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Cutaneous lymphoma with extensive periarticular involvement in a horse.

Two months after colic surgery, subcutaneous masses were found on the ventral and lateral portions of the thorax of a 3-year-old Hanoverian-cross filly. Six months later, the filly was admitted for evaluation of severe lameness. Arthrocentesis of the tarsocrural joint yielded clotted sanguineous material; however, unusual multinucleated giant cells were seen. Radiography of the right tarsus revealed soft tissue opacity and degenerative joint disease. The filly was euthanatized to prevent further suffering. At necropsy, multiple soft-tissue masses were located throughout the fascial planes of the tarsi and in the subcutis of the ventral and lateral portions of the thorax. Neoplasms consisted primarily of a large number of mature well-differentiated T lymphocytes. On the basis of these findings, the diagnosis was cutaneous lymphoma with unusual involvement of periarticular tissues. Severe degenerative joint disease in the right tarsus did not appear to be associated with the tumors.

Animals↗

Incomplete ossification of the tarsal bones in foals: 22 cases (1988-1996).

OBJECTIVE: To determine outcome for foals with incomplete ossification of the tarsal bones and to determine whether clinical and radiographic abnormalities at the time of initial examination were associated with outcome. DESIGN: Retrospective study. ANIMALS: 22 foals. PROCEDURE: Information on signalment, history, owner's initial complaint, clinical findings, whether tarsus valgus was evident, and radiographic abnormalities was obtained from medical records. Radiographic lesions were classified as type I (i.e., incomplete ossification with < 30% collapse of the affected bones) or type II (incomplete ossification with > 30% collapse and pinching or fragmentation of the affected bones). Follow-up information was obtained via telephone conversations with owners. RESULTS: Foals were between 1 day and 10 months old when first examined. Eleven were premature (i.e., < 320 days of gestation) or were twins. Sixteen had tarsus valgus. Severity of radiographic lesions was associated with outcome; 4 of 6 foals with type-I incomplete ossification of the tarsal bones performed as intended, but only 3 of 16 foals with type-II incomplete ossification of the tarsal bones performed as intended. CLINICAL IMPLICATIONS: For foals with incomplete ossification of the tarsal bones, severity of the radiographic lesions was associated with outcome. Foals with type-II incomplete ossification of the tarsal bones have a guarded prognosis for athletic soundness.

Animals↗

Conjunctival nevi: clinical features and natural course in 410 consecutive patients.

OBJECTIVES: To describe the clinical features of a conjunctival nevus and to evaluate the lesion for changes in color and size over time. DESIGN: Retrospective, observational, noncomparative case series. PARTICIPANTS: Four hundred ten consecutive patients with conjunctival nevi. MAIN OUTCOME MEASURES: The 2 main outcome measures were changes in tumor color and size. RESULTS: Of the 410 patients, 365 (about 89%) were white, 23 (about 6%) were African American, 8 (2%) were Asian, 8 (2%) were Indian, and 6 (1%) were Hispanic. The iris color was brown in 55% (229/418), blue in 20% (85/418), green in 20% (83/418), and not indicated in 5% (21/418). The nevus was brown in 65%, tan in 19%, and completely nonpigmented in 16%. The anatomical location of the nevus was the bulbar conjunctiva (302 eyes, 72%), caruncle (61 eyes, 15%), plica semilunaris (44 eyes, 11%), fornix (6 eyes, 1%), tarsus (3 eyes, 1%), and cornea (2 eyes, <1%). The bulbar conjunctival lesions most commonly abutted the corneoscleral limbus. The nevus quadrant was temporal (190 eyes, 46%), nasal (184 eyes, 44%), superior (23 eyes, 6%), and inferior (21 eyes, 5%). Additional features included intralesional cysts (65%), feeder vessels (33%), and visible intrinsic vessels (38%). Cysts were clinically detected in 70% of histopathologically confirmed compound nevi, 58% of the subepithelial nevi, 40% of the junctional nevi, and 0% of the blue nevi. Of the 149 patients who returned for periodic observation for a mean of 11 years, the lesion color gradually became darker in 5% (7 patients), lighter in 8% (12 patients), and was stable in 87% (130 patients). The lesion size was larger in 7% (10 patients), appeared smaller in 1% (1 patient), and was stable in 92% (137 patients). There were 3 patients who developed malignant melanoma from a preexisting compound nevus (2 cases) or blue nevus (1 case) over a mean interval of 7 years. CONCLUSIONS: Conjunctival nevus is a benign tumor most often located at the nasal or temporal limbus and rarely in the fornix, tarsus, or cornea. Over time, a change in tumor color was detected in 13% (20/149) and a change in tumor size was detected in 8% (12/149).

