Les hommes ont oublié cette vérité. Mais tu ne dois pas l'oublier, dit le renard. Tu deviens responsable pour toujours de ce que tu as apprivoisé.
Le Petit Prince, chap. 21
Showing posts with label management. Show all posts
Showing posts with label management. Show all posts

Sunday, 4 September 2016

Proposed management plan for cats and black rats on Christmas Island.


Algar, D., & Johnston, M. (2010). Proposed management plan for cats and black rats on Christmas Island. Government of Western Australia Department of Environment and Conservation.


Proposed management plan for cats and black rats on Christmas Island 1Report outline The impact of cats on the biodiversity of Christmas Island is of concern to land management agencies and the broader  community.  Domestic  and  stray  cats  reside  in  the  residential,  commercial  and  light industrial  area while a population of feral cats exists across the rest of the island (i.e. mining lease, national park and other  Crown  land).  Concern  has  been  raised  regarding  the  threat  that  all ‘classes’  of  cats  present  to  the  viability  of  a  number  of  endangered  fauna  populations. Additionally,  previous  research  has  demonstrated  that  the  cats  on  the  island  also  have  a  very high  prevalence  of  Toxoplasmosis, a  parasite  that  can  lead  to  serious  human  health complications.The  management  of  cats  on  the  island  is  a  complex  task  as reduction/eradication in cat numbers alone could lead to changes in the abundance of other exotic species populations, especially  the  introduced  black  rat  which  then  may  threaten  wildlife  species  and  also  have disease implications.  
Land  management  agencies  on  Christmas  Island  have  commissioned  this report  which  describes  the  rationale and development of a long-term cat and black rat management and eradication plan to mitigate the environmental  and  social  impacts  of  cats  and  black  rats across  all  land  tenures  (shire-managed  lands,  Crown land including mine leases and Christmas Island National Park).   
The  report  provides  a  background  to  the  threats  and  impacts  of  cats and  black  rats  on  the  island’s  natural  and  social  environment,  including  wildlife  predation  and disease  threats  to  wildlife  and  human  health.  It  documents  previous  reports  in  relation  to impact  and  management  of  cats  and  black  rats  on  Christmas  Island.  The  current  local  cat management  laws  (Shire  of  Christmas  Island  Local  Law  for  the  Keeping  and  Control of Cats 2004) under the Local Government Act 1995 (WA) (CI) are evaluated (see Appendix 1) with the aim of limiting domestic and stray cat impact on the iconic native fauna of Christmas Island, promoting responsible cat ownership, compliance and enforcement of cat management laws and measures required to implement a ‘last cat policy’ for the Island.  
Cat  and  rodent  eradication  programs  and strategies  developed  and/or  implemented  by other conservation  agencies and local governments, particularly for islands are evaluated for their utility on Christmas Island. A strategy  is recommended that  provides  a staged approach  to  cat  and black  rat  management and  control  leading to eradication of one or both target species. Techniques, actions and priorities are described as are recommendations   of   where   additional   research   is   required.   A   monitoring   program   to   measure   the   effectiveness  of  the  strategy  is  reported which  enables  investigation  of  the potential  relationships  between  cats  and  their  invasive species  prey,  including  rodents  and centipedes,  and  strategies  to  address  any  negative environmental or social impacts of cat control. Monitoring requirements to maintain a cat and black rat free status including quarantine requirements to prevent, detect and quickly manage, new incursions are also discussed. 
Timelines and resource requirements to undertake this program are provided in Appendix 2. 

Tuesday, 14 June 2016

Dogs vs camera traps: a comparison of techniques for detecting feral cats

Glen, A. S., Anderson, D., Veltman, C. J., Garvey, P. M., & Nichols, M. (2016). Wildlife detector dogs and camera traps: a comparison of techniques for detecting feral cats. New Zealand Journal of Zoology, 1-11.

A major challenge in controlling overabundant wildlife is monitoring their populations, particularly as they decline to very low density. Camera traps and wildlife detector dogs are increasingly being used for this purpose. We compared the costeffectiveness of these two approaches for detecting feral cats (Felis catus) on two pastoral properties in Hawke’s Bay, North Island, New Zealand. One property was subject to intensive pest removal, while the other had no recent history of pest control. Camera traps and wildlife detector dogs detected cats at similar rates at both sites. The operating costs of each method were also comparable. We identify a number of advantages and disadvantages of each technique, and suggest priorities for further research.

