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1.
Sci Rep ; 12(1): 20250, 2022 11 24.
Article in English | MEDLINE | ID: mdl-36424421

ABSTRACT

Glucocorticoids are regularly used as biomarkers of relative health for individuals and populations. Around the Western Antarctic Peninsula (WAP), baleen whales have and continue to experience threats, including commercial harvest, prey limitations and habitat change driven by rapid warming, and increased human presence via ecotourism. Here, we measured demographic variation and differences across the foraging season in blubber cortisol levels of humpback whales (Megaptera novaeangliae) over two years around the WAP. Cortisol concentrations were determined from 305 biopsy samples of unique individuals. We found no significant difference in the cortisol concentration between male and female whales. However, we observed significant differences across demographic groups of females and a significant decrease in the population across the feeding season. We also assessed whether COVID-19-related reductions in tourism in 2021 along the WAP correlated with lower cortisol levels across the population. The decline in vessel presence in 2021 was associated with a significant decrease in humpback whale blubber cortisol concentrations at the population level. Our findings provide critical contextual data on how these hormones vary naturally in a population over time, show direct associations between cortisol levels and human presence, and will enable comparisons among species experiencing different levels of human disturbance.


Subject(s)
COVID-19 , Humpback Whale , Humans , Animals , Male , Female , Hydrocortisone , Antarctic Regions , Seasons
2.
R Soc Open Sci ; 9(11): 220724, 2022 Nov.
Article in English | MEDLINE | ID: mdl-36397972

ABSTRACT

Antarctic minke whales (Balaenoptera bonaerensis, AMW) are an abundant, ice-dependent species susceptible to rapid climatic changes occurring in parts of the Antarctic. Here, we used remote biopsy samples and estimates of length derived from unoccupied aircraft system (UAS) to characterize for the first time the sex ratio, maturity, and pregnancy rates of AMWs around the Western Antarctic Peninsula (WAP). DNA profiling of 82 biopsy samples (2013-2020) identified 29 individual males and 40 individual females. Blubber progesterone levels indicated 59% of all sampled females were pregnant, irrespective of maturity. When corrected for sexual maturity, the median pregnancy rate was 92.3%, indicating that most mature females become pregnant each year. We measured 68 individuals by UAS (mean = 8.04 m) and estimated that 66.5% of females were mature. This study provides the first data on the demography of AMWs along the WAP and represents the first use of non-lethal approaches to studying this species. Furthermore, these results provide baselines against which future changes in population status can be assessed in this rapidly changing marine ecosystem.

3.
Nat Commun ; 13(1): 6327, 2022 11 01.
Article in English | MEDLINE | ID: mdl-36319629

ABSTRACT

Microparticles, such as microplastics and microfibers, are ubiquitous in marine food webs. Filter-feeding megafauna may be at extreme risk of exposure to microplastics, but neither the amount nor pathway of microplastic ingestion are well understood. Here, we combine depth-integrated microplastic data from the California Current Ecosystem with high-resolution foraging measurements from 191 tag deployments on blue, fin, and humpback whales to quantify plastic ingestion rates and routes of exposure. We find that baleen whales predominantly feed at depths of 50-250 m, coinciding with the highest measured microplastic concentrations in the pelagic ecosystem. Nearly all (99%) microplastic ingestion is predicted to occur via trophic transfer. We predict that fish-feeding whales are less exposed to microplastic ingestion than krill-feeding whales. Per day, a krill-obligate blue whale may ingest 10 million pieces of microplastic, while a fish-feeding humpback whale likely ingests 200,000 pieces of microplastic. For species struggling to recover from historical whaling alongside other anthropogenic pressures, our findings suggest that the cumulative impacts of multiple stressors require further attention.


