IEEE Transactions on Bio-medical Electronics

Issue 3 • July 1963

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  • [Table of contents]

    Publication Year: 1963, Page(s): c1
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  • IEEE Professional Technical Group on Bio-Medical Electronics

    Publication Year: 1963, Page(s): c2
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  • Editorial

    Publication Year: 1963, Page(s): 85
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  • On the Representation of Electrocardiograms

    Publication Year: 1963, Page(s):86 - 95
    Cited by:  Papers (37)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (2151 KB)

    In dealing with the sophisticated statistical analysis of medical signals such as the electrocardiogram (ECG), the first problem one encounters is how to describe each ECG by a few numbers. This is the problem of efficient representation of signals, i.e., to approximate the signal with the smallest number of basis signals while preserving the accuracy of the approximation. This paper begins with a... View full abstract»

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  • A Critical Review of Vector Electrocardiography

    Publication Year: 1963, Page(s):95 - 98
    Cited by:  Papers (4)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (1029 KB)

    The theoretical basis for information retrieval and analysis in vector electrocardiography is examined with a view to establishing fundamental limitations on commonly used clinical techniques. The basis for equivalent heart generators is specified and relationships between them are analyzed. An "ideal" lead system is defined and related to practical clinical schemes. Limitations of an "ideal" lead... View full abstract»

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  • An Experimental Determination of a Multipole Representation of a Turtle Heart

    Publication Year: 1963, Page(s):98 - 105
    Cited by:  Papers (15)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (1468 KB)

    The potentials generated by a live turtle (pseudemys) heart at the center of a spherical electrolytic tank were measured at surface points. Using a truncated multipole expansion, the dipole and quadrupole coefficients were determined from the resultant set of simultaneous equations at intervals over the QRS period. The measurement technique was checked using known artificial sources; a rough check... View full abstract»

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  • Computer Pattern Recognition Techniques: Some Results with Real Electrocardiographic Data

    Publication Year: 1963, Page(s):106 - 114
    Cited by:  Papers (11)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (1754 KB)

    Automatic interpretation of electrocardiograms is a particular example of the application of digital computers to medical diagnosis; this paper describes our experience with a new approach involving pattern recognition techniques. The program employs a multiple adaptive matched filter system with a variety of normalization, weighting, comparison, decision, modification, and adapting operations. Th... View full abstract»

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  • Transmitter for Telemetry of Biological Data from Birds in Flight

    Publication Year: 1963, Page(s):114 - 116
    Cited by:  Papers (2)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (1541 KB)

    This paper describes a light weight, rugged, frequency modulated high frequency (HF) transmitter designed for telemetering biological data from birds in flight. The transmitter, including the batteries, weighs 36 grams, operates at 230 mc, produces 3 milliwatts of power, measures 3 inches in length and 1.25 inches in diameter, and has a range of 0.5 mile. It can be carried by pigeons and birds of ... View full abstract»

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  • A Miniature Transmitter for Telemetering Muscle Potentials

    Publication Year: 1963, Page(s):117 - 119
    Cited by:  Papers (2)  |  Patents (2)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (1421 KB)

    A miniature transmitter was designed to telemeter muscle potentials from dogs. The implanted transmitter is operated by a nickel-cadmium battery. In order to obtain information over long periods of time, the battery is recharged by induction from an external power source. By using the oscillator transistor in an inverted configuration, the transmitter's circuit serves to recharge the battery witho... View full abstract»

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  • A Survey on Bio-Medical Engineering Education

    Publication Year: 1963, Page(s):119 - 123
    Cited by:  Papers (1)
    Request permission for commercial reuse | Click to expandAbstract | PDF file iconPDF (1131 KB)

    This is an investigation concerning the feasibility of establishing an undergraduate bio-medical engineering program and an interpretation of the present trends and demands for students completing this field of study. The paper is based upon a statistical study of the opinions of deans of colleges, deans of medical schools, directors of medical hospitals and research centers and directors of engin... View full abstract»

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  • In this issue - Technically

    Publication Year: 1963, Page(s):124 - 127
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  • Announcements

    Publication Year: 1963, Page(s): 128
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  • IEEE Transactions on Bio-Medical Electronics Statement of Editorial Policy

    Publication Year: 1963, Page(s): 128a
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  • Information for authors

    Publication Year: 1963, Page(s): 128a
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  • Institutional listings

    Publication Year: 1963, Page(s): 128b
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Aims & Scope

This Transactions ceased publication in 1963. The current retitled publication is Biomedical Engineering, IEEE Transactions on

Full Aims & Scope