Saturday, 5 December 2015

Defining priorities for dog population management through mathematical modeling

Baquero, O. S., Akamine, L. A., Amaku, M., & Ferreira, F. (2015). Defining priorities for dog population management through mathematical modeling. Preventive veterinary medicine.

We simulated dog population dynamics for a thirty-years period using a logistic growth model. Through sensitivity analyses, we determined the influence of the parameters used in the model. Carrying capacity was the most influential parameter in all simulations. In the owned-dog population, the influence of immigration, abandonment and births was 19%, 16% and 6% of the influence of the carrying capacity, respectively. In the sterilized owned-dog population, the influence of abandonment, female and male sterilization was 37%, 30% and 27% of the influence of the carrying capacity. In the stray population, the influence of abandonment, carrying capacity of the owned-dog population and adoption was 10%, 9% and 6% of the influence of the carrying capacity. In the sterilized stray population, the influence of births, female sterilization and male sterilization was 45%, 15% and 13% of the influence of the carrying capacity. Other parameters had lower influence values. Modification of the carrying capacity requires different interventions for the owned- and stray-dog populations. Dog trade control is a way to reduce immigration. The evaluation of sterilization effects must focus on the variations in the infertile population fraction. Adoption may improve the effects of the reduction in carrying capacity on the stray-dog population.

Friday, 4 September 2015

Review of cat behaviour in relation to disease risk and management options

Lepczyk, C. A., Lohr, C. A., & Duffy, D. C. (2015). A review of cat behavior in relation to disease risk and management options. Applied Animal Behaviour Science.

Domestic cats (Felis catus) are a common household pet and also a notorious invasive species around the world. Because cat numbers have been increasing in many locations it is critical to work on management solutions that help to reduce threats posed by cats. With regard to cat behavior, one of the threats both to cats themselves and the species that they interact with is disease transmission. As part of a broader overview on applying cat behavior to management the focus of this review is to consider different types of cat behaviors and highlight how they relate to disease as a means to help inform management. Specifically, we focus on cat movement, foraging, and cat–human interactions as broad classes of cat behavior that can lead to acquisition and transmission of diseases. In addition, we review the diseases that are commonly harbored by cats, are of growing human health concern, and for which we have reasonable information. Finally, we review the main forms of cat management in order to provide a set of recommendations for use in addressing cat diseases.

Sunday, 30 August 2015

A call for predator profiling in wildlife protection programs

Moseby, K. E., Peacock, D. E., & Read, J. L. (2015). Catastrophic cat predation: A call for predator profiling in wildlife protection programs. Biological Conservation, 191, 331-340.

Introduced predators have been implicated in the decline of many fauna populations around the world and are the main factor responsible for the failure of numerous fauna reintroduction programs. As a result, control of introduced predators is a significant management action implemented in wildlife protection programs, particularly in Australia, New Zealand and on islands. Individual predators are seldom targeted in conservation programs, which usually conduct broad-scale, non-specific predator control based on the assumption that the removal of each individual predator is equally important. In contrast, predator management programs initiated by human–wildlife conflict typically use profiling or specific control techniques to target ‘problem’ predators.


We investigated whether individual domestic cats vary in the magnitude of their predation threat to wildlife by first reviewing published and anecdotal information on incidences where feral cats have had significant impacts on wildlife protection or translocation programs. We concentrated on prey species that were likely to be more challenging to cats based on their size, novelty or behavior. We then used the results from this review to create a profile of cats that were most likely to cause significant problems for challenging prey, and tested this during a translocation of a threatened mammal species. Both the review and translocation suggested that large male cats 3.5 kg or heavier were disproportionally responsible for predation events on challenging prey and possibly implicated in the failure of many protection or reintroduction programs of mammals greater than 1 kg. Some cats within this demographic profile were responsible for multiple prey deaths suggesting that both demography and prior experience may define predators capable of ‘catastrophic predation’ that threatens prey populations.

Current control programs for feral cats and foxes that do not target particular predator profiles may inadvertently avoid controlling individuals most likely to specialize on threatened prey. We call for the application of crime-fighting forensic and aggregate profiling techniques in wildlife protection programs to determine the profile of predators likely to prey on focal wildlife species and to guide the development of control methods that specifically target these individuals.

