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Virology.

Periodical
Virology
Publisher:
Academic Press.
Frequency: Twenty six no. a year
Country: United States
Language: English
Start Year:1955 -
ISSN:
0042-6822 (Print)
1096-0341 (Electronic)
0042-6822 (Linking)
Impact Factor
3.7
2022
NLM ID:0110674
(DNLM):V07900000(s)
(OCoLC):01769213
Coden:VIRLAX
LCCN:a 57005753
Classification:W1 VI828
Identification of equine herpesvirus 4 glycoprotein G: a type-specific, secreted glycoprotein.
Virology    September 1, 1992   Volume 190, Issue 1 143-154 doi: 10.1016/0042-6822(92)91200-e
Crabb BS, Nagesha HS, Studdert MJ.Equine herpesvirus 4 (EHV4) glycoproteins of M(r) 63K and 250K were identified in the supernatant of infected cell cultures. The 63K glycoprotein was type-specific; that is, it reacted with monospecific sera from horses that had been immunized or infected with EHV4, but not with monospecific sera from horses immunized or infected with EHV1, a closely related alphaherpesvirus. It was postulated that the secreted protein may be the homologue of similarly secreted glycoproteins of herpes simplex virus 2 glycoprotein G (HSV2 gG) and pseudorabies virus (PRV) gX, which is the homologue of HSV2 gG. T...
The pathogenicity of Ab4p, the sequenced strain of equine herpesvirus-1, in specific pathogen-free foals.
Virology    July 1, 1992   Volume 189, Issue 1 317-319 doi: 10.1016/0042-6822(92)90707-v
Gibson JS, Slater JD, Field HJ.The sequencing of the genome of equine herpesvirus-1 (EHV-1) is reported in Elizabeth A. R. Telford, Moira S. Watson, Kathryn McBride, and Andrew J. Davison, 1992, Virology, 189, 304-316. The sequence was derived using a plaque-purified clone of EHV-1 strain Ab4 (designated Ab4p). To ensure that Ab4p shares the pathogenic characteristics of parental Ab4 (hereafter Ab4), both were inoculated intranasally into foals, specifically free from EHV-1 and EHV-4. Clinical signs, including rectal temperature, were similar for both viruses. In addition, nasal shedding of virus was observed over a 1- to 2...
Characterization of a new avian-like influenza A virus from horses in China.
Virology    May 1, 1992   Volume 188, Issue 1 245-255 doi: 10.1016/0042-6822(92)90754-d
Guo Y, Wang M, Kawaoka Y, Gorman O, Ito T, Saito T, Webster RG.In March 1989 a severe outbreak of respiratory disease occurred in horses in the Jilin and Heilongjiang provinces of Northeast China that caused up to 20% mortality in some herds. An influenza virus of the H3N8 subtype was isolated from the infected animals and was antigenically and molecularly distinguishable from the equine 2 (H3N8) viruses currently circulating in the world. The reference strain A/Equine/Jilin/1/89 (H3N8) was most closely related to avian H3N8 influenza viruses. Sequence comparisons of the entire hemagglutinin (HA), nucleoprotein (NP), neuraminidase (NA), matrix (M), and NS...
Analysis of immediate-early transcripts of equine cytomegalovirus.
Virology    February 1, 1992   Volume 186, Issue 2 496-506 doi: 10.1016/0042-6822(92)90015-h
Raengsakulrach B, Staczek J.Equine cytomegalovirus (ECMV) contains a linear, double-stranded DNA genome composed of a 146-kbp unique region flanked by a pair of 18-kbp direct repeat (DR) sequences at the termini. Cycloheximide, actinomycin D, and phosphonoacetic acid were applied to infected cell cultures to divide viral transcription into immediate-early (IE), early, and late phases. Eight IE transcripts were identified and mapped to two regions (I and II) of the viral genome. Two of these IE RNAs (13.0 and 5.5 kb in size) were transcribed from region I, which is located within the DR regions; these IE genes are diploid...
Identification and characterization of the structural and nonstructural proteins of African horsesickness virus and determination of the genome coding assignments.
