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Vanished Villages

open

National Park Service

This announcement is to provide public notice of the National Park Service (NPS), intention to fund the following project with University of Alaska Fairbanks under a Cooperative Ecosystem Studies Unit (CESU) program. CESUs are partnerships that provide research, technical assistance, and education. The project intended modified award is $77,500.00. This is a modification for continuation of an existing agreement, number P10AC00020. STATUTORY AUTHORITY: Agreements Concerning Cooperative Research and Training on NPS Resources (16 U.S.C. 1a-2(j)): The Secretary may enter into agreements with public or private educational institutions, States and their political subdivisions, for the purpose of developing adequate, coordinated, cooperative research and training programs concerning the resources of the National Park System, and pursuant to such agreements, to accept from and make available to the cooperator such technical and support staff, financial assistance for mutually agreed upon research projects, supplies and equipment, facilities, and administrative services relating to cooperative research units as the Secretary deems appropriate. STATEMENT OF JOINT OBJECTIVES/PROJECT MANAGEMENT PLAN: The purpose of this project is to address much needed systematic evaluation and mapping of identified but minimally documented substantial Late Prehistoric age (and earlier) village sites. These sites are located adjacent to lakes within the Brooks Range of northern Alaska and are significant because they contain rare types of features, such as large, stone-ringed communal structures (qargi) and petroglyphs, and exceptionally dense concentrations of house, storage, and hunting-related features. The purpose of this project is to build on existing survey and inventory documentation to systematically document significant Late Prehistoric age (and earlier) village sites located along Brooks Range lakeshores within NOAT and GAAR. These sites are significant because they contain rare types of features that demonstrate a prolonged human presence in an area marked largely by temporary encampments of mobile peoples. Sites targeted in Phase I include Burial, Desperation, Feniak, and Kikitaliorak Lakes located in the northern reaches of Noatak National Preserve. The project will build on existing survey and inventory level documentation to systematically record the lakeside archeological sites and cultural landscapes. This Modification Request is issued to: Three years of field work at the three different sites (XHP-00004, XHP-00017, and MIS-00352) resulted in subsurface testing of 34 features. Data derived from these investigations include stratigraphic descriptions, radiocarbon samples, faunal remains, and lithic, ceramic, and organic artifacts. A total of 12 cubic feet of collections were generated and these include 7 cubic feet of faunal remains and 5 cubic feet of lithic artifacts, organic artifacts, ceramic artifacts, wood samples, and charcoal samples. All of the wood and charcoal from 2010 and 2011 has been identified and the analysis of the 2012 assemblage is currently underway. The wood and charcoal is the only group of collections to be analyzed up to this point. The entire project assemblage contains 655 cataloged specimens including several uncounted faunal and flake lots. This assemblage has been fully processed, cleaned, rehoused, and cataloged according National Park Service curatorial guidelines and is now ready for analysis. Processing and organizing field data is another main component of this project and includes typing field notes, digitizing soil profiles, annotating photographs, and downloading and editing GPS data. Field data processing for 2010 and 2011 is largely finished and we are currently processing data collected during 2012. The partner, in cooperation with the National Park Service will: Complete a basic description of the lithic and faunal assemblages Create maps and other graphics such as artifact plates, site photos, rock art illustrations, and stratigraphic profiles in a publication quality format. Write an introductory context that includes a regional review for Late Prehistoric sites in the central Brooks Range including relevant research questions. Write the main body of the report with a narrative for the work accomplished at each site including: site location and description, stratigraphy and sampling, radiocarbon results, faunal and lithic analysis results, petroglyph descriptions, and overall site interpretations. Assemble text and graphics into a monograph style final report. Make castings of the rubber molded petroglyph from Feniak Lake for NPS visitor center in Kotzebue and UA Museum of the North. NATIONAL PARK SERVICE INVOLVEMENT -Substantial Involvement : The successful completion of this project involves a substantial degree of cooperation between the National Park Service and the proposed principal investigator. The principal investigator for this project will need to conduct initial field assessments with the park archeologist to identify features and review existing mapping and other data compiled in past decades using less sophisticated instruments than are currently available. The UAF archeologist will need to reconcile existing data with input from the park archeologist who was involved in the initial documentation efforts and work together to formulate a research documentation strategy to address data deficiencies and specific resource and park management needs. The NPS will also interface between the cooperator and regional NPS programs that must be tied into the research project: NPS Cultural Landscapes Program and the List of Classified Structures Program. The NPS will provide an archeologist to assist in the 2011 field efforts and will provide housing for the UAF crewmembers while in Kotzebue. The NPS will also conduct any necessary government to government consultations with tribal organizations (e.g., as required for NAGPRA - Inadvertent Discovery of Human Remains Plans of Action for archeological testing). Modifications to research methodologies, testing localities and other areas will be made collaboratively between the NPS and UAF researchers throughout the project as necessary. SINGLE-SOURCE JUSTIFICATION: Department of the Interior Policy (505 DM 2) requires a written justification which explains why competition is not practicable for each single-source award . The National Park Service did not solicit full and open competition for this award based the following criteria: Continuation - The activity to be funded is necessary to the satisfactory completion of, or is a continuation of an activity presently being funded, and for which competition would have a significant adverse effect on the continuity or completion of the activity. Technical contact information: Michael Holt, Michael_holt@nps.gov, 907-442-8316, National Park Service, Alaska Region End of FOA