Subject(s)
Euphausiacea , Humpback Whale , Water Pollutants, Chemical , Animals , Plastics , Microplastics , Ecosystem , Cetacea , Fishes , Eating
4.
R Soc Open Sci ; 9(7): 211557, 2022 Jul.
Article in English | MEDLINE | ID: mdl-35911199

ABSTRACT

Acoustic signalling is the predominant form of communication among cetaceans. Understanding the behavioural state of calling individuals can provide insights into the specific function of sound production; in turn, this information can aid the evaluation of passive monitoring datasets to estimate species presence, density, and behaviour. Antarctic minke whales are the most numerous baleen whale species in the Southern Ocean. However, our knowledge of their vocal behaviour is limited. Using, to our knowledge, the first animal-borne audio-video documentation of underwater behaviour in this species, we characterize Antarctic minke whale sound production and evaluate the association between acoustic behaviour, foraging behaviour, diel patterns and the presence of close conspecifics. In addition to the previously described downsweep call, we find evidence of three novel calls not previously described in their vocal repertoire. Overall, these signals displayed peak frequencies between 90 and 175 Hz and ranged from 0.2 to 0.8 s on average (90% duration). Additionally, each of the four call types was associated with measured behavioural and environmental parameters. Our results represent a significant advancement in understanding of the life history of this species and improve our capacity to acoustically monitor minke whales in a rapidly changing Antarctic region.

5.
Mar Pollut Bull ; 174: 113194, 2022 Jan.
Article in English | MEDLINE | ID: mdl-34902768

ABSTRACT

Human noise can be harmful to sound-centric marine mammals. Significant research has focused on characterizing behavioral responses of protected cetacean species to navy mid-frequency active sonar (MFAS). Controlled exposure experiments (CEE) using animal-borne tags have proved valuable, but smaller dolphins are not amenable to tagging and groups of interacting individuals are more relevant behavioral units for these social species. To fill key data gaps on group responses of social delphinids that are exposed to navy MFAS in large numbers, we describe novel approaches for the coordinated collection and integrated analysis of multiple remotely-sensed datasets during CEEs. This involves real-time coordination of a sonar source, shore-based group tracking, aerial photogrammetry to measure fine-scale movements and passive acoustics to quantify vocal activity. Using an example CEE involving long-beaked common dolphins (Delphinus delphis bairdii), we demonstrate how resultant quantitative metrics can be used to estimate behavioral changes and noise exposure-response relationships.


Subject(s)
Common Dolphins , Dolphins , Acoustics , Animals , Noise , Remote Sensing Technology , Sound
6.
Sci Rep ; 11(1): 23618, 2021 12 08.
Article in English | MEDLINE | ID: mdl-34880273

ABSTRACT

Humpback whales (Megaptera novaeangliae) are a cosmopolitan species and perform long annual migrations between low-latitude breeding areas and high-latitude feeding areas. Their breeding populations appear to be spatially and genetically segregated due to long-term, maternally inherited fidelity to natal breeding areas. In the Southern Hemisphere, some humpback whale breeding populations mix in Southern Ocean waters in summer, but very little movement between Pacific and Atlantic waters has been identified to date, suggesting these waters constituted an oceanic boundary between genetically distinct populations. Here, we present new evidence of summer co-occurrence in the West Antarctic Peninsula feeding area of two recovering humpback whale breeding populations from the Atlantic (Brazil) and Pacific (Central and South America). As humpback whale populations recover, observations like this point to the need to revise our perceptions of boundaries between stocks, particularly on high latitude feeding grounds. We suggest that this "Southern Ocean Exchange" may become more frequent as populations recover from commercial whaling and climate change modifies environmental dynamics and humpback whale prey availability.


Subject(s)
Humpback Whale/physiology , Reproduction , Animal Migration , Animals , Climate Change , Feeding Behavior , Oceans and Seas
7.
Clin. transl. oncol. (Print) ; 23(9): 1818-1826, sept. 2021.
Article in English | IBECS | ID: ibc-222181

ABSTRACT

Introduction The efficacy of immune checkpoint inhibitors in patients with brain metastases (BMs) from non-oncogene addicted non-small cell lung cancer (NSCLC) is under investigation. Here, we sought to determine the optimal management of NSCLCs with PD-L1 ≥ 50% and asymptomatic BMs who were treated with first-line pembrolizumab. Methods Thirty patients from 15 institutions with PD-L1 ≥ 50% NSCLC had asymptomatic BMs, and met inclusion criteria. Patients were classified based on whether they had undergone upfront local radiotherapy for BMs as well as on the type of brain radiotherapy received. Results Nine patients were treated with upfront pembrolizumab alone, 8 patients with whole-brain radiotherapy (WBRT) followed by pembrolizumab and 13 patients with stereotactic radiosurgery (SRS) followed by pembrolizumab. Patients’ characteristics were similar among the three groups of patients except for a higher number of BMs ≥ 3 in the WBRT group. One complete and 4 partial intracranial responses were observed with upfront pembrolizumab alone. The median survival was not reached for the pembrolizumab and WBRT (n = 8) groups, and it was 7.6 months for the SRS (n = 13) group (P = 0.09), with 12-month survival rates being 55.5%, 62.5%, and 23.0%, respectively. Salvage WBRT was delivered in 1 patient in the upfront pembrolizumab group and in 4 patients in the SRS group. Conclusions Upfront pembrolizumab showed efficacy in selected patients with PD-L1 ≥ 50% non-oncogene addicted NSCLC and asymptomatic BMs. Prospective studies should address whether pembrolizumab alone, and deferral of radiotherapy, could be pursued in this patient population (AU)