Virology    February 1, 1992   Volume 186, Issue 2 444-451 doi: 10.1016/0042-6822(92)90009-e
Grubman MJ, Lewis SA.Proteins present in purified African horsesickness virus (AHSV) and in infected cells were analyzed by SDS-polyacrylamide gel electrophoresis. Twelve viral proteins were identified, one minor and four major structural proteins, three major and two minor nonstructural proteins, as well as variable amounts of two additional structural proteins. Cell-free translation of total AHS virion RNA in a rabbit reticulocyte system resulted in the synthesis of proteins which were qualitatively and quantitatively similar to those found in infected cells. The in vivo and in vitro synthesized proteins were vi...
Comparative growth of different rotavirus strains in differentiated cells (MA104, HepG2, and CaCo-2).
Virology    October 1, 1991   Volume 184, Issue 2 729-737 doi: 10.1016/0042-6822(91)90443-f
Kitamoto N, Ramig RF, Matson DO, Estes MK.The production of viral antigen after infection of MA104, HepG2 (derived from human liver), and CaCo-2 (derived from human colon) cells with various cultivatable human and animal rotavirus strains was compared using immunofluorescence tests. All rotavirus strains examined expressed antigen in CaCo-2 cells and MA104 cells, but only some virus strains, namely, SA11-Cl3 (simian), RRV (simian), CU-1 (canine), and Ty1 (turkey), produced antigen in numbers of infected HepG2 cells comparable to infections in MA104 and CaCo-2 cells. Fl-14 (equine), OSU (porcine), NCDV (bovine), and Ch2 (chicken) strai...
The Tat protein of equine infectious anemia virus is encoded by at least three types of transcripts.
Virology    October 1, 1991   Volume 184, Issue 2 521-530 doi: 10.1016/0042-6822(91)90422-8
Noiman S, Yaniv A, Tsach T, Miki T, Tronick SR, Gazit A.Nucleotide sequence analysis of a cDNA library of EIAV-infected canine cells established a complex pattern of gene expression, characterized by alternatively spliced polycistronic transcripts. The EIAV tat gene product was shown to be encoded by at least three species of mRNA which differed in their ability to trans-activate the EIAV LTR upon expression in canine cells. The most active cDNA was monocistronic, consisting of three exons. The most abundant cDNA in the library contained four exons and was identical to a polycistronic transcript previously described (Noiman et al., 1990b) which con...
Transient suppression of equine immune responses by equine infectious anemia virus (EIAV).
Virology    September 1, 1991   Volume 184, Issue 1 55-66 doi: 10.1016/0042-6822(91)90821-r
Newman MJ, Issel CJ, Truax RE, Powell MD, Horohov DW, Montelaro RC.Suppression of the immune system is a common aspect of the disease pathogenesis associated with retroviral infections in both man and animals. We have measured transient suppression of the equine immune system as a loss or decrease in antigen-specific and polyclonal lymphocyte proliferation following experimental infection of ponies with three variants of equine infectious anemia virus (EIAV) with difference virulence characteristics. The transient suppression of proliferative responses was temporally associated with recurrent febrile episodes, which are the hallmark symptom of EIAV-induced di...
Localization of conserved and variable antigenic domains of equine infectious anemia virus envelope glycoproteins using recombinant env-encoded protein fragments produced in Escherichia coli.
Virology    October 1, 1989   Volume 172, Issue 2 609-615 doi: 10.1016/0042-6822(89)90203-1
Payne SL, Rushlow K, Dhruva BR, Issel CJ, Montelaro RC.Previous characterizations of equine infectious anemia virus (EIAV) glycoprotein variation by DNA sequence analysis and epitope mapping using monoclonal antibodies (MAbs) have revealed the presence of conserved and variable regions within the EIAV env gene. To extend these studies, fragments of the EIAV envelope proteins gp90 and gp45 were expressed in Escherichia coli and used in Western blot analysis with a diverse panel of equine immune sera to identify antigenic segments. All sera from EIAV-infected animals reacted with the carboxyl terminal portion of gp90 and the amino terminal portion o...
DNA sequence and comparative analyses of the equine herpesvirus type 1 immediate early gene.
Virology    September 1, 1989   Volume 172, Issue 1 223-236 doi: 10.1016/0042-6822(89)90124-4
Grundy FJ, Baumann RP, O'Callaghan DJ.The immediate early (IE) proteins of herpesviruses are important regulatory factors which control the expression of genes at the transcriptional level. We report the DNA sequence of the immediate early gene of the alphaherpesvirus equine herpesvirus type 1 (EHV-1). This sequence is shown to be extremely rich in guanine and cytosine, resulting in a highly biased codon usage. The IE gene region possesses 38 open reading frames (ORFs) greater than 300 bp in length, 11 of which have coding regions of at least 100 amino acids (aa) following potential translation initiator codons. The largest ORF co...
