 3.4 +/- 0.3 microm (N= 8) (P < 0.05, with vs. without hexokinase). In the apyrase group, tubuloglomerular feedback decreased diameter by 2.7 +/- 0.4 microm during the control period. When apyrase was added, tubuloglomerular feedback decreased diameter by 4.7 +/- 0.4 microm (N= 8) (P < 0.05, with vs. without apyrase). When hydrolysis of adenosine monophosphate (AMP) to adenosine was blocked by supplementing the bath with 100 micromol/L alpha,beta-methylene adenosine 5'-diphosphate (MADP), an inhibitor of 5'-nucleotidase, tubuloglomerular feedback response was blocked and diameter remained unchanged. We next studied whether ATP released from the macula densa binds to P(2) receptors and activates the tubuloglomerular feedback response. The P(2) purinergic receptor inhibitor suramin was added to both arteriole lumen and bath. During the control period, tubuloglomerular feedback decreased diameter by 3.7 +/- 0.5 microm. Suramin (100 micromol/L) did not significantly inhibit tubuloglomerular feedback, since in the presence of suramin diameter decreased by 3.8 +/- 0.3 microm (N= 7). Finally, we added the adenosine A(1) receptor inhibitor FK838 to both bath and lumen and found that it completely blocked high NaCl-induced tubuloglomerular feedback. CONCLUSION: We concluded that ATP released from the macula densa is broken down to form AMP in the extracellular space. AMP in turn is degraded by ecto-5'-nucleotidases to adenosine, which mediates signal transmission of the tubuloglomerular feedback response.

5'-Nucleotidase↗

Control of upper-limb prostheses: a case for neuroelectric control.

A discussion is presented on the control aspects of upper-limb prostheses, with emphasis on the areas of necessary improvements in current designs. Arguments are presented to indicate that it should be possible to obtain a substantial improvement in prostheses control by properly training the amputee, improving the dynamics response of the prostheses, and improving the quality of the forward-path control signal. Augmentation of feedback information, although useful, may not be essential. The limitations of the myoelectric (muscle) signal as a forward-path control signal, especially for multiple degrees-of-freedom prostheses, is discussed. Most of the limitations of the myoelectric signal can be overcome if the neuroelectric (nerve) signal is used as a forward-path control signal. Results of a series of experiments which demonstrate the feasibility of constructing an electrode capable of being implanted around severed nerves and of detecting neuroelectric signals for prolonged periods of time are presented. A possible scheme for employing neuroelectric control is also presented.

Arm↗

A computer program for quality control in the blood gas laboratory.

In blood gas laboratory quality-assurance programs, which are routinely included with materials sold for quality control, raw data are sent to a data processing center for reduction to statistics meaningful to the laboratory's quality-control effort. This data reduction service usually requires a turn-around time of 2 weeks or more. I describe a computer program for the more timely, in-house computation of a laboratory's mean, standard deviation, and coefficient of variation. We have also found this program useful in calculating values for a new lot number of controls during the period between receipt of the controls and receipt of the first set of statistics from the data processing center. Comparing these values to the assayed values in the manufacturer's insert provides timely feedback and augments the manufacturer's professional data reduction service.

Blood Gas Analysis↗

[Angiotensin II and the kidney].

Angiotensin II (AngII) plays a central role for maintenance of GFR and Na balance particularly in volume depletion, when AngII preferentially increases the resistance of efferent arterioles as compared to afferent arterioles, enhancing the glomerular perfusion pressure. In addition, AngII enhances tubular reabsorption of sodium in proximal tubules directly and indirectly as a consequence of glomerulotubular balance. AngII also stimulates Na reabsorption in the collecting ducts by stimulating the release of aldosterone from the adrenal cortex. AngII augments tubuloglomerular feedback. Recently, it has been shown that AngII has a variety of non-hemodynamic effects on cell growth and differentiation as well as inflammatory responses, and it has been speculated that the increased renin-angiotensin, not only systemic but local one, may be responsible for the pathogenesis of a number of renal diseases.

Angiotensin II↗

Establishing and maintaining performance claims. A manufacturer's viewpoint.

