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Effects of sex hormones and gender on attraction thresholds for volatile anal scent gland odors in ferrets.

Body odors contribute to mate recognition and sexual partner preference in many mammals, including ferrets. We used a habituation/dishabituation procedure to test whether sex steroid hormones influence whether ferrets will approach and investigate different concentrations of volatile anal scent gland odors from male and female conspecifics. When tested with high concentrations of anal scent gland secretions in oil vehicle, gonadectomized male and female ferrets that received no sex steroids reliably discriminated anal scents from male and female conspecifics. This discrimination most likely reflects gender recognition rather than individual recognition because gonadectomized, sex steroid-treated ferrets discriminated between anal scents of males and females but not between anal scents of individual males or females. Treatment with either the estrogen receptor agonist, estradiol benzoate (EB), or the androgen receptor agonist, 5-alpha dihydrotestosterone proprionate (DHTP), increased investigation of low concentrations of anal scent by gonadectomized ferrets. These data suggest that ferrets could use anal scent gland secretions in mate recognition and that seasonal increases in circulating sex steroid hormones increase ferrets' responsiveness to low concentrations of these odors.

Analysis of Variance↗

Ferrets. Examination and preventive medicine.

As ferrets are anatomically and physiologically similar to dogs and cats, the basic elements of ferret examination, disease processes, and preventive health are familiar to small-animal practitioners. Like other domestic carnivores, ferrets are tolerant of handling and medical procedures, especially compared with rabbits, rodents, and most nondomestic mammals. These characteristics make ferrets amenable to many of the highly specialized diagnostic and therapeutic techniques that are now available in small-animal practice. Veterinarians who wish to add ferrets to their practices should be familiar with the ferret literature, but they should not forget to draw from the wealth of knowledge in canine and feline medicine when managing unusual or difficult ferret cases.

Animal Diseases↗

Dirofilariasis in the domestic ferret.

The popularity of pet ferrets in heartworm-endemic and -nonendemic areas is growing, with ferret ownership in the United States currently exceeding 10 million. The domestic ferret (Mustela putorius furo) has been reported to be susceptible to naturally-acquired and experimentally-induced infections of Dirofilaria immitis. Host-parasite relationships between D. immitis and domestic dogs and cats have been well studied, but there have been relatively few reports on infections in ferrets. Laboratory studies have shown the ferret to be highly susceptible, with infection and recovery rates similar to those achieved in the dog and higher than those seen in cats. Microfilaremia is characteristically of low concentration and transient in nature, similar to that seen in heartworm-infected cats. A definitive diagnosis can be made from ELISA-based antigen tests, echocardiography, and angiography, but suggestive radiographic findings require additional supportive information to confirm a tentative diagnosis. Prevention has been shown to be effective with currently used canine prophylactic pharmaceutics, but effective treatment of adult heartworms in ferrets has not yet been confirmed by controlled studies. There is currently no approved drug for prevention or treatment of D. immitis in ferrets.

Animals↗

Maternal odours induce Fos in the main but not the accessory olfactory bulbs of neonatal male and female ferrets.

Previous research demonstrated that exposing gonadectomized adult ferrets to odours in oestrous female bedding induced nuclear Fos-immunoreactivity (Fos-IR; a marker of neuronal activity) in the main as opposed to the accessory olfactory system in a sexually dimorphic fashion, which was further augmented in both sexes by treatment with testosterone propionate. Ferrets are born in an altricial state and presumably use maternal odour cues to locate the nipples until the eyes open after postnatal (P) day 23. We investigated whether maternal odours augment neuronal Fos preferentially in the main versus accessory olfactory system of neonatal male and female ferret kits. Circulating testosterone levels peak in male ferrets on postnatal day P15, and mothers provide maximal anogenital stimulation (AGS) to males at this same age. Therefore, we assessed the ability of maternal odours to augment Fos-IR in the accessory olfactory bulb (AOB), the main olfactory bulb (MOB) and other forebrain regions of male and female ferret kits on P15 and investigated whether artificial AGS (provided with a paintbrush) would further enhance any effects of maternal odours. After separation from their mothers for 4 h, groups of male and female kits that were placed for 1.5 h with their anaesthetized mother had significantly more Fos-IR cells in the MOB granule cell layer and in the anterior-cortical amygdala, but not in the AOB cell layer, compared to control kits that were left on the heating pad. Artificial AGS failed to amplify these effects of maternal odours. Maternal odours (with or without concurrent AGS) failed to augment neuronal Fos-IR in medial amygdaloid and hypothalamic regions that are activated in adult ferrets by social odours. In neonatal ferrets of both sexes, as in adults, socially relevant odours are detected by the main olfactory epithelium and initially processed by the MOB and the anterior-cortical amygdala. In neonates, unlike adults, medial amygdaloid and hypothalamic neurones either do not respond to these inputs or respond in a manner that fails to induce Fos expression.