Viral transcripts in cells infected with defective interfering particles of equine herpesvirus type 1.
Virology    September 1, 1989   Volume 172, Issue 1 1-10 doi: 10.1016/0042-6822(89)90101-3
Gray WL, Yalamanchili R, Raengsakulrach B, Baumann RP, Staczek J, O'Callaghan DJ.Equine herpesvirus type 1 (EHV-1) preparations enriched in defective interfering particles (DIPs) have previously been demonstrated to mediate the coestablishment of persistent infection and oncogenic transformation in primary hamster embryo fibroblasts. In this study, it was demonstrated that infection of a rabbit kidney (RK) cell line with EHV-1 DIP-enriched preparations also results in the establishment of persistent infection. Viral transcription was characterized in RK cells infected with DIP-enriched stocks and compared to viral transcription in RK cells infected with standard (STD) EHV-...
The full-length nucleotide sequences of the virulent Trinidad donkey strain of Venezuelan equine encephalitis virus and its attenuated vaccine derivative, strain TC-83.
Virology    May 1, 1989   Volume 170, Issue 1 19-30 doi: 10.1016/0042-6822(89)90347-4
Kinney RM, Johnson BJ, Welch JB, Tsuchiya KR, Trent DW.Nucleotide sequence analysis of cDNA clones covering the entire genomes of Trinidad donkey (TRD) Venezuelan equine encephalitis (VEE) virus and its vaccine derivative, TC-83, has revealed 11 differences between the genomes of TC-83 virus and its parent. One nucleotide substitution and a single nucleotide deletion occurred in the 5'- and 3'-noncoding regions of the TC-83 genome, respectively. The deduced amino acid sequences of the nonstructural polypeptides of the two viruses differed only in a conservative Ser(TRD) to Thr(TC-83) substitution in nonstructural protein (nsP) three at amino acid ...
Analysis of the in vitro translation products of the equine herpesvirus type 1 immediate early mRNA.
Virology    October 1, 1988   Volume 166, Issue 2 451-462 doi: 10.1016/0042-6822(88)90516-8
Robertson AT, Caughman GB, Gray WL, Baumann RP, Staczek J, O'Callaghan DJ.Equine herpesvirus type 1 (EHV-1) gene expression is coordinately regulated in an alpha, beta, gamma fashion. Viral alpha gene products include a 6.0-kb immediate early (IE) mRNA species (W. L. Gray et al., 1987, Virology 158, 79-87) and at least four closely related IE polypeptides (IEPs) (G.B. Caughman et al., 1985, Virology 145, 49-61). In this report, we describe results obtained from a series of in vitro translation experiments which were performed in an effort to characterize the IEPs and identify the mechanism by which individual IE protein species are generated. Our data indicate that ...
Antigenic variation and lentivirus persistence: variations in envelope gene sequences during EIAV infection resemble changes reported for sequential isolates of HIV.
Virology    December 1, 1987   Volume 161, Issue 2 321-331 doi: 10.1016/0042-6822(87)90124-3
Payne SL, Fang FD, Liu CP, Dhruva BR, Rwambo P, Issel CJ, Montelaro RC.The extent and nature of genomic variation among nine antigenically distinct EIAV isolates recovered during sequential clinical episodes from two experimentally infected ponies were examined by restriction fragment analysis and nucleotide sequencing. Only minor variations in restriction enzyme patterns were observed among the viral genomes. In contrast, env gene sequences of four isolates from one pony revealed numerous clustered base substitutions. Divergence in env gene nucleotide and deduced amino acid sequences between pairs of virus isolates ranged from 0.62 to 3.4% env gene mutation rate...
Regulation of equine herpesvirus type 1 gene expression: characterization of immediate early, early, and late transcription.