Adolescent↗

The microscopic anatomy of the lower eyelid retractors.

Twenty-two normal lower eyelids were studied microscopically to examine the normal anatomy of the lower eyelid retractors. Eight lower eyelid specimens from patients with involutional entropion and five from patients with involutional ectropion were studied also. In the normal eyelids, the inferior tarsal muscle consisted of scattered smooth-muscle fibers and did not insert on the tarsus. The orbital septum fused with the capsulopalpebral fascia 5 mm beneath the lower tarsal border to form a single, complex fascial layer. In the involutional entropion and ectropion cases, the fused capsulopalpebral fascia-orbital septum complex was attached to the tarsus in all specimens. The first identifiable smooth-muscle strands of the inferior tarsal muscle averaged 3.9 mm from the lower tarsal border in entropion cases, 4.5 mm in ectropion cases, and 2.5 mm in the normal eyelids.

Adolescent↗

Tarsal-conjunctival advancement flaps for upper eyelid reconstruction.

For subtotal or total upper eyelid reconstruction, a technique combining tarsal-conjunctival advancement flaps from the upper and lower eyelids was used. A tarsal-conjunctival flap was begun just inside the lower lid margin, and was brought into the upper eyelid so that the tarsus formed the new upper eyelid margin. The remaining tarsus and conjunctiva from the upper eyelid were brought forward to join the lower lid flap. On this conjoined tarsal-conjunctival flap, a full-thickness skin graft was placed. Four weeks later, the conjunctival flap from the lower eyelid was separated. The main advantage of this technique is that it provides stability and support for the new upper eyelid margin while keeping the skin and hair from turning in against the globe.

Aged↗

Analysis of murine HOXA-2 activity in Drosophila melanogaster.

The murine HOXA-2 protein shares amino acid sequence similarity with Drosophila Proboscipedia (PB). In this paper, we test whether HOXA-2 and PB are functionally equivalent in Drosophila. In Drosophila, PB inhibits SCR activity required for larval T1 beard formation and adult tarsus formation and is required for maxillary palp and proboscis formation. HOXA-2 expressed from a heat-shock promoter weakly suppressed SCR activity required for T1 beard formation. But interestingly neither PB nor HOXA-2 expressed from a heat-shock promoter suppressed murine HOXA-5 activity, the murine SCR homologue, from inducing ectopic T1 beards in T2 and T3, indicating that HOXA-5 does not interact with PB. HOXA-2 activity expressed from the Tubulin alpha 1 promoter modified the pb null phenotype resulting in a proboscis-to-arista transformation, indicating that HOXA-2 was able to suppress SCR activity required for tarsus formation. However, HOXA-2 expressed from a Tubulin alpha 1 promoter was unable to direct maxillary palp determination when either ectopically expressed in the antenna or in the maxillary palp primordia of a pb null mutant. HOXA-2 was also unable to rescue pseudotrachea formation in a pb null mutant. These results indicate that the only activity that PB and HOXA-2 weakly share is the inhibition of SCR activity, and that murine HOXA-5 and Drosophila SCR do not share inhibition by PB activity.