Subject(s)
Humans , Male , Female , Adult , Middle Aged , Aged , Aged, 80 and over , Antibodies, Monoclonal, Humanized/therapeutic use , Antineoplastic Agents, Immunological/therapeutic use , B7-H1 Antigen/metabolism , Brain Neoplasms/drug therapy , Brain Neoplasms/secondary , Carcinoma, Non-Small-Cell Lung/pathology , Lung Neoplasms/pathology , Antibodies, Monoclonal, Humanized/adverse effects , Antineoplastic Agents, Immunological/adverse effects , Retrospective Studies , Salvage Therapy
9.
ESMO Open ; 6(2): 100078, 2021 04.
Article in English | MEDLINE | ID: mdl-33735802

ABSTRACT

BACKGROUND: To stratify the prognosis of patients with programmed cell death-ligand 1 (PD-L1) ≥ 50% advanced non-small-cell lung cancer (aNSCLC) treated with first-line immunotherapy. METHODS: Baseline clinical prognostic factors, the neutrophil-to-lymphocyte ratio (NLR), PD-L1 tumour cell expression level, lactate dehydrogenase (LDH) and their combination were investigated by a retrospective analysis of 784 patients divided between statistically powered training (n = 201) and validation (n = 583) cohorts. Cut-offs were explored by receiver operating characteristic (ROC) curves and a risk model built with validated independent factors by multivariate analysis. RESULTS: NLR < 4 was a significant prognostic factor in both cohorts (P < 0.001). It represented 53% of patients in the validation cohort, with 1-year overall survival (OS) of 76.6% versus 44.8% with NLR > 4, in the validation series. The addition of PD-L1 ≥ 80% (21% of patients) or LDH < 252 U/l (25%) to NLR < 4 did not result in better 1-year OS (of 72.6% and 74.1%, respectively, in the validation cohort). Eastern Cooperative Oncology Group (ECOG) performance status (PS) of 2 [P < 0.001, hazard ratio (HR) 2.04], pretreatment steroids (P < 0.001, HR 1.67) and NLR < 4 (P < 0.001, HR 2.29) resulted in independent prognostic factors. A risk model with these three factors, namely, the lung immuno-oncology prognostic score (LIPS)-3, accurately stratified three OS risk-validated categories of patients: favourable (0 risk factors, 40%, 1-year OS of 78.2% in the whole series), intermediate (1 or 2 risk factors, 54%, 1-year OS 53.8%) and poor (>2 risk factors, 5%, 1-year OS 10.7%) prognosis. CONCLUSIONS: We advocate the use of LIPS-3 as an easy-to-assess and inexpensive adjuvant prognostic tool for patients with PD-L1 ≥ 50% aNSCLC.


Subject(s)
Carcinoma, Non-Small-Cell Lung , Lung Neoplasms , Antibodies, Monoclonal, Humanized , B7-H1 Antigen , Carcinoma, Non-Small-Cell Lung/diagnosis , Carcinoma, Non-Small-Cell Lung/drug therapy , Humans , Lung , Lung Neoplasms/diagnosis , Lung Neoplasms/drug therapy , Prognosis , Retrospective Studies
10.
Clin Transl Oncol ; 23(9): 1818-1826, 2021 Sep.
Article in English | MEDLINE | ID: mdl-33728869