Thursday, 2 July 2015

Different cat diet between islands

Bonnaud, E., Palmas, P., Bourgeois, K., Ollier, S., Zarzoso-Lacoste, D., & Vidal, E. (2015). Island specificities matter: cat diet differs significantly between islands of a major breeding archipelago for a vulnerable endemic seabird. Biological Invasions, 1-15.

Domestic cats are one of the most widespread predators on islands worldwide and are responsible for numerous reductions and extinctions of species on islands. The three main islands of the Hyères Archipelago house one of the largest colonies of the Mediterranean endemic Yelkouan shearwater Puffinus yelkouan that has recently been up-listed by the IUCN to ‘vulnerable’. The main objectives of this study were to assess the diet of cats and to study the effect of cat predation on Yelkouan shearwater populations at the archipelago scale. The diet of cats was studied using scat analyses according to years and seasons for each island. Simultaneously, Yelkouan shearwater breeding success was monitored during a period of 8 years on Port-Cros and Porquerolles, and 3 years on Le Levant. Descriptive analyses and GLM were used to compare data gathered on each island. At the archipelago scale, cats preyed strongly upon introduced mammals and shearwaters. Surprisingly, large differences appeared in cats’ diet according to the island considered. The Yelkouan shearwater was the primary prey of cats on Le Levant, but secondary on Port-Cros and Porquerolles. Cat predation was mainly concentrated during the shearwater prospecting period, when birds arrive at the colonies and look for a mate (if they are not already paired) and a burrow before breeding. Consequently cat impact was low on shearwater breeding success. However, this study demonstrates that the cat management conducted on Port-Cros was positive for fledging success. The successful cat eradication on Port-Cros supports the need to continue working for Yelkouan shearwater conservation with Le Levant as a priority, because this is where the colonies are largest and predation on Yelkouan shearwaters is very high.

Wednesday, 1 July 2015

Urban stray and feral animals in Detroit

Reese, L. A. (2015). The Dog Days of Detroit: Urban Stray and Feral Animals. City & Community, 14(2), 167-182.

This article details the extent and import of the stray and feral dog problem in the City of Detroit in the context of regime and network theories of governance. Using data drawn from a survey of animal welfare service providers, this article provides a description of the complex and essentially grass roots service provision network currently in place to address the problem. The primary cause of the roaming dog problem in the city is the poor economy and the problem is worse in the most distressed neighborhoods. Several factors serve as barriers to addressing the issue. First, the actual number of roaming dogs is a question of contention in the city. Second, weaknesses in the city governing system and scarce resources have limited the public response to the problem. As a result, services are provided by an unstable and fragmented network of nonprofit organizations largely located outside the city of Detroit itself.

Días de Perro de Detroit: Extravío y Animales Salvajes en la Ciudad

Este artículo examina la dimensión e importancia del problema del extravío de perros y los perros salvajes en la ciudad de Detroit en el marco de teorías de gobernanza de regímenes y de redes, dando una descripción de la compleja y principalmente popular red de servicio actual usada para enfrentar el problema, usando información de una encuesta de proveedores de servicios de bienestar animal y otras fuentes secundarias. Se argumenta que la causa primaria del problema de vagabundeo canino en la ciudad es la mala economía y que el problema es mayor en los barrios más necesitados. Sin embargo, varios factores han servido como impedimentos para enfrentar el problema. Primero, el número actual de perros vagabundos es tema de discusión en la ciudad. Segundo, debilidades en el sistema de gobierno de la ciudad y recursos escasos han limitado la respuesta gubernamental al problema. Como resultado, servicios son brindados por una red fragmentada e inestable de organizaciones sin fines de lucro ubicadas fuera de la ciudad de Detroit.

Saturday, 2 May 2015

Approach to control free roaming dogs in Italy

Barnard, S., Chincarini, M., Di Tommaso, L., Di Giulio, F., Messori, S., & Ferri, N. (2015). FREE-ROAMING DOGS CONTROL ACTIVITIES IN ONE ITALIAN PROVINCE (2000-2013): IS THE IMPLEMENTED APPROACH EFFECTIVE?.

