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I.B. Tarshis

Publications and source records attributed to I.B. Tarshis.

15 recordsLinked to original sources

Diets, equipment, and techniques for maintaining crawfish in the laboratory

One commercial and 4 laboratory prepared extruded, water-stable diets were fed 3 times a week in 1-g portions to juvenile male and female White River crawfish, Procambarus acutus acutus (Girard), for 10 weeks. The. binding material in the laboratory preparation was alginate (Kelgin), whereas that in the commercial preparation was starch. No statistically significant weight differences developed between the groups of crawfish at the end of the 10-week period; all 5 diets were found satisfactory for feeding and maintaining P. acutus acutus in the laboratory, and all test crawfish survived throughout the experimental period. Weight gains were highest in a diet containing 50.5% protein; intermediate in those fed a diet with 46.0% protein; and lowest in those fed diets with 31.7 or 36.3% protein. Crawfish fed the commercial preparation of one of the 46.0% protein diets showed a slightly but not significantly higher weight gain than those fed the laboratory preparation of the diet. In an evaluation of the water stability of 5 commercially prepared animal chow diets and the commercial extruded diet, 2 of the commercial diets disintegrated after one hour exposure in water and the other 3 became bloated after one hour and remained on the surface throughout the 24-hour test. The commercial extruded diet maintained its water stability for the full 24 hours. The commercial preparation of the 46.0% protein diet was successfully used under laboratory conditions for feeding and maintaining the following crawfishes: Cambarellus shufeldtii (Faxon), Cambarus acuminatus Faxon, Orconectes limosus (Rafinesque), O. virilis (Hagen), Procambarus clarkii (Girard), and P. spiculifer (Le conte). In longevity experiments Cambarus diogenes diogenes Girard and Procambarus hinei (Ortmann) now have survived for 8 months on this diet in the laboratory.

Book chapter

Avian haematozoa 3. Color atlas of leucocytozoon simondi

The life cycle of Leucocytozoon simondi is Illustrated in a series of color photomicrographs of the various stages of development in the blackfly vector and in the tissues and blood of Anatidae. A brief discussion of the life cycle is presented and taxonomic status of the parasite is reviewed. The bibliography includes references to the stages depicted and other phases of the development, morphology and pathogenesis of .L. simondi.

Wildlife Disease

Leucocytozoonosis in Canada Geese at the Seney National Wildlife Refuge

A history is given of the Seney National Wildlife Refuge and the losses of goslings of Canada geese ( Branta canadensis ) recorded since inception of the refuge in 1935. Since 1960, when more reliable data became available, losses have been extensive every 4 years. Gosling deaths are attributed to the infection with Leucocytozoon simondi . The blackfly ( Simulium innocens ) is considered to be the prime vector in the transmission of this blood parasite to goslings.

Michigan

The feeding of some ornithophilic black flies (Diptera: Simuliidae) in the laboratory and their role in the transmission of Leucocytozoon simondi

Techniques and equipment are described for feeding, in the laboratory, Cnephia invenusta (Walker), Simulium innocens Shewell, and S. rugglesi Nicholson & Mickel collected from exposed birds at the Seney National Wildlife Refuge, Seney, Michigan, and C. ornithophilia Davies, Peterson, & Wood, S. euryadminiculum Davies, and S. rugglesi reared from larvae at the Seney Refuge ( S. rugglesi ) and the Patuxent Wildlife Research Center, Laurel, Maryland. In 4 feeding experiments with C. invenusta on Pekin ducklings, 109 fed of 194 flies exposed; in 2 experiments with S. innocens on a mallard duckling and an Emden gosling, 35 fed of 65 flies exposed; in 12 experiments with S. rugglesi on mallard ducklings and Canada goose goslings, 465 fed of 1215 flies exposed; in 40 experiments with C. ornithophilia on Khaki Campbell, mallard, and Pekin ducklings and yearling Canada and Emden goslings, 950 fed of 1713 flies exposed; and, in 2 experiments with S. euryadminiculum on Pekin ducklings, 27 fed of 46 flies exposed. Feeding time varied from 2.10 to 15 minutes. C. ornithophilia, S. innocens , and S. rugglesi fed on Khaki Campbell, mallard, and Pekin ducklings and yearling Canada geese infected with Leucocytozoon simondi Mathis & Leger were held 4-7 days after the blood meal. The flies were triturated in physiological saline and deactivated calf serum and inoculated intravenously and intraperitoneally in parasite-free Pekin, Khaki Campbell, and mallard ducklings and Canada goose goslings. Birds became infected with L. simondi 9-14 days after being inoculated with C. ornithophilia ; 4-7 days after being inoculated with S. innocens ; and 9 days after being inoculated with S. rugglesi . Starved, laboratory-fed C. ornithophilia fed first on L. simondi infected Khaki Campbell and Pekin ducklings, held 4-7 days at room temperature, then fed for the 2nd time on parasite-free Pekin ducklings, transmitted the infection by their bite. The birds showed young parasites in the peripheral blood 10 and 11 days following the 2nd feeding.