ABSTRACT

INTRODUCTION: The efficacy of immune checkpoint inhibitors in patients with brain metastases (BMs) from non-oncogene addicted non-small cell lung cancer (NSCLC) is under investigation. Here, we sought to determine the optimal management of NSCLCs with PD-L1 ≥ 50% and asymptomatic BMs who were treated with first-line pembrolizumab. METHODS: Thirty patients from 15 institutions with PD-L1 ≥ 50% NSCLC had asymptomatic BMs, and met inclusion criteria. Patients were classified based on whether they had undergone upfront local radiotherapy for BMs as well as on the type of brain radiotherapy received. RESULTS: Nine patients were treated with upfront pembrolizumab alone, 8 patients with whole-brain radiotherapy (WBRT) followed by pembrolizumab and 13 patients with stereotactic radiosurgery (SRS) followed by pembrolizumab. Patients' characteristics were similar among the three groups of patients except for a higher number of BMs ≥ 3 in the WBRT group. One complete and 4 partial intracranial responses were observed with upfront pembrolizumab alone. The median survival was not reached for the pembrolizumab and WBRT (n = 8) groups, and it was 7.6 months for the SRS (n = 13) group (P = 0.09), with 12-month survival rates being 55.5%, 62.5%, and 23.0%, respectively. Salvage WBRT was delivered in 1 patient in the upfront pembrolizumab group and in 4 patients in the SRS group. CONCLUSIONS: Upfront pembrolizumab showed efficacy in selected patients with PD-L1 ≥ 50% non-oncogene addicted NSCLC and asymptomatic BMs. Prospective studies should address whether pembrolizumab alone, and deferral of radiotherapy, could be pursued in this patient population.


Subject(s)
Antibodies, Monoclonal, Humanized/therapeutic use , Antineoplastic Agents, Immunological/therapeutic use , Asymptomatic Diseases , B7-H1 Antigen/metabolism , Brain Neoplasms/drug therapy , Carcinoma, Non-Small-Cell Lung/drug therapy , Lung Neoplasms , Aged , Aged, 80 and over , Antibodies, Monoclonal, Humanized/adverse effects , Antineoplastic Agents, Immunological/adverse effects , Brain Neoplasms/mortality , Brain Neoplasms/radiotherapy , Brain Neoplasms/secondary , Carcinoma, Non-Small-Cell Lung/metabolism , Carcinoma, Non-Small-Cell Lung/radiotherapy , Carcinoma, Non-Small-Cell Lung/secondary , Cranial Irradiation/methods , Female , Humans , Lung Neoplasms/metabolism , Lung Neoplasms/pathology , Male , Middle Aged , Radiosurgery/statistics & numerical data , Retrospective Studies , Salvage Therapy/methods , Treatment Outcome
11.
J Exp Biol ; 223(Pt 20)2020 10 18.
Article in English | MEDLINE | ID: mdl-32820028

ABSTRACT

Fundamental scaling relationships influence the physiology of vital rates, which in turn shape the ecology and evolution of organisms. For diving mammals, benefits conferred by large body size include reduced transport costs and enhanced breath-holding capacity, thereby increasing overall foraging efficiency. Rorqual whales feed by engulfing a large mass of prey-laden water at high speed and filtering it through baleen plates. However, as engulfment capacity increases with body length (engulfment volume∝body length3.57), the surface area of the baleen filter does not increase proportionally (baleen area∝body length1.82), and thus the filtration time of larger rorquals predictably increases as the baleen surface area must filter a disproportionally large amount of water. We predicted that filtration time should scale with body length to the power of 1.75 (filter time∝body length1.75). We tested this hypothesis on four rorqual species using multi-sensor tags with corresponding unoccupied aircraft systems-based body length estimates. We found that filter time scales with body length to the power of 1.79 (95% CI: 1.61-1.97). This result highlights a scale-dependent trade-off between engulfment capacity and baleen area that creates a biomechanical constraint to foraging through increased filtration time. Consequently, larger whales must target high-density prey patches commensurate to the gulp size to meet their increased energetic demands. If these optimal patches are absent, larger rorquals may experience reduced foraging efficiency compared with smaller whales if they do not match their engulfment capacity to the size of targeted prey aggregations.