Virology    May 1, 1987   Volume 158, Issue 1 79-87 doi: 10.1016/0042-6822(87)90240-6
Gray WL, Baumann RP, Robertson AT, Caughman GB, O'Callaghan DJ, Staczek J.The regulation of equine herpesvirus type 1 (EHV-1) transcription was examined in infected rabbit kidney cells using metabolic inhibitors. In order to map EHV-1 immediate early, early, and late transcripts, viral RNA was 32P-labeled in vivo and hybridized to EHV-1 DNA restriction fragments immobilized on nitrocellulose filters. Immediate early viral RNA was mapped to one region of the viral genome within the inverted repeat DNA sequences (map units 0.78-0.83 and 0.95-1.0). Northern blot hybridization analysis using a 32P-labeled cloned DNA probe from this region identified a single immediate e...
An equine rotavirus (FI-14 strain) which bears both subgroup I and subgroup II specificities on its VP6.
Virology    April 1, 1987   Volume 157, Issue 2 488-496 doi: 10.1016/0042-6822(87)90291-1
Hoshino Y, Gorziglia M, Valdesuso J, Askaa J, Glass RI, Kapikian AZ.An equinine rotavirus FI-14 strain, originally isolated from a diarrheic foal in New York state, was shown to belong to serotype 3 by neutralization assay. In addition, it was found to react with both subgroup I and subgroup II monoclonal antibodies by enzyme-linked immunosorbent assay (ELISA), thus representing the first rotavirus strain to exhibit both subgroup specificities. By using hybridoma technology, we successfully produced monoclonal antibodies directed against the major inner capsid protein VP6 (the sixth gene product) of FI-14 virus. Such monoclonal antibodies reacted specifically ...
Nucleotide and deduced amino acid sequence of the influenza neuraminidase genes of two equine serotypes.
Virology    December 1, 1986   Volume 155, Issue 2 460-468 doi: 10.1016/0042-6822(86)90207-2
Dale B, Brown R, Miller J, White RT, Air GM, Cordell B.Equine influenza is caused by two serotypes of type A influenza virus, EIV-A1 and EIV-A2. The complete nucleotide sequence of the neuraminidase (NA) genes of both the A1 (N7 subtype) and A2 (N8 subtype) serotype has been determined following cloning of full-length viral NA cDNAs into pBR322. Analysis of the deduced amino acid sequences reveals that the N7 and N8 genes share expected extensive homologies with the previously sequenced N1, N2, and N9 NA subtypes. These homologies include conservation of basic NA gene and protein structure, cysteine residues, potential glycosylation sites, and res...
Lentivirus genomic organization: the complete nucleotide sequence of the env gene region of equine infectious anemia virus.
Virology    December 1, 1986   Volume 155, Issue 2 309-321 doi: 10.1016/0042-6822(86)90195-9
Rushlow K, Olsen K, Stiegler G, Payne SL, Montelaro RC, Issel CJ.The nucleotide sequence of the envelope (env) gene region of equine infectious anemia virus (EIAV), a member of the lentivirus subfamily of retroviruses, has been determined from a clone of integrated proviral DNA for which the gag and pol sequences have been reported previously. The env gene is 859 codons in length and the sequence reported here is consistent with the published biochemical properties of EIAV glycoproteins. The env gene region of EIAV shares considerable structural similarities but negligible sequence homologies with the env genes of other members of the lentivirus subfamily, ...
Molecular cloning and physical characterization of integrated equine infectious anemia virus: molecular and immunologic evidence of its close relationship to ovine and caprine lentiviruses.
Virology    October 15, 1986   Volume 154, Issue 1 1-8 doi: 10.1016/0042-6822(86)90424-1
Yaniv A, Dahlberg J, Gazit A, Sherman L, Chiu IM, Tronick SR, Aaronson SA.Molecular clones of the integrated form of the genome of equine infectious anemia virus (EIAV), the etiologic agent of a naturally occurring, worldwide disease of horses, were obtained. The restriction map of a full-length genome was determined. Additional evidence for the close evolutionary relationship between EIAV and a prototype lentivirus (caprine arthritis encephalitis virus) was acquired by Southern blotting and immunological analyses. An interspecies radioimmunoassay was developed in which EIAV and ovine and caprine lentiviruses could be detected equally well. These studies make availa...
Cloning and fine mapping the DNA of equine herpesvirus type one defective interfering particles.