Aging↗

Responses to innocuous, but not noxious, somatosensory stimulation by neurons in the ferret superior colliculus.

The intermediate and deep layers of the superior colliculus (SC) are known for their role in initiating orienting behaviors. To direct these orienting functions, the SC of some animals (e.g., primates, carnivores) is dominated by inputs from the distance senses (vision, audition). In contrast, the rodent SC relies more heavily on non-visual inputs, such as touch and nociception, possibly as an adaptive response to the proximity of dangers encountered during their somatosensory-dominant search behaviors. The ferret (a carnivore) seems to employ strategies of both groups: above ground they use visual/auditory cues, but during subterranean hunting ferrets must rely on non-visual signals to direct orienting. Therefore, the present experiments sought to determine whether the sensory inputs to the ferret SC reveal adaptations common to functioning in both environments. The results showed that the ferret SC is dominated (63%; 181/286) by visual/auditory inputs (like the cat), rather than by somatosensory inputs (as found in rodents). Furthermore, tactile responses were driven primarily from hair-receptors (like cats), not from the vibrissae (as in rodents). Additionally, while a majority of collicular neurons in rodents respond to brief noxious stimulation, no such neurons were encountered in the ferret SC. A small proportion (4%; 13/286) of the ferret SC neurons were responsive to long-duration (>5 s) noxious stimulation, but further tests could not establish these responses as nociceptive. Collectively, these data indicate that the ferret SC is best adapted for the animal's visuallacoustically guided activities and most closely resembles the SC of its phylogenetic relative, the cat.

Acoustic Stimulation↗

Excretion and placental and mammary transfer of hexachlorobenzene in the European ferret (Mustela putorius furo).

Female European ferrets (Mustela putorius furo) absorbed 98.5% of a single dietary exposure of hexachlorobenzene (HCB). The HCB was found to readily cross the placenta and to be excreted in the milk of pregnant/lactating ferrets. After consuming HCB-treated feed, ferrets raising offspring excreted 50% of the initial dose by 32 d, while unbred ferrets achieved this same degree of HCB elimination in 41 d. The percentages of HCB excreted via the urine and feces were approximately 5 and 45%, respectively, in both groups at the 50% stage of elimination. Adipose tissue was the most significant long-term repository for HCB in the ferret. The other tissues analyzed for [14C]HCB showed a general relationship of increased radioactivity with increased fat content of the tissue. The ferrets with nursing kits were able to significantly reduce their body burden of HCB when compared to unbred females. The developing ferret kits were subjected to HCB insult both in utero and via dam's milk. The ratio of milk to placental exposure in the growing offspring was calculated to be 31:1. Thus, in addition to any toxic effects HCB may have on the adult reproducing population, the placental and mammary transfer of HCB constitutes a potential threat to the developing and growing animal.

Animals↗

Effects of dietary hexachlorobenzene exposure on regional brain biogenic amine concentrations in mink and European ferrets.

