Document mbpV9Yzy977Mo9JnYzE04VEvk
606 INDUSTRIAL HYGIENE AND OCCUPATIONAL MEDICINE
Arterial blood examination (table 1) showed a fall in p02 and O2 saturation, and an increase in the alveolar-arterial oxygen pressure difference. Chloramphenicol (chloromycetin) was started on September 19 because of an infection of the upper respiratory tract, and ACTH therapy was started on September 27 (table 1). Subsequent measurements of lung function showed a rather marked increase in maximum breathing and a slight increase in vital capacity. Exercise tolerance improved, and the patient no longer required intermittent oxygen therapy. However, she still had visible cyanosis.
Cortisone was administered in the period between October 6 and 18 but apparently produced little additional improvement.
The eosinophil count showed a good fall, and 17-ketosteroids excretion was significantly increased, indicating adrenal stimulation by ACTH (table 1).
Table 1 (case 1).--Results 0} Studies of Pulmonary Function
Patient P. P., woman Age, 53 yr.
Height, 178 cm.
Weight, 65.2 Kg. Body surface area, 1.82 M.2
All respiratory volumes, BTPS *
Diagnosis: Pulmonary fibrosis--cause unknown
Minute volume, L./min............................................................. ...... Respiratory rate, resp./min.................................................... ....... Tidal volume, L......................................................................... Inspiratory reserve volume, L.............................................. ....... Expiratory reserve volume, L.............................................. Vital capacity, L....................................................................... Expected vital capacity, L.................................................... Residual volume, L.................................................................... Residual volume -5- total volume, %................................ ....... Alveolar ventilation, L./min................................................ Respiratory dead space, L................................................... Maximum breathing capacity, L./min.............................. Expected maximum, breathing capacity, L./min.......... ....... Total capacity, L......................................................................
June 19, 1950 12.5 20 0.26
50.4
83
Sept. 26, 1950
13.05 24 0.55 0.36 0.76 1.67 2.92 1.14 40.6 4.74 0.300 70 83 2.81
Oct. 6, 1950
12.96 17 0.76 0.66 0.64 2.06 2.92 1.37 40.0 5.80 0.244 101 84 3.43
Oct. 18, 1950
11.13 13 0.86 0.93 0.34 2.13
Nov. 3, 1950
11.73 17 0.69 1.03 0.34 2.06
1.52 41.6
7.66 0.292 115 84 3.65
1.18 36.5 5.12
0.375
104 84 3.24
Alveolar pOa, mm. Hg...........................................................
101 111 120 117
Arterial pCh, mm. Hg.............................................................
34 44 50 45
Arterial pCC>2, mm. Hg.............................'............................
46 38 32 36
Alveolar-arterial difference, mm. Hg.................................. ....... 48 67 67 70 72
Serum CO2, vol. %......................................... ..........................
56.00
55.76
67.81
7.34 7.42 7.51 7.43
Arterial blood CO2 content, vol. %....................................
44.62 . 42.96- 44.31
40.00
Arterial blood O2 content, vol. %......................................
16.89
19.48
19.95
19.85
Arterial blood Oa capacity, vol. %.................................... Arterial blood O2 saturation, %......................................... ....... 77
24.18 69
24.39 79
22.92
86
24.00 82
Hematocrit, RBO, %...............................................................
59.5 .59.5
55.6
si
j/ Therapy: ACTH 9/27/60-10/19/50--80 mg./day; cortisone 10/10/50-10/17/50--100 mg./day.
Eosinophil count: 176-U/mm.3 17-KetosteroIds excretion: 9.7-22 mg./24 hr. * The significance of BTPS Is explained In the text under the heading "Methods."
v. Case 2 (N. A., P.B.B.H. No. 6B-475).--Fifteen years before admission this 16 year old boy
had an eczema which persisted for four years, before it subsided, and he began to have bouts
of coughing and wheezing associated with insomnia and asthenia. Two months before admission
nocturnal orthopnea developed with persistent asthma which failed to respond to 1: 100 epine
phrine hydrochloride inhalation. Essential physical findings at admission on March 6, 19S0
were a respiratory rate of 25 and a barrel-shaped chest with many inspiratory and expiratory
wheezes, squeaks and groans. He was moderately dyspneic without cyanosis. Following control
observations, a brief course of ACTH therapy was given.
.~
Charts 2 and 3 describe the pulmonary compartments and vital capacity, and show the
temporary increase in residual volume, during an asthmatic attack; the effects of epinephrine on
the vital capacity and maximum breathing capacity are also demonstrated. The third column
of chart 2 . shows the improvement due to ACTH, manifested by reduction in the residual
volume and increase in the vital capacity. One week, after cessation of ACTH therapy, the