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Text Book of Veterinary Medicine, Volume 4 (of 5) · James Law — chapter 28 of 154 · ~1,648 words · public domain

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DISTEMPER IN DOGS AND CATS.

Definition. Synonyms. Animals susceptible: dog, fox, jackal, hyena, wolf. Historic notes. Causes: contagion, inoculation, immunity, contact with sick, clothing, bedding, kennel: infection fixed—little diffusible, dogs at large, chill, domestication, high breeding, special breeds, shows, public conveyances, vegetable diet, debilitating conditions, catarrhs, change of climate, recurrent attacks, youth, native susceptibility, teething. Microbiology: micrococci, bacilli, mixed cultures, Shantyr’s observations, Lignieres’. Virulent products—all secretions and exudates. Vitality: virus survives drying, freezing, dilution in water. Destroyed by disinfectants. Forms of distemper: catarrhal, ophthalmic, cutaneous, gastro-hepatic, bronchitic, pulmonary, nervous. Duration 20 to 30 days. Mortality 20 to 70 per cent. Prognosis: unpromising conditions. Incubation 4 to 7 days. Symptoms: hyperthermia (103° to 104°), dulness, debility, anorexia, staring coat, tremors, seeking warmth, early fatigue, dry burning nose and footpads, irregular temperature, simultaneous congestion of all visible mucosæ; Respiratory phenomena; sneezing, congestion of nose, discharge, blocking, snuffling, rubbing, cough, retching, vomiting; percussion flatness in lungs, in islets or along the lower part; auscultation râles, wheezing, crepitus, creaking, etc.; epiphora, swollen eyelids, weeping, photophobia, muco-purulent discharge, sticking of lids together, opacities, vesicles, ulcers; red, hot, buccal mucosa, costiveness, fetid diarrhœa, tenesmus, weakness, emaciation; skin eruption, on delicate areas, papules, vesicles with colored contents, pustules, sticky, greasy exudate; irritability, restlessness, taciturnity, depraved appetite, spasms, delirium, paresis, epilepsy, chorea. Lesions: inflammation, degeneration, ulceration on air-passages, alimentary tract, lymph glands, kidneys, liver, cerebral and spinal meninges, leucocytic infiltration: offensive odor. Lignieres’ views of microbes. Prevention: quarantine new dogs for 14 days, wash, disinfect all collars, etc., avoid shows and meetings, exclude street dogs, protect against mice, rats, birds, shut up all dogs during an epizoötic; separate a pack into small lots; seclude the sick and all belonging to them. Immunization: by lung exudate, by weakened cultures. Treatment: hygienic, dietetic, warm baths, antipyretics, antiferments, calomel, phenic acid, eliminants, expectorants, collyria, emetic, demulcents, bismuth, etc., pepsin, quinine, nerve sedatives, tonics.

Definition. A contagious, febrile affection attacking dogs (and by inoculation cats), and tending to local inflammatory and degenerative lesions in the mucosæ, lungs, bowels, liver, skin, kidneys, and nervous system,—a first attack usually immunizing against a second.

Synonyms. Contagious catarrhal fever; Dog ill; Bronchial Catarrh; Intestinal Catarrh; Fr. Maladie des Chiens, Maladie du jeune age, Typhoïde, Typhus des chenils, Variole du chien; Ger. Staupe; It. Cimurro.

Animals susceptible. Dogs, especially puppies and young dogs, and other members of the canine race, fox, jackal, hyena, wolf. Cats suffer from inoculation (Laosson), also apes (Cadeac). Old cats and dogs are often immune, also all animals that have passed through one attack of the disease.

History. The older English veterinarians quote the epizoötics in dogs described by Virgil, Aristotle and even Homer as probably distemper. Laosson attributes to it a canine epizoötic which prevailed in Bohemia in 1028. It appears to have been unknown in Europe in the earlier third of the 18th century though prevailing in Peru. According to Ulloa, it was introduced from Peru into Spain in 1735, whence, it spread into France (1740), Germany (1748), Ionian Isles, Greece (1759), England (1760), Italy (1764) and Russia (1770), Sweden and Norway (1815), Siberia (1821). Since that time it has prevailed in Europe and many dependencies of European nations.

Causes. Its advent in Europe as a new disease in the second third of the 18th century, its steady spread, its continued prevalence, and extension, concur with the infection of kennels and districts by the introduction of a sick dog, in demonstrating its purely contagious nature, and this implies a living microbe transferred from animal to animal. If any doubt remained it must be dispelled by the inoculations which have been constantly successful when made on young puppies, or dogs that have not previously suffered, and on cats. A first attack confers immunity.

Among accessory causes may be especially named contact with the sick dog, its clothing or bedding, and above all its kennel. A kennel may retain infection indefinitely, especially if there is a constant accession of puppies or susceptible dogs. On the contrary it is not readily carried on the clothes of attendants, and the inmates of a kennel often remain sound, though only separated by a yard from the infected one, and though cared for by the same attendant. Yet so universally diffused is the contagion that few dogs escape it until they are a year old.

The habit of letting dogs run at large, to meet in roads and fields is a most prolific cause, which might easily be done away with where distemper is prevalent.