Subject(s)
Energy Metabolism , Feeding Behavior , Animals , Biomechanical Phenomena , Body Size , Whales
12.
Sci Rep ; 10(1): 12985, 2020 07 31.
Article in English | MEDLINE | ID: mdl-32737390

ABSTRACT

As whales recover from commercial exploitation, they are increasing in abundance in habitats that they have been absent from for decades. However, studying the recovery and habitat use patterns of whales, particularly in remote and inaccessible regions, frequently poses logistical and economic challenges. Here we trial a new approach for measuring whale density in a remote area, using Very-High-Resolution WorldView-3 satellite imagery. This approach has capacity to provide sightings data to complement and assist traditional sightings surveys. We compare at-sea whale density estimates to estimates derived from satellite imagery collected at a similar time, and use suction-cup archival logger data to make an adjustment for surface availability. We demonstrate that satellite imagery can provide useful data on whale occurrence and density. Densities, when unadjusted for surface availability are shown to be considerably lower than those estimated by the ship survey. However, adjusted for surface availability and weather conditions (0.13 whales per km2, CV = 0.38), they fall within an order of magnitude of those derived by traditional line-transect estimates (0.33 whales per km2, CV = 0.09). Satellite surveys represent an exciting development for high-resolution image-based cetacean observation at sea, particularly in inaccessible regions, presenting opportunities for ongoing and future research.


Subject(s)
Ecosystem , Satellite Imagery , Ships , Whales/physiology , Animals , Population Density
13.
Cancer Treat Rev ; 88: 102041, 2020 Aug.
Article in English | MEDLINE | ID: mdl-32516704

ABSTRACT

The severe acute respiratory syndrome coronavirus 2 (SARS-CoV2) and its clinical manifestation, the coronavirus disease 2019 (COVID19) have rapidly spread across the globe, leading to the declaration of a pandemic. While most present mild symptoms, it appears as though nearly 20% of confirmed patients develop significant complications. These include acute respiratory distress syndrome, septic shock and multi-organ failure, with a 3-6% mortality. A plethora of treatments has been or is being assessed, but to date, none has been proven effective. Management is mainly symptomatic, with organ support for the critically ill. Several reports, mainly case series, from across the world have concluded that patients with malignancy appear more susceptible to severe infection and mortality from COVID-19. This could be attributed to immunosuppression, co-existing medical conditions and underlying pulmonary compromise which is often the case in lung malignancy. Patients with haematological cancer and those who are receiving active chemotherapy treatment may be at greatest risk due to increased immunosuppression. This pandemic tested the resilience of worldwide health-care systems in an unprecedented manner. It has forced oncologists to rethink the entire diagnostic and therapeutic process, based on the local prevalence and impact of COVID-19. In this review we will discuss the impact of COVID-19 on patients affected by cancer, their diagnosis and management, as well as the pathophysiology of COVID-19 induced acute respiratory distress symptoms and currently investigated treatment approaches.


Subject(s)
Coronavirus Infections/physiopathology , Coronavirus Infections/therapy , Neoplasms/therapy , Neoplasms/virology , Pneumonia, Viral/physiopathology , Pneumonia, Viral/therapy , Betacoronavirus/isolation & purification , COVID-19 , Coronavirus Infections/drug therapy , Coronavirus Infections/immunology , Coronavirus Infections/mortality , Humans , Neoplasms/diagnosis , Neoplasms/mortality , Pandemics , Pneumonia, Viral/immunology , Pneumonia, Viral/mortality , Respiratory Distress Syndrome/mortality , Respiratory Distress Syndrome/physiopathology , Respiratory Distress Syndrome/virology , SARS-CoV-2 , COVID-19 Drug Treatment
14.
Ann Rev Mar Sci ; 12: 87-120, 2020 01 03.
Article in English | MEDLINE | ID: mdl-31337252

ABSTRACT

In this article, we analyze the impacts of climate change on Antarctic marine ecosystems. Observations demonstrate large-scale changes in the physical variables and circulation of the Southern Ocean driven by warming, stratospheric ozone depletion, and a positive Southern Annular Mode. Alterations in the physical environment are driving change through all levels of Antarctic marine food webs, which differ regionally. The distributions of key species, such as Antarctic krill, are also changing. Differential responses among predators reflect differences in species ecology. The impacts of climate change on Antarctic biodiversity will likely vary for different communities and depend on species range. Coastal communities and those of sub-Antarctic islands, especially range-restricted endemic communities, will likely suffer the greatest negative consequences of climate change. Simultaneously, ecosystem services in the Southern Ocean will likely increase. Such decoupling of ecosystem services and endemic species will require consideration in the management of human activities such as fishing in Antarctic marine ecosystems.