Animals↗

Extent of ossification at the amputation plane is correlated with the decline of blastema formation and regeneration in Xenopus laevis hindlimbs.

Xenopus laevis larvae gradually lose the ability to regenerate lost hindlimb structures as they progress through metamorphosis. Previous studies have suggested that this loss of regenerative capacity occurs in a proximal-to-distal fashion. We assessed the quality of overall regeneration and early bud blastema formation in order to evaluate previous explanations for this loss of regenerative ability in Xenopus. We further examined the extent to which epidermis, basement membrane, dermis, cartilage, bone, periosteum, and accumulated mesenchyme within the blastema are involved in the decline of regenerative abilities during mid-metamorphic stages of development. Each tissue was scored based on its contributions to the regeneration blastema, in accordance with previously reported blastemal descriptions. Tadpoles amputated at the ankle and tarsal-metatarsal joints scored objectively higher within the overall regeneration and blastema quality rating systems. Both joint sites met more criteria associated with regeneration-capable blastemas than tadpoles amputated through the middle of the tarsus, especially at later stages of metamorphosis. The three amputation sites studied began to vary in their ability to regenerate skeletal elements and to generate productive blastemas during the same stages at which we initially observed ossification of the tarsus. These results suggest that the decline of Xenopus hindlimb regeneration does not occur in a strictly proximal-to-distal fashion but rather is dependent at later stages on the state of ossification of the structure through which amputation occurs. Our morphological and cellular observations reveal specific times and places during Xenopus hindlimb development at which further investigations into tissue-specific molecular events during early regeneration should be focused.

Amputation, Surgical↗

Fine structure of olfactory sensilla in myriapods and arachnids.

Structural features of various types of olfactory sensilla are reviewed. 1) Sensilla basiconica which differ in form and size are found on the antennae of centipedes and millipedes. Their walls show longitudinal slits or grooves that either open into the sensillum lumen or do not penetrate the cuticle. In other such sensilla the outer surface is pierced by pores and the inner surface grooved and pocketed. These sensilla are innervated by one to six sensory cells. Their unbranched outer dendritic segments extend to the tip of the sensillum. The sensory cells are surrounded by two or three sheath cells which terminate at the sensillum base or form a continuous tube around the entire length of the outer dendritic segments. 2) Temporal organs of centipedes are located between the insertion of the antenna and the ocelli. These sensilla consist of a shallow cuticular ring with a central sensory plate made up by a layer of unperforated cuticle or a capsule with a mushroom-shaped structure inside formed by fibrous-looking cuticle. A dozen sensory cells with unbranched outer dendritic segments innervate each sensillum. They extend toward the sensory cuticle and pass just below it. Numerous sheath cell processes run parallel to the outer dendritic segments up to the sensory cuticle. 3) Thread-like flagella of Pauropoda are found on the antennae. They possess a flexible unperforated cuticular wall. These sensilla contain nine sensory cells surrounded by several sheath cells which form a continuous cytoplasmic tube around the outer dendritic segments. 4) Single-walled sensilla with numerous plugged pores penetrating the cuticular wall occur on the tarsus of the first leg in ticks. Each sensillum is innervated by 4-15 sensory cells. Three sheath cells terminate in the base of the sensillum. 5) Double-walled sensilla with spoke canals are found on the first tarsus of ticks. Their shaft is longitudinally grooved. Pore canals lead inward from the bottom of the grooves and open into vase-shaped chambers. From its base these canals extend into the lumen of the sensillum which contains unbranched outer dendritic segments of 1-2 sensory cells. 6) Single-walled sensilla with pore openings occur on the distal tarsal segments of the first leg of whip spiders. These sensilla are innervated by 40-45 sensory cells. Their unbranched outer dendritic segments fill the shaft lumen and extend partly into the wall pores. Microvillus-shaped sheath cell processes line the inner surface of the cuticular wall.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

The problem of the number of tarsomeres in the regenerated cockroach leg.

