Biomedical subjects
B Weiss
Publications and source records attributed to B Weiss.
Behavioral thermoregulation by cats with pyrogen-induced fever.
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Effects of the relevance of interpolated stimuli on time-error in the comparative judgments of weights.
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[Neuromuscular excitability in stutterers].
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Evidence for a role of adenosine 3',5'-monophosphate in adipose tissue lipolysis.
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The enzymatic phosphorylation of nucleic acids and its application to end-group analysis.
Polynucleotide kinase catalyzes the transfer of a phosphate group from ATP to the 5'-hydroxyl termini of polynucleotides. Selective labeling of the 5'-hydroxyl termini of DNA with polynucleotide kinase has been used to study the number and the identity of the 5'-terminal residues of bacteriophage DNA's, and to examine the nature of the phosphodiester bond cleavages produced by endonucleases and by sonic irradiation. The intact strands of T7 DNA bear 5'-phosphoryl end-groups; only deoxyadenylate and deoxythymidylate are present as 5'-terminal residues. The intact strands of native lambda-DNA bear 5'-hydroxyl end-groups. M13 DNA, a circular molecule, cannot be phosphorylated. End-group labeling of DNA provides a method for determination of molecular weight; calibration against other DNA preparations is not required. The molecular weight of a single strand of T7 DNA, determined by end-group labeling, is 13.1 x 10(6); the molecular weight of a single strand of lambda-DNA is 16.0 x 10(6). These values are in agreement with molecular weight estimates by sedimentation analysis and electron microscopy. Sonic irradiation of DNA has been shown to favor the production of polynucleotides terminated by 5'-phosphomonoester groups. All four deoxyribonucleotides are present as 5'-terminal residues of sonicated DNA.
A study of conidiation in Neurospora crassa.
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End-group labeling of nucleic acids by enzymatic phosphorylation.
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Oxidation of ethylene glycol to glycolaldehyde by mammalian tissues.
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Effect of ethanol on ethylene glycol oxidation by mammalian liver enzymes.
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Computer control of operant behavior experiments via telephone lines.
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A computer analysis of serial interactions in spaced responding.
Serial dependencies in interresponse times were studied by means of a digital computer. In monkeys exposed to a DRL 20-sec schedule of reinforcement, serial interactions appeared at all stages of training. Early in training the serial effects consisted of trains of relatively long interresponse times interspersed among trains of relatively short ones. Later on, the serial effects appeared to be characterized by a tendency to drift up and down in long wavelength periods around the minimum interval required for reinforcement. After training to a point at which most interresponse times produced reinforcement, serial effects of a still more subtle nature appeared. These effects were made apparent by autocorrelation and power spectrum methods and consisted of both long-term and extremely short-term fluctuations in interresponse times.
Interrelationships of catecholamines with other endocrine systems.
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Influence of drugs on behavior controlled by internal and external stimuli.
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Synthesis of DL-1,2-dihydroxyhexadecane, DL-erythro-1,2,3,-trihydroxyhexadecane, and DL-1,2-dihydroxy[1,3,4-3H]hexadecane. Metabolism of [1,2-3H]palmitaldehyde and DL-1,2-dihydroxy[1,3,4-3H]hexadecane.
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Behavioral thermoregulation during vitamin B6 deficiency.
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Effects of a concurrent task on fixed-interval responding in humans.
Subjects pressed a telegraph key to illuminate a meter dial on which pointer deflections appeared at fixed intervals. Upon detecting a deflection they were required to press another key to reset the pointer to zero. This detecting and resetting operation reinforced the behavior of pressing the light-flashing key (i.e., the observing responses). The usual pattern of responding on the light-flashing key was a long pause following the reinforcement and an abrupt transition to a steady response rate toward the end of the interval. When the subjects were required to perform a concurrent subtraction task, the pattern of responding changed in varying degrees, ranging from complete loss of typical fixed-interval behavior to a slight shortening of the post-reinforcement pause. These effects were attributed to the disruption of the self-produced verbal chains (counting or reciting) that ordinarily govern human behavior on this schedule.
Human Observing Behavior after Signal Detection.
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