In the initial trial, adult mink and ferrets were administered hexachlorobenzene (HCB) via the feed at concentrations of 1, 5, or 25 ppm for 47 wk. Animals receiving 125 and 625 ppm HCB in the diet died before termination of the experiment, with female ferrets at the 125 ppm level displaying abnormal aggressiveness and hyperexcitability just prior to death. Hypothalamic serotonin (5-HT) was significantly elevated at all dose levels in mink, and cerebellar 5-HT was significantly elevated at 1 ppm in the ferret. Regional brain biogenic amine concentrations were also determined in the offspring of the female mink that were administered 1 and 5 ppm HCB. Hypothalamic dopamine (DA) concentrations were significantly depressed by 1 and 5 ppm in these kits. In a second study, adult male and female ferrets were administered 250 or 500 ppm HCB via the diet for 7 wk. Two animals at the 250-ppm level and 3 animals at the 500-ppm level died before termination of the experiment without showing behavioral changes. Of the remaining animals, 3 ferrets at 250 ppm and 1 ferret at 500 ppm showed slight aggressiveness and hyperexcitability during the last week of the experiment. Concentrations of 5-HT were significantly elevated at 500 ppm in the cerebral hemispheres and at 250 ppm in the midbrain of male ferrets, while in the females, 5-HT was elevated in the cerebral hemispheres at 250 ppm and in the hypothalamus at both 250 and 500 ppm. Norepinephrine (NE) concentrations were significantly elevated in the cerebellum of males exposed to 250 and 500 ppm, as were NE concentrations in the midbrain. HCB at 500 ppm caused a significant increase in medullary NE, while 250 ppm caused an increase in hypothalamic NE in males. The only change in regional brain dopamine (DA) concentrations occurred at 500 ppm HCB in the midbrain of males, where there was a significant elevation of this neurotransmitter.

Aggression↗

The ferret as a model for evaluation of the bioavailabilities of all-trans-beta-carotene and its isomers.

The objective was to develop the ferret as a model for evaluation of the bioavailabilities of natural and synthetic beta-carotenes in foods. For these studies, a low carotenoid purified diet was formulated that produced excellent food intake and adequate growth. After consuming the diet for 16 d, ferrets were randomly assigned to one of three groups. For a 10-d period, they ingested a standardized amount of all-trans-beta-carotene (18 mumol/L) from either carrot juice, a test beverage of beta-carotene beadlets dispersed in fruit juices, or a control beverage of beta-carotene beadlets dispersed in water. Accumulations of all-trans-beta-carotene in the sera, livers and adrenals of ferrets that consumed the carrot juice were significantly lower (P < 0.02) compared with those of ferrets that consumed the test or control beverages. The content of a cis-isomer component relative to that of all-trans-beta-carotene was higher in each beta-carotene beadlet-fortified beverage than in the liver and adrenal tissues of ferrets that ingested the beverage; the cis-isomer was not measurable in sera. The content of all-trans-beta-carotene relative to that of all-trans-alpha-carotene, a structural isomer, was higher in carrot juice than in sera of ferrets that ingested the juice. We conclude that: 1) all-trans-beta-carotene is less bioavailable from carrot juice than from beta-carotene beadlet-fortified beverages, and 2) there are apparent bioavailability differences between isomers of beta-carotene in ferrets.

Animals↗

Effects of masticatory muscle function on craniofacial morphology in growing ferrets (Mustela putorius furo).

Studying the effects of masticatory muscle function on craniofacial morphology in animal models with different masticatory systems is important for further understanding of related issues in humans. Forty 5-wk-old male ferrets were equally divided into two groups. One group was fed a diet of hard pellets (HDG) and the other group was fed the same diet but softened with water (SDG). Lateral and dorsoventral cephalograms were taken on each group after 6 months. Cephalometric measurements were performed by digital procedures. For SDG ferrets, the hard palate plane was more distant from the cranial base plane, and canines were more proclined compared with HDG ferrets. The SDG ferrets were also found to have smaller interfrontal and interparietal widths, and a slenderer zygomatic arch than the HDG ferrets. In the mandible, the coronoid process was generally shorter and narrower for the SDG ferrets. The effects of the altered masticatory muscle function on craniofacial morphology in growing ferrets seemed to differ from those previously reported in other animal models studied under similar experimental conditions. Such differences in the effects are presumably related to the differences in the mode of mastication, craniofacial anatomy and growth pattern in different animal models.

Animal Feed↗

Comparison of feed preference and digestion of three different commercial diets for cats and ferrets.