There are 5 tarsomeres in the normal cockroach leg, but this number is often reduced in regenerated legs. In order to examine this complicated situation, fore-, mid-, and hindlegs of German cockroaches were amputated at 11 different tarsal levels and at 18 different times during the last instar. When tarsi were amputated at or proximal to the 3rd tarsomere, 4-segmented tarsi regenerated. When legs were amputated distal to the 3rd tarsomere, the regenerated tarsi had 5 segments. Three-segmented tarsi rarely regenerated when legs were amputated proximal to 3rd tarsomere and in the latter half of the instar period. The lengths of all tarsomeres of regenerated tarsi were measured together with those of unoperated contralateral tarsomeres, and the ratios of the former to the latter were calculated. The ratios ranged from 28 to 138% for the various tarsomeres and levels of amputation. From a comparison of the ratios and morphological observations, it was suggested that the 3rd tarsomere of the normal 5-segmented tarsus has disappeared in the regenerated 4-segmented tarsus. Pads and disto-lateral spines of tarsomeres were observed on unoperated and regenerated tarsi. It was of interest that double spines were often found on the 4-segmented tarsi, mostly on the 2nd tarsomere, just proximal to the position of the missing 3rd tarsomere. This observation supported the idea that the 3rd tarsomere has not simply disappeared, but has probably fused with the 2nd tarsomere.

Animals↗

Structure of the tarsi in some Stenus species (Coleoptera, Staphylinidae): external morphology, ultrastructure, and tarsal secretion.

SEM studies show that the differentiation among Stenus species with respect to the formation of the tarsi (wide bilobed vs. slender tarsomeres) takes place with a considerable augmentation of tarsal ventral setae in wide bilobed tarsomeres. The structural diversity of ventral tarsal setae among and within species is discussed with respect to 1) their different roles as mechanosensilla and tenent setae, respectively, and 2) the different selection pressures in terms of adhesive requirements along the longitudinal tarsus axis. The tarsi are provided with four groups of tarsal mechanosensilla, comprising hair and bristle sensilla, campaniform sensilla, and scolopidia. The tarsus wall is supported by an epidermis, which forms three different types of glands pouring their secretion via different exit paths onto the outer cuticle. The organization and ultrastructure of each of these glands is described. Only one (unicellular) gland is directly associated with the ventral tenent setae and is thus considered to form the main part of the adhesive secretion. The beetles appear to release the tarsal secretion through mediation of the tenent setae, which contains a lipid and a proteinaceous fraction. I propose that the secretion is discharged to the outside via a system of very fine pore canals in the wall of the setal shaft. Gas chromatography and infrared spectroscopy revealed that the lipid fraction of the secretion is a mixture of unsaturated fatty acid glycerides and aliphatic hydrocarbons whose spectra are similar to those of extractions of the superficial lipid coating of the body surface.

Animals↗

Fluctuating asymmetry and copulation success in lekking black grouse

In lekking black grouse, Tetrao tetrixmales at the centre of the leks obtain more copulations than males at the edges. We found that males with territories at the edge of the lek obtained fewer matings and also have the most asymmetric tarsi. However, when considering the tail ornament (the lyre) no correlation between asymmetry and mating success was found. Although females are unlikely to select males on the basis of tarsus symmetry, asymmetry in this trait may reflect male condition. We suggest that males in poor condition, as reflected by higher levels of fluctuating asymmetry in the tarsi, do not achieve central positions on the lek arena. This would account for the lower success of males with higher levels of fluctuating tarsus asymmetry.

Journal Article↗

New Sivapithecus postcranial specimens from the Siwaliks of Pakistan.