A chill is a common condition, hence injudicious washing, swimming in cold water, exposure of house dogs to cold storms, or outdoors at night, sleeping in cold, damp cellars, on cold stones or metal plates, or in passages in a current of cold air are frequent factors. Yet it often spreads rapidly in the summer, the heat favoring the preservation and diffusion of the germ.

House dogs as a rule suffer more severely, as their systems are more sensitive to the cold, and the resisting power to invading microbes is lessened. Country dogs and those living in the open air are hardier and more resistant and often have the disease in a mild form.

High bred dogs suffer more severely probably largely from the greater protection and care lavished on them and their consequent diminished power of resistance. Newfoundlands, great Danes, pointers, pugs, poodles, spaniels and greyhounds may be named as especially liable.

The exposure to infection at shows, and in traveling by rail, steamboat or other infected conveyance must be considered as among the prominent causes.

An exclusively bread diet has been recognized as a predisposing cause, by reason of its lowering the stamina of the carnivorous animal.

Any condition which induces debility whether severe or continued disease, parasitisms, impure air, under feeding, improper food, rachitis, or scurvy, etc., must be admitted to operate in the same way. Any catarrhal disease of the nose or bronchia is especially conducive to the affection by weakening the mucosa and making an easy entrance channel for the germs.

Change of climate is a strongly predisposing condition, which not only hastens an attack, but even, at times, arouses anew the susceptibility in dogs that have passed through a first attack. Dogs that suffered in England have had a second attack in India, and some have even had a third attack when brought back to Europe. Four attacks within a year, in the same dog, and without change of climate, are recorded by Friedberger and Fröhner.

Youth is much more susceptible than age, even apart from the immunity which comes to the mature dog from a first attack. Yet some puppies are insusceptible from birth.

Microbiology. No one pathogenic organism has been proved to be the constant infecting agent, yet two classes of investigators have contended in favor of micrococci and bacilli respectively.

Micrococci, 1 to 3μ in diameter, singly or in chains of 6 or 8 have been found in the blood, lungs, liver, kidneys and spleen (Semmer, Friedberger, Krajewski, Rabe, Mathis, Marcone, Meloni, Kitt).

Bacilli were found associated with micrococci by Semmer, Legrain and Jacquot, Laosson, Millais, Schantyr, and Galli-Valerio. As observed by the latter they were 1.25, to 2.5μ long, by 0.31μ broad and took the Gram stain. Cultivated on gelatine the colonies were waxy, lustrous points, which indented the gelatine without liquefying it.

Cultures of the mixed bacteria (cocci and bacilli) and their inoculation on young dogs produced the symptoms of distemper with subsequent immunity (Laosson, Millais). Legrain and Jacquot claimed immunity, as resulting from inoculations with the cocci in pure cultures. Galli-Valerio, using the mixed cultures produced all the symptoms (pulmonary and cerebro-spinal) of distemper.

Schantyr, ignoring the cocci, describes three bacilli which cause three different diseases (distemper, abdominal typhus, and typhoid), but the distinctions are not clear nor generally accepted.

Lignieres and Even, in Argentina, and dealing with the more susceptible high bred dogs (fox terriers, great Danes and carlins), found constantly in the blood of the dog, in the early stages of the disease, a long, delicate bacillus, nonmotile and easily stained in aniline, but not by Gram’s method. Inoculated on the Guinea pig it shortens, approximating rapidly in successive passages to a cocco-bacillus, and assumes the general characters of Lignieres’s pasteurella. Different bacteria may be found in the lungs, bronchial and nasal mucus, tears and vesicles.

Lignieres’s pasteurella is inoculable on the Guinea pig, mouse, rabbit, and dog, producing the symptoms of local or general infection. Two centigrammes, subcutem, in the Guinea pig, produced a local œdema, disappearing in four or five days and securing immunity. Five cc. subcutem proved fatal in 48 hours; intraperitoneal in 24 hours. In the rabbit 1cc., subcutem, caused local œdema for 2 days and hyperthermia (104°) for 3 days; 1cc. intravenously, caused fever for 3 weeks, diffluent blood and hæmorrhagic lesions in lungs, liver, kidneys, bowels, spleen, and serosæ. In the mouse, 4 to 8 drops, subcutem, caused œdema, and recovery or death in 2 to 4 days. In such cases the microbe was found in pure cultures in the blood or inoculated tissues.

Inoculations of the pure cultures on dogs produced in different cases, gastro-enteritis, pneumonia, pleuro-pericarditis, and arthritis, in various combinations. If the animal survives it is immune.

Grown on peptonized bouillon, neutral or slightly alkaline, the bacillus forms, in 24 hours, small granular colonies which fall to the bottom, leaving the liquid clear. The addition of serum renders this more abundant without causing opacity.

On pancreatic bouillon the growth is very free without indol.

On gelatine plates there are fine punctiform colonies, transparent, but becoming white and opaque in 8 or 10 days. Similar colonies form in stab and streak cultures. The gelatine is not liquefied. Cultures in milk cause neither coagulation nor acidity. There is little or no growth in hay tea, on potato, nor in vacuum. The cultures have the peculiar odor of the pasteurella.

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