Subject(s)
Climate Change , Ecosystem , Animals , Antarctic Regions , Biodiversity , Fisheries , Food Chain , Humans , Oceans and Seas , Water Movements
15.
Science ; 366(6471): 1367-1372, 2019 12 13.
Article in English | MEDLINE | ID: mdl-31831666

ABSTRACT

The largest animals are marine filter feeders, but the underlying mechanism of their large size remains unexplained. We measured feeding performance and prey quality to demonstrate how whale gigantism is driven by the interplay of prey abundance and harvesting mechanisms that increase prey capture rates and energy intake. The foraging efficiency of toothed whales that feed on single prey is constrained by the abundance of large prey, whereas filter-feeding baleen whales seasonally exploit vast swarms of small prey at high efficiencies. Given temporally and spatially aggregated prey, filter feeding provides an evolutionary pathway to extremes in body size that are not available to lineages that must feed on one prey at a time. Maximum size in filter feeders is likely constrained by prey availability across space and time.


Subject(s)
Body Size , Food Chain , Whales/anatomy & histology , Whales/physiology , Animals , Biological Evolution , Biomass , Energy Intake , Euphausiacea , Feeding Behavior , Oceans and Seas
16.
Proc Natl Acad Sci U S A ; 116(50): 25329-25332, 2019 12 10.
Article in English | MEDLINE | ID: mdl-31767746

ABSTRACT

The biology of the blue whale has long fascinated physiologists because of the animal's extreme size. Despite high energetic demands from a large body, low mass-specific metabolic rates are likely powered by low heart rates. Diving bradycardia should slow blood oxygen depletion and enhance dive time available for foraging at depth. However, blue whales exhibit a high-cost feeding mechanism, lunge feeding, whereby large volumes of prey-laden water are intermittently engulfed and filtered during dives. This paradox of such a large, slowly beating heart and the high cost of lunge feeding represents a unique test of our understanding of cardiac function, hemodynamics, and physiological limits to body size. Here, we used an electrocardiogram (ECG)-depth recorder tag to measure blue whale heart rates during foraging dives as deep as 184 m and as long as 16.5 min. Heart rates during dives were typically 4 to 8 beats min-1 (bpm) and as low as 2 bpm, while after-dive surface heart rates were 25 to 37 bpm, near the estimated maximum heart rate possible. Despite extreme bradycardia, we recorded a 2.5-fold increase above diving heart rate minima during the powered ascent phase of feeding lunges followed by a gradual decrease of heart rate during the prolonged glide as engulfed water is filtered. These heart rate dynamics explain the unique hemodynamic design in rorqual whales consisting of a large-diameter, highly compliant, elastic aortic arch that allows the aorta to accommodate blood ejected by the heart and maintain blood flow during the long and variable pauses between heartbeats.


Subject(s)
Balaenoptera/physiology , Bradycardia/veterinary , Tachycardia/veterinary , Animals , Bradycardia/physiopathology , Electrocardiography , Feeding Behavior , Heart/physiology , Heart Rate , Oxygen/metabolism , Tachycardia/physiopathology
17.
Integr Comp Biol ; 59(1): 48-60, 2019 07 01.
Article in English | MEDLINE | ID: mdl-30445585

ABSTRACT

Blue whales are often characterized as highly stable, open-ocean swimmers who sacrifice maneuverability for long-distance cruising performance. However, recent studies have revealed that blue whales actually exhibit surprisingly complex underwater behaviors, yet little is known about the performance and control of these maneuvers. Here, we use multi-sensor biologgers equipped with cameras to quantify the locomotor dynamics and the movement of the control surfaces used by foraging blue whales. Our results revealed that simple maneuvers (rolls, turns, and pitch changes) are performed using distinct combinations of control and power provided by the flippers, the flukes, and bending of the body, while complex trajectories are structured by combining sequences of simple maneuvers. Furthermore, blue whales improve their turning performance by using complex banked turns to take advantage of their substantial dorso-ventral flexibility. These results illustrate the important role body flexibility plays in enhancing control and performance of maneuvers, even in the largest of animals. The use of the body to supplement the performance of the hydrodynamically active surfaces may represent a new mechanism in the control of aquatic locomotion.