Virology    September 1, 1986   Volume 153, Issue 2 188-200 doi: 10.1016/0042-6822(86)90022-x
Baumann RP, Staczek J, O'Callaghan DJ.Equine herpesvirus type one (EHV-1) defective interfering (DI) particle DNA fragments were inserted into the XbaI site of the plasmid vector pACYC184. Five DI XbaI fragments, which ranged in molecular weight from 4.5 to 6.7 MDa, were selected for detailed analysis. Each DI DNA clone was labeled with 32P-deoxynucleotides by nick translation and hybridized to genomic digests of EHV-1 standard (STD) DNA bound to nitrocellulose. All five clones were shown to hybridize to DNA sequences derived from the left terminus (0.0-0.04 map units) of the long (L) region and from the short (S) region inverted ...
Intracellular equine arteritis virus (EAV)-specific RNAs contain common sequences.
Virology    July 30, 1986   Volume 152, Issue 2 492-496 doi: 10.1016/0042-6822(86)90154-6
van Berlo MF, Rottier PJ, Horzinek MC, van der Zeijst BA.Equine arteritis virus (EAV) is a nonarthropod-borne togavirus. Six virus-specific RNA species have been found in EAV-infected cells having the following molecular weights: 4.3 X 10(6) (RNA1), 1.3 X 10(6) (RNA2), 0.9 X 10(6) (RNA3), 0.7 X 10(6) (RNA4), 0.3 X 10(6) (RNA5), and 0.2 X 10(6) (RNA6). RNA1 comigrates with the viral genome (M. F. Van Berlo, M. C. Horzinek, and B. A. M. Van der Zeijst, 1982, Virology 118, 345-352). All RNAs hybridized with a radio-labeled cDNA probe representing RNA6, indicating that they contain common sequences. To study this homology in more detail, RNase T1 oligon...
Nucleotide sequence of the 26 S mRNA of the virulent Trinidad donkey strain of Venezuelan equine encephalitis virus and deduced sequence of the encoded structural proteins.
Virology    July 30, 1986   Volume 152, Issue 2 400-413 doi: 10.1016/0042-6822(86)90142-x
Kinney RM, Johnson BJ, Brown VL, Trent DW.A cDNA clone containing all of the 26 S mRNA coding region of the RNA genome of Venezuelan equine encephalitis (VEE) virus, virulent strain Trinidad donkey (TRD), has been constructed and sequenced. The nucleotide and deduced amino acid sequences of the 26 S RNA of VEE virus conform to the general organization of the alphavirus subgenomic mRNA. Excluding the poly(A) tail, the VEE 26 S RNA is 3913 nucleotides long with a protein coding region of 3762 nucleotides. Codon usage in the translated region is nonrandom and correlates well with that reported for Sindbis (SIN), Semliki Forest (SF), and ...
Cloning and characterization of an equine cutaneous papillomavirus.
Virology    July 15, 1986   Volume 152, Issue 1 100-109 doi: 10.1016/0042-6822(86)90375-2
O'Banion MK, Reichmann ME, Sundberg JP.Equine papillomaviruses (EqPV) from naturally occurring cases of cutaneous papillomatosis in several ponies and one horse were isolated, cloned, and characterized. Group specific papillomavirus structural antigens were detected in sections of the papillomas by the peroxidase-antiperoxidase technique, and virions were observed in the in the nuclei of cells in the stratum granulosum and corneum. Negatively stained virions purified from papilloma homogenates by isopycnic CsCl centrifugation were 55 nm in diameter and had typical papillomavirus morphology. The entire viral genomes of two separate ...
Generation of packaging-defective DNA molecules of equine adenovirus.
Virology    May 1, 1986   Volume 151, Issue 1 66-76 doi: 10.1016/0042-6822(86)90104-2
Ishiyama T, Shinagawa M, Sato G, Fujinaga K, Padmanabhan R.Equine adenovirus (EAd) DNA prepared from infected bovine kidney (MDBK) cells contained additional sequences of about 100 to 700 bp at the left-hand end of the genome. These aberrant viral genomes were produced even after the first passage of the wild type EAd in MDBK cells and their relative amounts did not change significantly during serial passage. The left terminal fragments of two defective viral DNAs were cloned into the plasmid vector pBR322 and the nucleotide sequences of their terminal regions were analyzed. The data indicate that one viral DNA contained a duplication of the inverted ...