Several new postcranial elements of Sivapithecus from the Siwaliks of Pakistan are described. These include a distal femur from the U-level of the Dhok Pathan Formation, a navicular from the Chinji Formation, and seven manual and pedal phalanges from the Nagri Formation. The functional morphology of these elements adds new detail to the reconstruction of Sivapithecus positional behavior. Femoral cross-sectional geometry indicates that the shaft was adapted to support mediolaterally directed loading. Femoral condylar asymmetry and a broad but shallow trochlea are distinctly ape-like, revealing capabilities for both rotation and withstanding eccentric loading in the knee. The navicular is characterized by features relating to a broad mid-tarsus and broad distal articulations for the cuneiforms. It also lacks a navicular tubercle as in Pongo. These features suggest that the foot was capable of a powerful grip on large supports, with an inversion/supination capability that would permit foot placement in a variety of positions. The morphology of the new phalanges, including evidence for a relatively large pollex, similarly suggests powerful grasping, consistent with prior evidence from the hallux and tarsus. The functional features of the new specimens permit refinement of previous interpretations of Sivapithecus positional capabilities. They suggest a locomotor repertoire dominated by pronograde activities and also such antipronograde activities as vertical climbing and clambering, but not by antipronograde suspensory activities as practiced by extant apes.

Animals↗

The tarsectomy operation of A.P.L. Gillet de Grandmont (1837-1894) and its periodic rediscovery.

During the past two centuries, several methods of ptosis repair have been described and refined, but each method has typically been subject to cycles of popularity, neglect and reincarnation. Repair of ptosis through partial resection of the tarsus is one such example. Although Sir William Bowman included tarsectomy with his historic levator resections, the French ophthalmologist, A.P.L. Gillet de Grandmont was the first to specifically emphasize resection of tarsus for the correction of ptosis. Yet contemporary advocates of tarsectomy for ptosis repair have generally failed to recognize Gillet de Grandmont's contribution and his role in the history of ptosis surgery. For this reason, a review of this subject is presented.

Blepharoptosis↗

Morphology and structural organization of Haller's organ during postembryonic development of Argas (Persicargas) walkerae (Ixodoidea: Argasidae).

Scanning-electron-microscopic investigations of Haller's organ in larvae, nymphs I, II, III and IV, and male and female adult Argas (Persicargas) walkerae ticks showed that morphology and structural organization change during postembryonic development. Stage-dependent differences existed regarding setal numbers of the anterior pit as well as formation and reticulation of cuticular projections in the capsule cavity. The anterior pit increased in size in the course of postembryonic development. It contained only seven setae in larvae, one conical, setiform and grooved seta each as well as two porose and fine setae. Nymphs I, II, III and IV adult ticks had equal numbers of setae; however, one additional unilaterally serrate and grooved seta each were present. Setal length increased continuously during postembryonic development and attained maximum values in adult ticks. The capsule consisted of roof and cavity and was located distinctly lateral in larvae, slightly lateral in nymphs I and II, and in all other stages directly on the longitudinal axis of tarsus. The capsule roof showed a reticular structure. The slit-like main aperture was located peripherally and arranged transversally to the longitudinal axis of tarsus I in larvae. Nymphs and adult ticks had a central, circular main aperture. Stage-dependent cuticular projections of varying form protruded into the capsule cavity. Larvae had only single, free-standing projections which ramified slightly and communicated with each other. Projections were more heavily reticulated in nymphs I and II. In nymphs III and IV as well as male and female adult ticks, a long centrally situated tube of reticular appearance was seen, which was supported by a large number of radially organized and interlocking pillars and communicated with the capsule roof. In all tick stages there were always four porose setae present, arranged on the capsule floor.

Animals↗

Intracellular recording from a spider vibration receptor.

