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Jeffrey Hill

Publications and source records attributed to Jeffrey Hill.

4 recordsLinked to original sources

Emotional arousal does not affect delay eyeblink conditioning.

Arousal can modulate information processing, including associative learning. However, there are conflicting results as to whether arousal affects eyeblink conditioning in humans. One potential problem with previous studies is that they have not taken into account factors that are known to affect conditioning. One such factor is the strength of the unconditioned response (UR). Despite evidence that greater UR leads to greater conditioned responses (CR), prior studies have not examined the role of the UR in CR performance. Prior studies have also usually classified subjects into low and high arousal groups based on a priori categorization without reliance on objective measures of arousal. The present study was designed to examine the impact of arousal on delay eyeblink conditioning. Changes in arousal levels were obtained by having participants view pictures selected for their a priori emotional and arousal values as being pleasant/arousing, unpleasant/arousing, or neutral/not arousing. Each subject viewed pictures of only one category. The spontaneous fluctuation of the skin conductance was taken as an index of physiological arousal. Subjects were divided into low and high arousal groups according to a median-split. Results showed that the rate of CR was positively related to the amplitude of the UR, but was not affected by emotional pictures or by physiological arousal. It is argued that changes in CR during arousal could be due to differences in unconditioned eyeblink strength rather than to changes in associative processes.

Adult↗

Aspartic proteinase inhibitors from tomato and potato are more potent against yeast proteinase A than cathepsin D.

The interaction of a variety of aspartic proteinases with a recombinant tomato protein produced in Pichia pastoris was investigated. Only human cathepsin D and, even more potently, proteinase A from Saccharomyces cerevisiae were inhibited. The tomato polypeptide has >80% sequence identity to a previously reported potato inhibitor of cathepsin D. Re-evaluation of the potato inhibitor revealed that it too was more potent (>20-fold) towards yeast proteinase A than cathepsin D and so might be renamed the potato inhibitor of proteinase A. The potency towards yeast proteinase A may reflect a similarity between this fungal enzyme and aspartic proteinases produced by fungal pathogens which attack tomato and/or potatoes.

Amino Acid Sequence↗

Pulse inversion harmonic imaging improves endocardial border visualization in two-dimensional images: comparison with harmonic imaging.

Pulse inversion harmonic imaging (PIHI) is a new modality that increases the detection of harmonic echoes and myocardial contrast by cancelling linearly transmitted signals. We tested whether PIHI improved the detection of endocardial borders in noncontrast 2-dimensional echocardiography. We compared PIHI with tissue harmonic imaging (THI), which decreases linearly transmitted signals using filters. Fundamental mode (FM) was compared with THI and PIHI in 50 consecutive patients. The global and segmental endocardial visualization scores measured with FM were significantly improved by using either THI or PIHI. The improvement of the global score compared with FM was slightly higher using PIHI than THI, because of an improved visualization of the base and the anterior wall with the PIHI technique compared with THI. The ratio of myocardial-to-cavity signal was similarly increased from FM with THI and PIHI. PIHI, a new modality for detection of myocardial contrast, can also be used for endocardial border visualization. It provides an improvement relative to THI for specific regions of the endocardium.

Echocardiography↗

Cardiac response to nitric oxide synthase inhibition using aminoguanidine in a rat model of endotoxemia.

This study evaluates the effect of aminoguanidine, a preferential inhibitor of inducible nitric oxide synthase (iNOS), on the prevention of cardiac depression in acute endotoxemia. Cardiac performance was evaluated after 4 h of exposure to endotoxin. Rats (n = 5) were selected randomly to receive, by intraperitoneal injection, one of four treatments: saline, LPS (lipopolysaccharide, E. coli, 4 mg/kg, AG (aminoguanidine 100 mg/kg), and LPS + AG at various times. AG and saline treatments were administered 30 min before LPS and at 1 and 3 h after LPS injection. Hearts were perfused using the Langendorff isolated perfusion system and a balloon-tipped catheter was placed into the left ventricle to measure left ventricular developed pressure (LVDP). Myocyte contractile function was assessed with electrical field stimulation and video microscopy. Tissue was immunostained for the expression of iNOS and for nitrotyrosine, a byproduct of protein nitration by peroxynitrite. Perfused hearts from LPS-treated rats exhibited a 57% decrease (P < 0.05) in LVDP compared to saline-treated animals. No improvement in ventricular function was observed with the administration of AG. Similarly, cardiac myocytes prepared from LPS-treated animals demonstrated a significant (P < 0.05) reduction in percent and velocity of shortening and this effect was unaltered with the same dose of AG. AG administration significantly reduced serum nitrite/nitrate levels (P < 0.05) in endotoxemic rats to control levels. Localized expression of iNOS in the myocardium was lessened with AG treatment and was not associated with peroxynitrite formation in this model of endotoxemia. The results indicate that AG given in vivo before and after endotoxin (at a concentration sufficient to decrease NO production) did not reduce cardiac depression. We conclude that selective inhibition of iNOS and the reduction of NO production do not prevent cardiac dysfunction at an early stage in an acute model of endotoxemia.

Animals↗