Diet preference and digestibility experiments were conducted using a total of 10 cats and 10 ferrets. The composition of the three different kinds of dry cat feed was as follows (each data are given in dry matter, DM): (i) normal diet (N): 95.3% DM, 33.7% crude protein (CP), 20.4% ether extract (EE), 37.6% nitrogen-free extract (NFE); (ii) 'light diet' (L): 94.2% DM, 31.6% CP, 10.7% EE, 52.2% NFE; (iii) 'veterinary diet' (D): 94.57% DM, 38.7% CP, 9.6% EE, 47.2% NFE. During the period of the preference test, the average daily dry matter intake (calculated with the mean of the three diets: 94.7% DM) was 98.0, 15.0 and 16.7 g DM in cats and 25.0, 7.3 and 8.1 g DM in ferrets. The preference rates of the three different diets, expressed in percentage of their total consumption, were as follows: 60.4% N (54.4 g DM), 12.4% L (12.1 g DM) and 27.2% D (26.6 g DM) in cats, and 46.2% N (11.6 g DM), 29.9% L (7.5 g DM) and 23.9% D (6.0 g DM) in ferrets. This indicates that cats and ferrets have a clear preference for diets of higher fat content. In all three diets, the digestibility of CP was significantly (p < 0.05) lower (70.1 +/- 5.4 vs. 75.9 +/- 5.8) while that of EE was significantly (p < 0.05) higher (95.6 +/- 1.5 vs. 89.4 +/- 5.3) in ferrets than in cats. The average digestible/metabolizable energy (DE/ME) ratio of feeds turned to be 95.6% for cats and 90.6% for the ferrets. From the data one can conclude that the ferret cannot be used as a model animal for cats either for preference or digestibility studies.

Animal Feed↗

Reference values for selected ophthalmic diagnostic tests of the ferret (Mustela putorius furo).

PURPOSE: To perform selected ophthalmic diagnostic tests in healthy ferrets with the aim of establishing normal physiological reference values for this species. METHOD: A total of 15 healthy, unrelated ferrets were used to test most of the parameters in this investigation. Eight of the 15 ferrets were used for central corneal thickness evaluation. Ages varied from 1.5 to 6 years of age. Selected diagnostic ocular tests were performed including Schirmer tear test, tonometry using an applanation tonometer (Tonopen), central corneal thickness using an ultrasonic pachymeter (Sonomed, Micropach, Model 200P +) and culture of the normal conjunctival bacterial flora. RESULTS AND DISCUSSION: Staphylococcus sp. and Corynebacterium sp. were isolated from healthy conjunctival and eyelid margins, suggesting they are normal constituents of the conjunctival flora of the ferret. Results for selected ocular diagnostic tests investigated here for the ferret eye were as follows: intraocular pressure: 14.50 +/- 3.27 mmHg; Schirmer tear test: 5.31 +/- 1.32 mm/min; central corneal thickness: 0.337 +/- 0.020 mm. No statistically significant differences between ages or genders were found for any of the results. The reference data for the ocular tests obtained in this investigation will help veterinary ophthalmologists to more accurately diagnose ocular diseases in the ferret. Knowledge of these reference values will be particularly useful to diagnose discrete or unusual pathological changes of the ferret eye.

Animals↗

Characterization and therapy for experimental infection by Helicobacter mustelae in ferrets.

BACKGROUND: Numerous clinical trials evaluating the efficacy of various antimicrobial compounds against Helicobacter pylori infection have been performed in humans. A convenient animal model for Helicobacter infection would facilitate the evaluation of novel therapies. These experiments were performed to evaluate the use of ferrets as a model of Helicobacter infection. MATERIALS AND METHODS: Ferrets were infected experimentally with Helicobacter mustelae and subsequently treated with bismuth subsalicylate (BSS) triple therapy (BSS, metronidazole, and amoxicillin), or left untreated. The status of infection and serology was assessed during treatment and for 8 weeks posttreatment. Seven ferrets successfully treated with triple therapy were challenged with H. mustelae and monitored for infection for an additional 5 weeks. RESULTS: Infection of ferrets by H. mustelae was accompanied by gastritis and a specific antibody response. Treatment of H. mustelae-infected ferrets with BSS suppressed bacterial growth in four of nine animals but did not eradicate infection. Triple therapy eradicated infection in all nine ferrets with a reduction in gastric inflammation. No relapse of infection occurred up to 8 weeks posttherapy. Challenge with H. mustelae of ferrets successfully treated with triple therapy resulted in a 100% rate of reinfection. CONCLUSIONS: H. mustelae infection can be eliminated by triple therapy, but this does not result in protective immunity against reinfection by H. mustelae. This model, using a strain of Helicobacter indigenous to the host, may be useful for assessing therapeutic efficacy of novel therapies for the treatment of human infection by H. pylori.

