Literature DB >> 9068094

Ergospirometry and its history.

W Hollmann1, J P Prinz.   

Abstract

Ergospirometry is a diagnostic procedure to continuously measure respiration and gas metabolism during ergometer exercise. It enables judgement of function and performance capacity of the cardiopulmonary system and metabolism. Ergospirometry is made up of the 2 components spirometry and ergometry. The first attempts to measure human gas metabolism while performing quantified physical work can be traced back to the year 1790. The development of procedures to measure gas metabolism and respiration as well as the construction of ergometers in the nineteenth and twentieth centuries are described. Ergospirometry and routinely performed clinical performance diagnosis were introduced in 1929, but it was not until the 1950s when the first ergospirometry apparatus which met all scientific requirements was developed. The parameters used and the physiological and pathophysiological findings by ergospirometry are given in an historical frame. Numerous medical fields have profited from the technique of ergospirometry, for example: cardiology, pneumology, sports medicine, exercise physiology, biochemistry, clinical pharmacology, surgery, orthopaedics, paediatrics and gerontology, besides such global disciplines as preventive medicine, exercise therapy and rehabilitative medicine.

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Year:  1997        PMID: 9068094     DOI: 10.2165/00007256-199723020-00003

Source DB:  PubMed          Journal:  Sports Med        ISSN: 0112-1642            Impact factor:   11.136


  16 in total

1.  DETECTING THE THRESHOLD OF ANAEROBIC METABOLISM IN CARDIAC PATIENTS DURING EXERCISE.

Authors:  K WASSERMAN; M B MCILROY
Journal:  Am J Cardiol       Date:  1964-12       Impact factor: 2.778

2.  [On the possibilities of test-bench studies of the lungs, heart and blood circulation during exertion].

Authors:  H VALENTIN; W HOLLMANN; H VENRATH
Journal:  Med Welt       Date:  1960-07-30

3.  [On the problem of total work load in spiroergometric performance tests].

Authors:  K KOENIG; H REINDELL; H ROSKAMM
Journal:  Dtsch Med Wochenschr       Date:  1962-06-22       Impact factor: 0.628

4.  [Comparative performance studies on male and female persons with continuous registration of ventilation, metabolism, pulse frequency and blood pressure].

Authors:  W HOLLMANN; H VALENTIN; H VENRATH
Journal:  Munch Med Wochenschr       Date:  1959-09-25

5.  [Heart function in hypertension with special reference to the determination of intracardiac pressure].

Authors:  W BOLT; H VALENTIN; H VENRATH; L WULLEN
Journal:  Dtsch Med Wochenschr       Date:  1952-03-07       Impact factor: 0.628

6.  [Extent of cardiac function in insufficiency of the left heart].

Authors:  W BOLT; H VALENTIN; H VENRATH
Journal:  Z Kreislaufforsch       Date:  1950-12

7.  Mechanisms and patterns of blood lactate increase during exercise in man.

Authors:  K Wasserman; W L Beaver; B J Whipp
Journal:  Med Sci Sports Exerc       Date:  1986-06       Impact factor: 5.411

8.  Anaerobic threshold and respiratory gas exchange during exercise.

Authors:  K Wasserman; B J Whipp; S N Koyl; W L Beaver
Journal:  J Appl Physiol       Date:  1973-08       Impact factor: 3.531

9.  [Age influence on the spiroergometric measurements in submaximal region].

Authors:  W Hollmann; W Barg; G Weyer; H Heck
Journal:  Med Welt       Date:  1970-07-11

10.  [Fifty years of ergospirometry (author's transl)].

Authors:  W Hollmann; H Valentin
Journal:  MMW Munch Med Wochenschr       Date:  1980-02-01
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  2 in total

1.  The Moxus Modular metabolic system evaluated with two sensors for ventilation against the Douglas bag method.

Authors:  Hans Rosdahl; Thomas Lindberg; Fredrik Edin; Johnny Nilsson
Journal:  Eur J Appl Physiol       Date:  2012-12-07       Impact factor: 3.078

2.  Disadvantages of Automated Respiratory Gas Exchange Analyzers.

Authors:  Juan José Ramos-Álvarez; Irma Lorenzo-Capellá; Francisco Javier Calderón-Montero
Journal:  Front Physiol       Date:  2020-02-07       Impact factor: 4.566

  2 in total

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