Performance claims are the vehicle by which a manufacturer communicates the analytic capabilities of its methods to laboratory users and to regulatory agencies. Claims describe the expected performance of an analytic system. To be useful, claims must be meaningful, achievable, and verifiable. To ensure consistent interpretation, they must be stated in clear, unambiguous terms. There are no specific guidelines for stating claims. Consequently, comparing the performance of one system to another is difficult. Claims fall into three categories: clinical utility, analytical performance, and boundary conditions. This article focuses on the three basic analytical performance characteristics, precision, accuracy, and specificity, and describes how they are established, validated, maintained, and monitored by manufacturers and how they can be verified by end users. Precision claims describe the inherent variability of the system. They differ in the components of variance included, ranging from the short-term variables within a single run to the long-term variables experienced over time, such as lot changes, calibrations, instrument drift, and environmental fluctuations. Precision may be stated either as typical user experience or as the minimum performance expected. Accuracy claims describe the degree to which the results will approximate the true values. They are more difficult to establish and verify, given the lack of objective standards for many analytes. For this reason, few manufacturers make true accuracy claims, relying instead on comparisons with other marketed methods. A notable exception is cholesterol, for which a model reference system has been established to help laboratories ensure accuracy. External proficiency testing is handicapped by matrix effects from imperfect survey fluids. Specificity claims describe the method's freedom from interference and cross-reactivity. They are based on screening tests by the manufacturer, augmented by feedback from users. There are no agreed-on criteria for what constitutes clinically significant interference, and no consistent approach for disclosing interference information. The National Committee for Clinical Laboratory Standards, Villanova, Pa, is beginning to develop guidelines to promote greater consistency in performance claim statements.

Calibration↗

Procedural memory in Korsakoff's disease under different movement feedback conditions.

Within the field of cognitive neuroscience, it has become widely accepted to distinguish between declarative and nondeclarative memory, with different neurobiological substrates subserving these memory structures. This distinction has been inferred from the study of amnesic patients, including those suffering from Korsakoff's syndrome. It is commonly agreed that Korsakoff patients demonstrate intact memory for motor and perceptual skills (nondeclarative) whereas memory of various forms of factual knowledge (declarative) is severely impaired. In the present study, Korsakoff patients and a group of age-matched controls learned a new bimanual motor skill whereby performance was assessed in the presence and absence of augmented visual information feedback. Findings demonstrated that Korsakoff patients were able to learn and retain this skill when directive augmented information feedback was provided while no learning occurred at all in the absence of this information. These observations shed new light on the conditions required for preserved memory in amnesic patients and challenge the classic view that nondeclarative memory is invariably preserved. Instead, the quality of memory across both motor and cognitive dimensions appears to depend on the availability of task-specific information to guide performance, presumably allowing amnesic patients to bypass affected brain areas. This prompts for a reevaluation of current notions about procedural memory capacity in Korsakoff patients.

Adult↗

Effects of verbal and visual cues on performance of a complex ballistic task.

An ecological approach to the study of feedback for learning sport tasks involves understanding how both augmented and inherent feedback interact. Literature on sport psychology suggests that athletes differ from nonathletes in characteristics that relate to learning styles and use of feedback. The purpose of this study was to examine differences in learning style between college female athletes and non-athletes on a complex ballistic task (dart throwing) differentiated by verbal and visual cues. 19 college women athletes and 19 nonathletes participated under four different conditions: visual cued/verbal cued, visual cued/verbal noncued, visual noncued/verbal cued, visual noncued/verbal noncued. Analysis of variance indicated that athletes were superior to nonathletes under the visual cued/verbal noncued condition. Both groups showed a linear trend for improvement but athletes were significantly better on the last trial.

Adult↗

Nitric oxide antagonizes the actions of angiotensin II to enhance tubuloglomerular feedback responsiveness.

The present study was designed to investigate whether nitric oxide (NO) antagonizes angiotensin II (Ang II) in modulating the tubuloglomerular feedback (TGF) system. Maximum TGF responses were assessed by evaluating stop-flow pressure (SFP) responses to late proximal perfusion with artificial tubular fluid (40 nl/min). Peritubular capillary (PTC) infusion of 10(-3) M NG-L-arginine (NLA) at a rate of 20 nl/min, and infusion of 10(-7) and 10(-6) M Ang II at rates that did not decrease SFP under conditions of zero flow to the macula densa (resting SFP), augmented maximum SFP feedback responses to 12.0 +/- 1.7, 12.1 +/- 2.4 and 16.9 +/- 3.0 mm Hg, respectively (all P < 0.01 vs. control response). Combined PTC infusion of NLA and 10(-7) M Ang II at a rate of 20 nl/min resulted in decreases in resting SFP in 7 of the 12 nephrons studied. When the infusion rate was decreased to 15 +/- 3 nl/min, concomitant PTC infusion of NLA and 10(-7) M Ang II was associated with a tremendous increase in maximum TGF responses (23.8 +/- 3.9 mm Hg; P < 0.01 vs. responses during PTC NLA or Ang II) in the absence of a decrease in resting SFP. During AT1 receptor blockade using losartan, SFP feedback responses were attenuated to 1.6 +/- 0.6 mm Hg and PTC infusion of NLA only augmented TGF responses to 3.8 +/- 1.0 mm Hg. These results strongly suggest that local NO antagonizes Ang II with respect to the regulation of TGF responsiveness. Disruption of this balance by NO synthesis inhibition strongly potentiates TGF-independent and TGF-dependent actions of Ang II on the preglomerular vasculature.

Angiotensin II↗

Perceptual learning without feedback in non-stationary contexts: data and model.