Antigenic reactivity of the major glycoprotein of equine infectious anemia virus, a retrovirus.
Virology    July 30, 1984   Volume 136, Issue 2 368-374 doi: 10.1016/0042-6822(84)90173-9
Montelaro RC, West M, Issel CJ.The immunogenic contributions of the carbohydrate and peptide portions of the major envelope glycoprotein of equine infections anemia virus, EIAV gp90, were analyzed by measuring the effects of specific glycosidase and protease digestions on the reactivity of the glycoprotein with immune sera from infected horses. The results of both direct and competitive radioimmunoassay demonstrated that immune sera contained antibodies reactive with both the carbohydrate and protein moieties of EIAV gp90, with the predominant reactivity apparently against the gp90 peptide epitopes. These results contrast w...
Equine cytomegalovirus: structural proteins of virions and nucleocapsids.
Virology    April 15, 1984   Volume 134, Issue 1 184-195 doi: 10.1016/0042-6822(84)90284-8
Caughman GB, Staczek J, O'Callaghan DJ.Enveloped virions and nucleocapsids of equine cytomegalovirus (ECMV; equine herpesvirus type 2) have been purified from the supernatants and the nuclear extracts of infected rabbit kidney (RK) cells, respectively, and their structural protein compositions have been analyzed. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis revealed that ECMV nucleocapsids were composed of nine proteins (average molecular weights = 148K, 52K, 49.5K, 46K, 43.5K, 38.5K, 27K, 20K, and 18K), which together constituted 89% of the total nucleocapsid protein on the basis of incorporated 3H-labeled am...
Correlation of influenza A virus nucleoprotein genes with host species.
Virology    March 1, 1984   Volume 133, Issue 2 438-442 doi: 10.1016/0042-6822(84)90410-0
Bean WJ.The RNAs coding for the nucleoproteins of a panel of influenza isolates from human and nonhuman hosts were compared by RNA-RNA hybridization to determine the extent of genetic diversity of this protein and to determine if related nucleoproteins (NP) are consistently found in viruses from certain hosts. Five nucleoprotein groups were defined. Group 1 contains nearly all of the avian influenza viruses, group 2 includes only certain viruses isolated from gulls, group 3 includes all recent equine influenza strains, group 4 contains only equine/Prague/1/56, and group 5 contains all human and swine ...
Coestablishment of persistent infection and oncogenic transformation of hamster embryo cells by equine cytomegalovirus.
Virology    January 30, 1984   Volume 132, Issue 2 339-351 doi: 10.1016/0042-6822(84)90040-0
Staczek J, Wharton JH, Dauenhauer SA, O'Callaghan DJ.Semipermissive, primary hamster embryo (HE) cells were morphologically transformed in vitro by infection with UV-irradiated equine cytomegalovirus (equine herpesvirus type 2; ECMV). Cell lines (designated EC-1-3) were established independently from foci and were shown to exhibit growth and biological properties typically associated with transformed cells: altered morphology, loss of contact inhibition, increased saturation density, decreased generation time, immortality in culture, normal growth in low concentrations of serum, colony formation in soft agar, and resistance to ECMV superinfectio...
Differential sensitivity of human, avian, and equine influenza A viruses to a glycoprotein inhibitor of infection: selection of receptor specific variants.
Virology    December 1, 1983   Volume 131, Issue 2 394-408 doi: 10.1016/0042-6822(83)90507-x
Rogers GN, Pritchett TJ, Lane JL, Paulson JC.Human and animal (avian and equine) influenza A virus isolates of the H3 serotype exhibit marked differences in their ability to bind specific sialyloligosaccharide sequences that serve as cell surface receptor determinants (G. Rogers and J. Paulson, 1983, Virology 127, 361-373). Whereas human isolates of this subtype strongly agglutinate enzymatically modified human erythrocytes containing the terminal SA alpha 2,6Gal sequence, avian and equine isolates preferentially agglutinate erythrocytes bearing the SA alpha 2, 3Gal sequence. As shown in this report, a glycoprotein found in horse serum, ...
A comparison of the 26 S mRNAs and structural proteins of an equine virulent venezuelan encephalitis virus and its vaccine derivative.
Virology    September 1, 1982   Volume 121, Issue 2 251-261 doi: 10.1016/0042-6822(82)90165-9
Mecham JO, Trent DW.No abstract available