Annals of the Entomological Society of America

Equipment for transporting live black fly larvae (Diptera: Simuliiae)

In studies relating to the biology and ecology of black flies, live larvae of at least 70 species of Simuliidae have been collected from their natural breeding sites and transported in containers with nonagitated water for short distances to the laboratory. One of us (Tarshis 1966) found, however, that even small numbers of simuliid larvae cannot survive in containers with nonagitated water for more than 6 hr. Additionally, when massive numbers of larvae are introduced into transport containers in which the water is not agitated, the larvae perish because they become entangled within the masses of silken threads they emit whenever disturbed (Tarshis and Neil 1970). Therefore, when transporting larvae long distances or when transporting large numbers of larvae any distance, it is essential to agitate the water in the transport containers.

Annals of the Entomological Society of America

Two species of Simuliidae (Diptera), Cnephia ornithophilia and Prosimulium vernale, from Maryland

The finding of Cnephia ornithophilia Davies, Peterson, & Wood and Prosimulium vernale Shewell for the first time at the Patuxent Wildlife Research Center, Laurel, Maryland, is described. Larvae of C. ornithophilia were collected Nov. 15, pupae Feb. 14, and adult flies Feb. 28. No immature or adult specimens were found between Apr. 2 and Nov. 14. The greatest number of immature stages was found in a 3- to 5-foot-wide stream several hundred feet long, 1-8 inches deep, with a stream flow between 0.49 and 3.30 feet per second. The water temperature varied from 0.5° to 4.0°C, the oxygen content was 10-13 ppm; and the p H varied from 6.9 to 7.4. Larvae of P. vernale were collected Nov. 30 through March, pupae from February through Apr. 1, and adult flies from Feb. 26 through Apr. 1. No immature or adult specimens were found between Apr. 2 and Nov. 29. The largest number of immature stages of P. vernale was found in a 6- to 16-foot-wide stream, 100 feet long, and 1.2 inches deep. The stream flow was between 0.92 and 1.36 feet per second. The water temperature was 0.5°C; p H was 6.7; and oxygen content was 7 ppm.

Maryland

Mass movement of black fly larvae on silken threads (Diptera: Simuliidae)

Stoppage of waterflow in a stream resulted in the migration of massive numbers of black fly larvae on silken threads. Larvae were found on single silken threads, but the heaviest concentrations were on “cables” composed of 25-50 individual silken threads. The larvae were attached in concentric rings around the silken threads and cables.

Annals of the Entomological Society of America

Collecting and rearing black flies

This paper, based on a study carried out at the Seney National Wildlife Refuge, Seney, Michigan, and the Patuxent Wildlife Research Center, Laurel, Maryland, describes methods and techniques for collecting, storing, and rearing 8 species of Simuliidae. Included in the study were Cnephia dacotensis (Dyar & Shannon), C. mutata (Malloch), Prosimulium fuscum Syme & Davies, Simulium aureum Fries, S. decorum (Walker), S. venustum Say, S. verecundum Stone & Jamnback, and S. vittattum Zetterstedt. Simuliid eggs collected from a variety of habitats, packed with wet materials in plastic bags and held at 4°C, have remained viable, thus far, up to 424 days. Eggs held at 0° to −70°C failed to hatch when placed in rearing aquariums. Air-dried eggs held at 4°C for 339–535 days failed to hatch after being held in aquariums for 166 days. Immature stages of black flies were successfully reared in 1¼-gallon Pyrex jars and 15-gallon plexiglas aquariums in which the water was agitated by compressed air and aquarium pumps. Water velocities of 0.250–0.542 feet per second were obtained in streams of air bubbles created by use of air stones. Of 21 larval diets used, one consisting of Purina Dog Chow (60-mesh or finer), brain-heart infusion broth, and brewer's yeast powder, and a second consisting of Wayne's dog chow (60-mesh or finer) and brain-heart infusion broth without brewer's yeast powder, were most satisfactory. Larvae were fed 1 gram of diet per 1¼- gallon aquarium and 2 grams per 15-gallon aquarium biweekly. In most of the 225 cultures of S. aureum, S. decorum, S. verecundum, S. venustum, and S. Vittatum it took from 1 to 5 days for the development of eggs to larvae (165 cultures, 73%) and the same number of days for the development of pupae to adults (172 cultures, 76%). Development time for larvae to pupae was fairly closely divided between 11–15 days (63 cultures, 28%) and 16–20 days (53 cultures, 23.6%). The entire period for development from egg to adult after placement of eggs in rearing aquariums was from 21 to 25 days for 26.7% of the cultures.

Annals of the Entomological Society of America

Use of fabrics in streams to collect black fly larvae

A technique is described for using strips of gauze to collect large numbers of larvae of Cnephia dacotensis (Dyar & Shannon), Simulium decorum (Walker), S. venustuni Say, S. vcrecundum Stone & Jamnback, and S. vittatum Zetterstedt from various water habitats.

Annals of the Entomological Society of America