In Italy, standards for the management of free-roaming dogs (FRDs) are defined by regional norms, generating a high variability of approaches around the country. Despite efforts carried out by the competent authorities, FRDs are still a reality impacting upon animal health and welfare and public costs. A similar scenario can be found in many other Mediterranean and Balkan counties. Here we present 14 years of data (2000–2013) retrieved from the admission dog registry of a public shelter (PS) responsible for the collection of stray dogs from one Italian province. The aim of this retrospective study was to describe the local FRD population, identifying its source and to evaluate the effectiveness of the actions implemented by the local authorities. In the investigated period, 7,475 dogs were admitted to the PS. Despite the intense sterilisation plan (mean 381.7 sterilisations per year), the overall number of dogs entering PS did not decrease consistently across the years. Results highlighted a lack of responsibility of owners by failing to sterilise and identify their dogs and allowing intact animals to roam free, therefore producing uncontrolled and unwanted litters. The current dog population management strategy, based on both sheltering and capture-neuter-release programmes, is insufficient to tackle the straying phenomenon. Educational and sterilisation programmes should be an integral part of a successfully implemented FRD control plan. Our results provide further insight on free-roaming dog population dynamics and control systems, and may have important implications for many other local contexts across Europe trying to overcome the straying phenomenon. 

Sunday, 25 January 2015

In defense of TNR

Schmidt, R. H. Cat Fight! The TNR Wars. 2012. Proc. 25th Vertebr. Pest Conf. (R. M. Timm, Ed.) Published at Univ. of Calif., Davis. 2012. Pp. 89-94.

Although trap-neuter-return (TNR) programs for feral cats are in use or being proposed in many communities, a number of non-governmental organizations have gone on record as being opposed to them. For example, The Wildlife Society’s (TWS) policy statement on feral cats (2011) includes a comment that TWS “Oppose the passage of any local or state ordinances that legalize the maintenance of “managed” (trap/neuter/release) free-ranging cat colonies.” Similarly, the American Bird Conservancy’s (ABC) resolution on free-roaming cats (feral and tamed) states that ABC “strongly opposes managed free-roaming cat colonies.” Wildlife managers often lament the loss of tools and techniques (e.g., traps, pesticides, regulatory authority) for managing “nuisance” animals. The attack against TNR programs is indicative of an active program to eliminate a management tool. Is the negativity toward TNR justified? Stated another way, do the negative aspects of TNR programs outweight any possitive elements? I argue that the complete rejection of TNR is premature, erroneous, and without merit.

Wednesday, 14 January 2015

Rats, cats and seabirds: hyperpredation and mesopredator release

Ringler, D., Russell, J., & Le Corre, M. (2015). Trophic roles of black rats and seabird impacts on tropical islands: Mesopredator release or hyperpredation?.Biological Conservation.

Rats contribute to the decline of tropical seabird populations by affecting their breeding success through direct predation of eggs and chicks. When they coexist with other predators, invasive rats may also generate indirect interactions via the changes they impose on the structure of communities and trophic interactions following invasion (‘hyperpredation process’), or when apex predators are eradicated from the ecosystem (‘mesopredator release effect’). Understanding these effects is necessary to implement restoration operations that actually benefit threatened seabird populations. We investigated these processes on two French tropical seabird islands of the western Indian Ocean, Europa and Juan de Nova, where black rats coexist with two different apex predator species (introduced cats and potentially native barn owls). The parallel use of several methods (diet analysis, stable isotopes, seabird monitoring) to identify trophic roles of rats revealed that the direct impact of rats on seabirds was particularly high on Europa where only rats and owls occur, with high consumption of chicks resulting in low breeding success for several seabird species. We also suggested that hyperpredation associated with top-down regulation of cats is occurring on Juan de Nova, although territoriality of cats may buffer this process. Conversely we found evidence that mesopredator release effect is unlikely, irrespective of the apex predator identity. Considering the most likely effects on both islands we provided recommendations on eradication priorities to mitigate the risk of local extinction that seabirds are currently facing.

Thursday, 9 October 2014

ISFM guidelines on population management and welfare of unowned domestic cats

Sparkes, A. H., Bessant, C., Cope, K., Ellis, S. L., Finka, L., Halls, V., Hiestand, K., Horsford, K., Laurence, C., MacFarlaine, I., Neville, P.F., Stavisky, J. & Yeates, J. (2013). ISFM guidelines on population management and welfare of unowned domestic cats (Felis catus). Journal of feline medicine and surgery,15(9), 811-817.