Amoxicillin↗

Mycobacterium genavense infection in two aged ferrets with conjunctival lesions.

Mycobacterium genavense infection was diagnosed in two adult ferrets. Disseminated mycobacteriosis was diagnosed in a castrated 5-year-old sable ferret with generalised peripheral lymph node enlargement and a proliferative lesion of the conjunctiva of the nictitating membrane. The diagnosis was based on characteristic cytology and sequence analysis of the 16S rRNA gene amplified using the polymerase chain reaction from fresh biopsy material. Therapy with rifampicin, clofazimine and clarithromycin probably cured the infection. An entire 4-year-old female ferret with conjunctival swelling, serous ocular discharge and swelling of the subcutaneous tissues of the nasal bridge was diagnosed as having M genavense infection on the basis of typical cytology, histopathology and sequence analysis of 16S rRNA amplicons from formalin-fixed paraffin-embedded tissue. This patient was treated successfully using rifampicin. Both ferrets subsequently died as a result of other disease conditions, 10 and 4 months following initiation of therapy, respectively. This is the first report documenting M genavense as a cause of disseminated mycobacterial disease in ferrets. Conjunctival involvement may be a feature of disseminated mycobacteriosis in the ferret. The possibility that these infections were the consequence of a ferret retrovirus infection should be considered further.

Animals↗

Cryptococcosis in ferrets: a diverse spectrum of clinical disease.

Cryptococcosis was diagnosed in seven ferrets (five from Australia; two from western Canada) displaying a wide range of clinical signs. Two of the ferrets lived together. One (5-years-old) had cryptococcal rhinitis and presented when the infection spread to the nasal bridge. Its sibling developed cryptococcal abscessation of the right retropharyngeal lymph node 12 months later, soon after developing a severe skin condition. DNA fingerprinting and microsatellite analysis demonstrated that the two strains isolated from these siblings were indistinguishable. Two ferrets (2- to 3-years-old) developed generalised cryptococcosis: one had primary lower respiratory tract disease with pneumonia, pleurisy and mediastinal lymph node involvement, while in the other a segment of intestine was the primary focus of infection with subsequent spread to mesenteric lymph nodes, liver and lung. The remaining three ferrets (1.75 to 4-years-old) had localised disease of a distal limb, in one case with spread to the regional lymph node. Cryptococcus bacillisporus (formerly C. neoformans var gattii) accounted for three of the four infections in Australian ferrets where the biotype could be determined. The Australian ferret with intestinal involvement and the two ferrets from Vancouver had C. neoformans var grubii infections.

Animals↗

Helicobacter mustelae isolation from feces of ferrets: evidence to support fecal-oral transmission of a gastric Helicobacter.

Helicobacter mustelae has been isolated from stomachs of ferrets with chronic gastritis and ulcers. When H. mustelae is inoculated orally into H. mustelae-negative ferrets, the animals become colonized and develop gastritis, a significant immune response, and a transient hypochlorhydria. All of these features mimic Helicobacter pylori-induced gastric disease in humans. Because the epidemiology of H. pylori infection is poorly understood and its route of transmission is unknown, the feces of weanling and adult ferrets were cultured for the presence of H. mustelae. H. mustelae was isolated from the feces of 11 of 36 ferrets by using standard helicobacter isolation techniques. H. mustelae was identified by biochemical tests, ultrastructural morphology, reactivity with specific DNA probes, and 16S rRNA sequencing. H. mustelae was not recovered from 20-week-old ferrets which had been H. mustelae positive as weanlings, nor was H. mustelae recovered from 1-year-old ferrets. Isolation of H. mustelae from feces may correspond to periods of transient hypochlorhydria, or H. mustelae may be shed in feces intermittently. The H. mustelae-colonized ferret provides an ideal model for studying the pathogenesis and transmission of H. pylori-induced gastric disease.

Animals↗

Neural integration of jejunal motility and ion transport in nematode-infected ferrets.

