Proceedings of the International School of Physics "Enrico Fermi.", Volume 76N. Zanichelli, 1981 - Nuclear physics |
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Page 124
... pulse contour cardiac stroke output computer » is given in [ 38 ] and used in the experiment in sect . 4. A pulse contour cardiac - output computer is a device that computes cardiac output ( i.e. total flow ) from the aortic pressure ...
... pulse contour cardiac stroke output computer » is given in [ 38 ] and used in the experiment in sect . 4. A pulse contour cardiac - output computer is a device that computes cardiac output ( i.e. total flow ) from the aortic pressure ...
Page 414
... pulse duration time Fig . 2. Factors determining the dimensions of the resolution cell in an ultrasonic pulse - echo system . The axial length of the resolution cell corresponds to the duration of the echo pulse envelope which exceeds ...
... pulse duration time Fig . 2. Factors determining the dimensions of the resolution cell in an ultrasonic pulse - echo system . The axial length of the resolution cell corresponds to the duration of the echo pulse envelope which exceeds ...
Page 448
... pulse height distribution obtained is the distribution in the energy imparted mod- ified by imperfect energy resolution and sometimes even lacking linearity between the energy imparted and the pulse height [ 16 ] . Figure 4 shows pulse ...
... pulse height distribution obtained is the distribution in the energy imparted mod- ified by imperfect energy resolution and sometimes even lacking linearity between the energy imparted and the pulse height [ 16 ] . Figure 4 shows pulse ...
Contents
A R D THORNTON | 1 |
Physicists and clinicians | 5 |
The Fourier transform properties of an image | 12 |
Copyright | |
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alveolar amplitude analysis aorta aortic approximately arterial pressure arterial system attenuation value basilar membrane beam blood flow blood pressure C₁ capillary cardiac output circulation clinical cm³ CO₂ cochlea cochlear compartment compliance components computed tomography concentration constant counting rate cross-section cuff decrease detector diameter diastolic distribution effect elastin electrode energy equation filter fluid Fourier transform frame frequency function haemoglobin hair cells halothane heart rate impulse response increase left heart linear linear-attenuation coefficient lung manometer measured medical physics membrane method mmHg muscle normal obtained oxygen P₁ P₂ pacemaker patient peripheral resistance photons physicist physiological pulmonary pulsatile pulse ratio region Rendiconti S.I.F. sample scan scanner segment shown in fig shows signal stroke volume systolic techniques tissues transducer transmural pressure tube ultrasonic V₁ velocity venous system ventilation ventricle ventricular vessel viscoelastic volume wall wave form Windkessel X-ray zero