Guidelines rationale: Cats are among the most commonly kept domestic pets, and coexist with humans in a variety of different circumstances. Cats are sentient beings and, as such, humans have a responsibility for cat welfare where humans and cats coexist. Because cats reproduce efficiently, measures to control populations are frequently needed, but these should be based on ethical and humane approaches.

Framework: These consensus guidelines from the International Society of Feline Medicine’s Welfare Advisory Panel provide a framework for the approach to welfare and population control measures, primarily among unowned cats and those going through a homing programme.

Wednesday, 8 October 2014

Impact of hysterectomy in an urban cat colony

Mendes-de-Almeida, F., Faria, M. C. F., Landau-Remy, G., Branco, A. S., Barata, P., Chame, M., Salim Pereira, M.J. & Labarthe, N., 2006. The Impact of Hysterectomy in an Urban Colony of Domestic Cats (Felis catus Linnaeus, 1758). International Journal of Applied Research in Veterinary Medicine. 4(2): 134–141. 

The easiness with which urban cats form colonies and the exponential growth of these populations are a challenge for all known population control methods. The zoological garden of Rio de Janeiro (RIO- ZOO) has been dealing unsuccessfully with the issue of stray cat populations for more than 10 years. For this reason, it was decided to investigate the structure and composition of the colony of cats populating the RIOZOO and to observe, during 36 months, the impact of hysterectomy of adults, with conservation of the gonads, as a means of population control. Hysterectomy was meant to be performed biennially, though at the beginning of the program, it was performed yearly for 2 consecutive years. The total size of the colony was estimated each year using the capture-mark-recapture tech- nique. During the study's entirety, a total of 96 cats, 80 adults and 16 kittens, were caught. The yearly population estimate of cats showed that between the years 2001 and 2004, the population stopped to grow, strongly tending to decrease. The conservation of the gonads of all animals adding to the fact that no individuals were removed preserved the natural social behavior of the cats living in the colony. Thus, after 2 consecutive years of submitting captured adult females to hysterectomy, planned biennial interventions constitute an animal welfare- friendly, effective model for controlling the urban population of cats that can be proposed to public health authorities as an alternative to the traditional capture and culling in Brazil

Friday, 15 August 2014

Removing cats from islands in NW Mexico

Wood, B., Tershy, B. R., Hermosillo, M. A., Donlan, C. J., Sanchez, J. A., Keitt, B. S., Croll, D.A. Howald, G.R. & Biavaschi, N. (2002). Removing cats from islands in north-west Mexico. In Veitch, C. R., & Clout, M. N. (2002). Turning the Tide: The Eradication of Invasive Species: Proceedings of the International Conference on Eradication of Island Invasives,[University of Auckland, 19 to 23 February 2001] (No. 27). IUCN, 374-380.


Feral cats have been associated with extinctions of endemic island species throughout the world. Removing cats from islands is an effective way to protect biodiversity, but compared to other invasive alien mammals, cats are difficult to eradicate. Here we describe the techniques we used to eradicate cats from 15 islands in north-west Mexico between <1 and 43 km2  These eradication techniques were developed and refined on small islands (<1 km2) and then adopted successfully on larger islands (1– 43 km2 . Experienced hunters and trappers, and high quality hunting dogs were critical for successful cat eradication. The most effective technique was trapping and the most critical components of trapping were trap design and placement.

Friday, 8 August 2014

Genetic diversity and phylogeography of Australian feral cats

Koch, K. 2014. Genetic diversity and phylogeography of Australian feral cats. Accepted Dissertation thesis for the partial fulfilment of the requirements for a Doctoral of Natural Sciences. Universität Koblenz-Landau