The role of feedback in perceptual learning is probed in an orientation discrimination experiment under destabilizing non-stationary conditions, and explored in a neural-network model. Experimentally, perceptual learning was examined with periodic alteration of a strong external noise context. The speed of learning, the performance loss at each change in external noise context (switch cost), and the asymptotic accuracy d' without feedback were very similar or identical to those with feedback. However, lack of feedback led to higher decision bias (error responses matching the external noise context). In the model, the stimulus representations are constant, whereas the read-out connections to a decision unit learn by a Hebbian plasticity rule that may be augmented by additional feedback input and criterion control of decision bias.

Feedback, Psychological↗

Effects of a nucleoside transporter inhibitor, dilazep, on renal microcirculation in rats.

Adenosine, one of the endogenous modulators in renal hemodynamics, has recently been shown to be a mediator of tubuloglomerular feedback (TGF). Dilazep augments endogenous adenosine actions by blocking its cellular uptake. Our purpose in the present study was to clarify the effects of dilazep on renal microcirculation and the TGF mechanism. Clearance and micropuncture experiments were performed in anesthetized rats. TGF responsiveness was assessed in superficial nephrons by measuring the changes of early proximal flow rate (EPFR) in response to loop perfusion at 0-40 nl/min with artificial tubular fluid (ATF). Under dilazep administration (0.3 mg/kg+0.3 mg/kg/h i.v.) systemic BP and GFR were decreased and renal plasma flow was unaltered; as a result, the filtration fraction tended to decrease (p=0.076). Renal vascular resistance was reduced, but not to a significant degree. The reduction in EPFR by loop perfusion was similar between controls (47 +/- 2%) and rats administered dilazep i.v. (44 +/- 5%). Intraluminal application of dilazep in ATF suppressed TGF-mediated EPFR reduction to by 46 +/- 4%, 43 +/- 7%, and 37 +/- 3% at dilazep concentrations of 10(-6), 10(-5), and 10(-4) mol/l, respectively. TGF suppression with 10(-4) mol/l dilazep was reversed by co-perfusion of 10(-5) mol/l DMPX, a selective adenosine A2 receptor antagonist. DMPX alone did not affect TGF response. In conclusion, these results indicate that systemic dilazep dilates postglomerular arterioles and does not affect TGF, and thus reduces GFR. A pharmacological concentration of dilazep applied to single nephrons clearly attenuates TGF, indicating afferent arteriolar vasodilatation. Extracellular adenosine augmented by dilazep dilates glomerular vessels at both afferent and efferent sites, probably via the activation of A2 receptors.

Animals↗

Regulation of intrarenal angiotensin II in hypertension.

Intrarenal angiotensin II (Ang II) is regulated by several complex processes involving formation from both systemically delivered and intrarenally formed substrate, as well as receptor-mediated internalization. There is substantial compartmentalization of intrarenal Ang II, with levels in the renal interstitial fluid and in proximal tubule fluid being much greater than can be explained from the circulating levels. In Ang II--dependent hypertension, elevated intrarenal Ang II levels occur even when intrarenal renin expression and content are suppressed. Studies in Ang II--infused rats have demonstrated that augmentation of intrarenal Ang II is due, in part, to uptake of circulating Ang II via an Ang II type 1 (AT(1)) receptor mechanism and also to sustained endogenous production of Ang II. Some of the internalized Ang II accumulates in the light and heavy endosomes and is therefore potentially available for intracellular actions. The enhanced intrarenal Ang II also exerts a positive feedback action to augment intrarenal levels of angiotensinogen (AGT) mRNA and protein, which contribute further to the increased intrarenal Ang II in hypertensive states. In addition, renal AT(1) receptor protein and mRNA levels are maintained, allowing increased Ang II levels to elicit progressive effects. The increased intrarenal Ang II activity and AGT production are associated with increased urinary AGT excretion rates. The urinary AGT excretion rates show a clear relationship to kidney Ang II content, suggesting that urinary AGT may serve as an index of Ang II--dependent hypertension. Collectively, the data support a powerful role for intrarenal Ang II in the pathogenesis of hypertension.

Angiotensin II↗

The use of an integrated clinical laboratory and pharmacy diabetes database to provide physician performance feedback in an IPA-model HMO.

The ability to link pharmacy claims and clinical laboratory result databases in a managed care setting holds great promise as an outcomes management tool. The authors have created a powerful disease management capability that generates dynamic, disease-specific reports containing actionable, provider-patient-level laboratory and pharmacy information. This system is used to send reports to primary care physicians in an independent practice association (IPA)-model managed care setting to improve the care of patients with diabetes mellitus. This systematic feedback methodology can augment physician decision-making behavior, promote compliance with national guidelines, and measure improvement in plan-level, population-based outcomes over time.

Clinical Laboratory Information Systems↗