Jejunal motility measured manometrically and coupled fluctuations in electrogenic ion transport measured as transmural potential differences (PD) were simultaneously studied in ferrets infected with enteric stages of the parasitic nematode, Trichinella spiralis. Vagotomy in uninfected ferrets abolished jejunal motility clusters and associated PD oscillations. Conversely, in infected ferrets on days 8-12 postinfection (PI), vagotomy did not abolish jejunal motility and PD. Calculated motility indexes (MI) indicated that postvagotomy MI decreased to 12% of prevagotomy MI in uninfected ferrets, whereas, in T.spiralis-infected ferrets, postvagotomy MI declined only to 48% of prevagotomy MI. Atropine abolished all vagotomy-resistant residual jejunal motility clusters and PD oscillations in T. spiralis-infected ferrets. Decreased intestinal content of substance P (27% of control) and vasoactive intestinal peptide (41% of control) and increased myeloperoxidase activity (262% of control) were detected in T. spiralis-infected ferrets. Our results suggest that integrated neural control of muscular and epithelial effectors in the small bowel is altered by nematode-induced inflammation.

Animals↗

Developmental expression patterns of CFTR in ferret tracheal surface airway and submucosal gland epithelia.

Submucosal glands are a major site of cystic fibrosis transmembrane conductance regulator (CFTR) expression in the human airway and may play an important role in the pathogenesis of cystic fibrosis. In humans, strategies for gene targeting to submucosal glands will likely be dependent on in utero gene transfer to submucosal gland progenitors because of the inaccessibility of these regions from the fully developed airway. However, little is known about the ontogeny of CFTR gene expression in developing submucosal glands and the potential functional role(s) CFTR may have during gland development. To this end, we describe the partial cloning of the ferret CFTR cDNA which was used for in situ mRNA localization studies in developing ferret trachea. The ferret animal model is attractive for studies pertaining to the development of tracheal submucosal glands because postnatal tracheal development in this species mirrors in utero gland development in humans. Sequence analysis of the first nucleotide binding domain (NBD1) from ferret CFTR revealed a striking homology to the human gene at both the DNA (94.4%) and amino acid level (97%). Interestingly, this high level of amino acid homology extends to a group of mammalian species (ferret, human, sheep, and bovine) which have similar lung morphologies with respect to the presence of surface airway goblet cells and submucosal glands. In contrast, mouse and rat airways which are quite divergent from those of ferret, human, sheep, and bovine species with respect to secretory cell types in the airway and abundance of submucosal glands, demonstrate significantly less homology (80%) with respect to CFTR amino acid sequence in the NBD1 domain. Given that traditional phylogenetic classification of these species does not mirror the evolutionary conservation of CFTR, such findings would suggest that certain aspects of lung morphology may be reflected in the evolutionary conservation of CFTR NBD1 amino acid sequences. CFTR in situ hybridization studies in ferret trachea demonstrate a developmental increase (3-4 fold) in CFTR mRNA expression within the surface airway epithelium between -2 day to 5 wk which mirrors an increase in ciliogenesis over this time frame. Additionally, all stages of gland development including the most primordial gland-forming buds could be seen to contain infrequent cells which highly express CFTR at a level that remained constant throughout development. Such findings suggest that differentiation of gland progenitor cells to CFTR-expressing submucosal gland cells occurs very early within submucosal gland development and morphogenesis.

Amino Acid Sequence↗

Eosinophilic gastroenteritis with Splendore-Hoeppli material in the ferret (Mustela putorius furo).

Eosinophilic gastroenteritis, focal or diffuse with eosinophilic infiltrations of the stomach or intestine, has been described in human beings, cats, dogs, and horses. In this paper, we describe infiltration of the gastrointestinal tract with eosinophils accompanied by a circulating eosinophilia in six ferrets (Mustela putorius furo). Clinical signs included chronic weight loss, anorexia, and diarrhea. The small intestines from five ferrets had diffuse infiltrates of eosinophils. This resulted in focal or multifocal loss of the muscular tunic in three ferrets. Two of these ferrets also had eosinophilic gastritis. Eosinophilic granulomas with Splendore-Hoeppli material were present in mesenteric lymph nodes in four ferrets. Two ferrets had multiple organ involvement; one had eosinophilic granulomas in the liver, mesentery, and choroid plexus as well as moderate parapancreatic segmental arteritis with infiltration of eosinophils and mural thrombosis. The second ferret had, in addition to moderate diffuse gastric and small intestinal eosinophilic mucosal infiltrations, interstitial eosinophilic pulmonary infiltrates. Examination of all tissues failed to reveal an infectious agent.

Animals↗