Biodiversity is not only threatened by habitat loss, climate change and pollution, but also by invasive species. The impact of introduced species is immense and causes substantial ecological and economical costs worldwide. With the start of domestications of the African wildcat (Felis lybica) in the Near East, the transport of house cats (Felis catus) around the world as a commensal and domesticate began. The general aim of my thesis was to investigate the impact of invasive feral cats on native species as well as underlying population genetic structures, diversity and phylogeography. This was studied in the context of the demographic history in Australia and Hawai’i. My studies confirmed that the main introductions of cats to Australia began in the 19th century via ships of European settlers, traders and workers. Similarly, I was able to confirm cat introductions to Hawai’i by European traders and explorers; which has to the present a devastating effect on Hawaiian endemic species. Likewise, cats are widespread across Australia, can be found on most islands and are recognized as one of the major threats to Australian native species. A selective feeding behaviour by invasive predators was found in one of my studies. This study additionally gives an indication for possible population recovery of small Western Australian vertebrate species after predator removal. Advancement and the combination of various management techniques allow, if adequately funded, a more efficient planning and implementation of eradication campaigns. Population genetic approaches are able to give insights into population genetic structure, diversity and kinship, thereby enabling management campaigns to be more cost effective and successful. No pattern of isolation by distance between populations of Hawai’i and Australia indicated that trade routes, such as the ‘Golden Round’ of the maritime fur trade, facilitated a link between far off global cat populations. Multiple introductions to Australia and intermixing with domestic breed cats resulted in feral cat populations which show no signs of reduced genetic variability. My studies also revealed the advantages of bioproxies in combination with phylogeography, which enable the inference and reconstruction of introduction routes, history and origin of invasive species. Genetic signals of historically introduced genotypes are still discernible on islands with low number of introductions over time and thereby low intermixing with domestic fancy breeds. Feral cats’ adaptability as an invader was reconfirmed and possible underlying genetic mechanisms enabling their success as a global invader (‘global supercat’) are discussed. Research into the feralisation process of cats will provide new information regarding the domestication of cats, the genetic basis of feralisation and allow additional insights into cats’ adaptive potential.

Tuesday, 15 April 2014

Fine scale resource selection by feral cats

Recio, M. R., Mathieu, R., Virgós, E., & Seddon, P. J. 2014. Quantifying fine-scale resource selection by introduced feral cats to complement management decision-making in ecologically sensitive areas. Biological Invasions, 1-13.

The feral domestic cat (Felis catus) is considered to be one of the most damaging introduced predators, responsible for the decline and extinction of numerous native species. Advanced satellite technologies enable the study of resource selection by small mammals at fine-scales through remote data. These tools can improve understanding of the spatial ecology of introduced predators in ecologically sensitive areas, such as where cats pose a threat to native species and where improvement of predator control methods is required. We studied fine-scale resource selection by feral cats in the ecologically important New Zealand braided-river ecosystem, where they pose a risk to endangered native ground-nesting birds. We collected 34 location datasets from 21 cats fitted with lightweight global positioning system-collars, and extracted landscape variables from a resource map created using very high spatial resolution satellite imagery (Quickbird) and object-base imagery analysis for image classification. We modelled second-order seasonal and annual resource selection functions and characterized landscape composition of highly-used areas using compositional analysis. At a population level, cats generally selected fine-scale landscapes that are important for their primary prey rabbits (Oryctolagus cuniculus), and for refugia. An external validation of the annual model using data from cats tracked in an independent study showed a positive correlation with model predictions. Individual cats also visited habitats used by native ground-nesting birds, and thus pose a threat to them through secondary predation or individual specialization. Cat control operations should therefore focus around areas of concentrated ground-nesting bird activity and in areas identified as high-use by cats.

Friday, 10 January 2014

Attractans for feral cats

Clapperton, B. K., Eason, C. T., Weston, R. J., Woolhouse, A. D., & Morgan, D. R. (1994). Development and testing of attractants for feral cats, Felis catus L. Wildlife Research, 21(4), 389-399.

As part of a programme to improve feral-cat control and eradication techniques, various odours were tested as candidate lures. They included food odours (fish oils), social odours (urine and its components, anal-sac secretions and commercial wild-animal lures) and plant materials (catnip, matatabi and their essential oils). Pen bioassay experiments used a preference procedure on captive feral and domestic cats to compare the time spent investigating the odours and the number of cats visiting each odour. Field trials at rubbish dumps used scent stations to assess cat activity. Catnip and matatabi were the most promising candidate lures in both the pen bioassay and the field trials. Future directions for lure developments are suggested.