The present study introduces a new preparation of a spider vibration receptor that allows intracellular recording of responses to natural mechanical or electrical stimulation of the associated mechanoreceptor cells. The spider vibration receptor is a lyriform slit sense organ made up of 21 cuticular slits located on the distal end of the metatarsus of each walking leg. The organ is stimulated when the tarsus receives substrate vibrations, which it transmits to the organ's cuticular structures, reducing the displacement to about one tenth due to geometrical reasons. Current clamp recording was used to record action potentials generated by electrical or mechanical stimuli. Square pulse stimulation identified two groups of sensory cells, the first being single-spike cells which generated only one or two action potentials and the second being multi-spike cells which produced bursts of action potentials. When the more natural mechanical sinusoidal stimulation was applied, differences in adaptation rate between the two cell types remained. In agreement with prior extracellular recordings, both cell types showed a decrease in the threshold tarsus deflection with increasing stimulus frequency. Off-responses to mechanical stimuli have also been seen in the metatarsal organ for the first time.

Action Potentials↗

The medial canthal tendon is composed of anterior and posterior lobes in Japanese eyes and fixes the eyelid complementarily with Horner's muscle.

PURPOSE: To report that the medial canthal tendon (MCT) is not simply the aggregate of the orbicularis oculi muscle (OOM) and its tendon. METHODS: Twenty eyelids of 10 cadavers were used. The cadavers, seven male and three female, were all Japanese, with an average age of death of 76.2 years. The relationship between the MCT and the OOM, and between the tarsus and Horner's muscle were investigated. Histological findings were obtained with hematoxylin and eosin staining. RESULTS: The MCT was structured with an anterior lobe, the tendon from the tarsal area of the OOM, and a posterior lobe, the muscle-tendon transition area in the orbital area of the OOM. The nasal aspect of the tarsus was fixed by Horner's muscle. CONCLUSIONS: The MCT and Horner's muscle are located in an important area of the eyelid; therefore, it is essential to understand their precise anatomy.

Aged↗

Fluctuating asymmetry and growth as biomarkers for exposure to androgen disrupting chemicals in Japanese quail.

The effects of embryonic exposure to androgen disrupting chemicals (ADCs) on growth and fluctuating asymmetry (FA) were determined in Japanese quail chicks. Embryos were exposed to an anti-androgenic chemical, 1,1,1-Trichloro-2,2-bis(p-chlorophenyl)ethane (p,p'-DDE) at 20 or 40 microg, or to an androgenic chemical, trenbolone acetate, at 5 or 50 microg on day one of incubation. Growth was measured by body weight and tarsus and culmen lengths from day of hatch until day 29. FA was measured as differences in right versus left lengths of the tarsus, radius, zygomatic process, and premaxilla in day old carcasses. No differences in FA were observed for either treatment. Embryonic exposure to DDE resulted in no significant differences in all measures of growth, although the same quail exhibited significant differences in immunological, reproductive, and behavioral measurements (reported elsewhere). Chicks exposed to trenbolone exhibited no differences in body weight or measures of FA at day of hatch, however, subsequent growth was inhibited. This study shows that although growth and FA are often used as measures of chemical stress experienced during embryonic development, they are not sensitive measures for exposure to these ADCs at these levels in Japanese quail.

Androgen Antagonists↗

Metalloproteinases in endochondral bone formation: appearance of tissue inhibitor-resistant metalloproteinases.

Dissected embryonic chick limbs release neutral metalloproteinases during endochondral bone development. These enzymes degrade cartilage proteoglycan and gelatin in culture medium. We found the enzymes active in the medium conditioned by explants of the region adjacent to the bone marrow cavity (cavity-surround). These enzymes degrade proteoglycan (PG) and/or gelatin. These spontaneously active enzymes are resistant to serum and tissue proteinase inhibitors, alpha 2-macroglobulin, and cartilage metalloproteinase inhibitor (TIMP). The other enzymes secreted from tarsus and bone marrow explants are mostly latent in the culture medium. Activated tarsus enzymes (PG degrading and gelatinolytic) are blocked by the above inhibitors. Activated marrow enzyme does not degrade PG but is resistant to those inhibitors. Cavity-surround enzymes may play an important role in embryonic osteogenesis of long bones because of their resistance to tissue and serum inhibitors. The in vivo mechanisms by which cavity-surround enzymes are activated are yet to be determined.

Animals↗