Subject(s)
Balaenoptera/physiology , Predatory Behavior , Swimming , Animals , Biomechanical Phenomena , Hydrodynamics
18.
Anat Rec (Hoboken) ; 300(11): 1935-1941, 2017 Nov.
Article in English | MEDLINE | ID: mdl-28971623

ABSTRACT

The anatomy of large cetaceans has been well documented, mostly through dissection of dead specimens. However, the difficulty of studying the world's largest animals in their natural environment means the functions of anatomical structures must be inferred. Recently, non-invasive tracking devices have been developed that measure body position and orientation, thereby enabling the detailed reconstruction of underwater trajectories. The addition of cameras to the whale-borne tags allows the sensor data to be matched with real-time observations of how whales use their morphological structures, such as flukes, flippers, feeding apparatuses, and blowholes for the physiological functions of locomotion, feeding, and breathing. Here, we describe a new tag design with integrated video and inertial sensors and how it can be used to provide insights to the function of whale anatomy. This technology has the potential to facilitate a wide range of discoveries and comparative studies, but many challenges remain to increase the resolution and applicability of the data. Anat Rec, 300:1935-1941, 2017. © 2017 Wiley Periodicals, Inc.


Subject(s)
Geographic Information Systems/instrumentation , Swimming/physiology , Video Recording/instrumentation , Whales/anatomy & histology , Animals , Biomechanical Phenomena , Environment , Feeding Behavior/physiology , Oceans and Seas , Orientation , Remote Sensing Technology/instrumentation , Remote Sensing Technology/methods , Respiration , Video Recording/methods , Whales/physiology
19.
Ann Rev Mar Sci ; 9: 367-386, 2017 01 03.
Article in English | MEDLINE | ID: mdl-27620830

ABSTRACT

Baleen whales are gigantic obligate filter feeders that exploit aggregations of small-bodied prey in littoral, epipelagic, and mesopelagic ecosystems. At the extreme of maximum body size observed among mammals, baleen whales exhibit a unique combination of high overall energetic demands and low mass-specific metabolic rates. As a result, most baleen whale species have evolved filter-feeding mechanisms and foraging strategies that take advantage of seasonally abundant yet patchily and ephemerally distributed prey resources. New methodologies consisting of multi-sensor tags, active acoustic prey mapping, and hydrodynamic modeling have revolutionized our ability to study the physiology and ecology of baleen whale feeding mechanisms. Here, we review the current state of the field by exploring several hypotheses that aim to explain how baleen whales feed. Despite significant advances, major questions remain about the processes that underlie these extreme feeding mechanisms, which enabled the evolution of the largest animals of all time.


Subject(s)
Feeding Behavior , Whales , Animals , Body Size , Hydrodynamics
20.
Ecol Appl ; 26(4): 1075-85, 2016 Jun.
Article in English | MEDLINE | ID: mdl-27509749

ABSTRACT

Behavioral response studies provide significant insights into the nature, magnitude, and consequences of changes in animal behavior in response to some external stimulus. Controlled exposure experiments (CEEs) to study behavioral response have faced challenges in quantifying the importance of and interaction among individual variability, exposure conditions, and environmental covariates. To investigate these complex parameters relative to blue whale behavior and how it may change as a function of certain sounds, we deployed multi-sensor acoustic tags and conducted CEEs using simulated mid-frequency active sonar (MFAS) and pseudo-random noise (PRN) stimuli, while collecting synoptic, quantitative prey measures. In contrast to previous approaches that lacked such prey data, our integrated approach explained substantially more variance in blue whale dive behavioral responses to mid-frequency sounds (r2 = 0.725 vs. 0.14 previously). Results demonstrate that deep-feeding whales respond more clearly and strongly to CEEs than those in other behavioral states, but this was only evident with the increased explanatory power provided by incorporating prey density and distribution as contextual covariates. Including contextual variables increases the ability to characterize behavioral variability and empirically strengthens previous findings that deep-feeding blue whales respond significantly to mid-frequency sound exposure. However, our results are only based on a single behavioral state with a limited sample size, and this analytical framework should be applied broadly across behavioral states. The increased capability to describe and account for individual response variability by including environmental variables, such as prey, that drive foraging behavior underscores the importance of integrating these and other relevant contextual parameters in experimental designs. Our results suggest the need to measure and account for the ecological dynamics of predator-prey interactions when studying the effects of anthropogenic disturbance in feeding animals.


Subject(s)
Predatory Behavior , Sound , Whales/physiology , Animals , Pacific Ocean
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