Thursday, 26 December 2013

Management preferences regarding feral cats in Hawai'i

LOHR, C. A., & LEPCZYK, C. A. (2013). Desires and Management Preferences of Stakeholders Regarding Feral Cats in the Hawaiian Islands. Conservation Biology. Article first published online: 20 DEC 2013 | DOI: 10.1111/cobi.12201

Feral cats are abundant in many parts of the world and a source of conservation conflict. Our goal was to clarify the beliefs and desires held by stakeholders regarding feral cat abundance and management. We measured people's desired abundance of feral cats in the Hawaiian Islands and identified an order of preference for 7 feral cat management techniques. In 2011 we disseminated a survey to 5407 Hawaii residents. Approximately 46% of preidentified stakeholders and 20% of random residents responded to the survey (1510 surveys returned). Results from the potential for conflict index revealed a high level of consensus (86.9% of respondents) that feral cat abundance should be decreased. The 3 most common explanatory variables for respondents’ stated desires were enjoyment from seeing feral cats (84%), intrinsic value of feral cats (12%), and threat to native fauna (73%). The frequency with which respondents saw cats and change in the perceived abundance of cats also affected respondent's desired abundance of cats; 41.3% of respondents stated that they saw feral cats daily and 44.7% stated that the cat population had increased in recent years. Other potential environmental impacts of feral cats had little affect on desired abundance. The majority of respondents (78%) supported removing feral cats from the natural environment permanently. Consensus convergence models with data from 1388 respondents who completed the relevant questions showed live capture and lethal injection was the most preferred technique and trap-neuter-release was the least preferred technique for managing feral cats. However, the acceptability of each technique varied among stakeholders. Our results suggest that the majority of Hawaii's residents would like to see effective management that reduces the abundance of feral or free-roaming cats.

See also this post

Monday, 16 December 2013

Cat-exclusion areas to reduce impact in reserves

Metsers, E. M., Seddon, P. J., & van Heezik, Y. M. (2010). Cat-exclusion zones in rural and urban-fringe landscapes: how large would they have to be?.Wildlife Research, 37(1), 47-56.
Context. The process of urban sprawl brings the human population and their domestic cats (Felis catus) in close contact with wildlife in areas that were previously remote, including reserves and conservation areas created to protect populations of vulnerable or threatened species. Various mitigation measures have been proposed, including devices designed to hinder cat hunting ability, desexing to reduce wandering and nuisance behaviours, containment at night or at all times and regulations governing cat ownership. Such regulations may aim to reduce cat densities by limiting the number of cats per household, or they may define zones around sensitive conservation areas where cat ownership is prohibited.

Aims. The present study sought to establish the necessary size of cat-exclusion zones in rural and urban-fringe landscapes where vulnerable prey species may also reside.

Methods. With GPS collars, we tracked 38 domestic cats at three sites (one rural, two urban fringe) where small reserves contained threatened lizard species.

Key results. Home ranges (95% kernel density estimates) were considerably larger for cats at the rural site (0.3–69 ha) than at urban-fringe sites (0.35–19 ha at Kaitorete Spit and 0.2–9 ha at Otago Peninsula), and were larger at night than day. Resource selection ratios indicated avoidance of open areas with little cover, such as cultivated areas (farmland), tussock grassland and duneland, whereas sources of cover such as trees and buildings were preferred. Maximum distances moved and large variability between individual cats suggest buffers in rural landscapes would need to be at least 2.4 km wide, whereas those in urban-fringe habitat could be half as large.

Conclusions. Despite significant home-range size differences exhibited by cats living in rural v. urban-fringe habitats, exclusion zones would need to be wide to account for considerable inter-cat variation in movement behaviour.

Implications. The size of an effective cat-exclusion zone should represent the specific landscape, amount of residential development and substantial variability between individual cats.

Tuesday, 11 June 2013

Bells reduce by half predation by cats

Ruxton, G. D., Thomas, S., & Wright, J. W. (2002). Bells reduce predation of wildlife by domestic cats (Felis catus). Journal of Zoology, 256(1), 81-83.

Twenty-one cat owners from a 100 km2  area, centred on Carnforth, Lancashire, England, recorded each dead prey item delivered by their cat or cats during an 8-week period, following one of three experimental schedules, each of which required each cat to have a bell on a collar for only half of the time. The mean number of items each cat delivered to the owner was 2.9 in the 4 weeks when the cats had a bell attached, compared to 5.5 for the equivalent time when the bell was absent. The bell had no effect on the relative numbers of different prey types delivered, and there was no evidence that the cats adapted their hunting behaviour to reduce the effect of the bell over time.


Read a short review about belling effectiveness
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