$1K – $78K
rolling
Environmentalsustainability

Free to search & build · $99 one-time to unlock the application pack · No subscription

Vasculata 2026

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NHLBI - National Heart Lung and Blood Institute

SUMMARY The annual Vasculata conference has been convening since 2004, and has been hosted by different academic research institutions throughout the United States. Vasculata is co-sponsored by the North American Vascular Biology Organization (NAVBO), which promotes the study of vascular biology and the dissemination of scientific knowledge and discoveries to the next generation of vascular biologists and bioengineers. The NAVBO Educa- tion Committee has selected the University at Buffalo (UB) – SUNY as the host of Vasculata 2026, marking the first time the meeting will be held in Western New York! Vasculata is an intense “boot camp” that provides foun- dational knowledge in vascular biology, as well as the latest discoveries and technologies, to students and post- doctoral trainees. The meeting has grown considerably since the inaugural meeting in 2004 (a group of about 60 people) to now attracting a group of about 100-120 faculty, students, and fellows. UB, especially the Jacobs School of Medicine and Biomedical Sciences (JSMBS), houses a critical mass of faculty with expertise in various areas of vascular biology including, but not limited to, vascular endothelial cell and mural cell biology, inflamma- tory signaling and molecular mechanisms of vascular cell dysfunction in cardiovascular, cerebrovascular, and other organ-specific diseases, metabolic and hemodynamic regulation of vascular function, intercellular commu- nication, angiogenesis, vascular remodeling in development and pathology, stem cell-driven vascular biology, bioengineered vascular grafts, vascular medicine, aneurysms and other blood vessel disorders. UB is within driving distance from other top tier institutions, such as the University of Rochester (collaborating institution in Vasculata 2026), Case Western Reserve University, Cleveland Clinic, Cornell University, Rochester Institute of Technology, Syracuse University, and the University of Pittsburgh (host of Vasculata 2025). Furthermore, UB is home to the a) world-renowned Canon Stroke & Vascular Research Center that focuses on research related to the diagnosis and treatment of vascular disease through minimally invasive image-guided interventions and im- proved imaging modalities, and b) the Gates Vascular Institute that consists of a team of health care specialists from UB’s JSMBS, who provide state-of-the-art vascular, stroke, and cardiac care under one roof. A key strength of our program is the incorporation of bioengineering-based vascular-focused presentations through the involve- ment of faculty from the Departments of Biomedical Engineering at UB (including the Vasculata 2026 Chair) and the University of Rochester. All training and dissemination of new knowledge through lectures, workshops and poster sessions, as well as faculty, student and trainee networking, align with the education mission of the NHLBI.

Up to $15K
2027-05-31
health research

Free to search & build · $99 one-time to unlock the application pack · No subscription

Velocity/Pressure Dual-Sensing Probe for Acoustic Measurements in the Human Ear Canal

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NIDCD - National Institute on Deafness and Other Communication Disorders

PROJECT SUMMARY This research aims to pioneer a dual-sensing ear canal probe that simultaneously measures acoustic pressure and particle velocity, enabling accurate, reliable, and user-friendly assessment of otoacoustic emissions and middle-ear reflectance—critical for evaluating peripheral auditory function. Current ear canal acoustic probes, which rely solely on pressure microphones, suffer from inaccu- racies and noise. A major limitation is the inability of pressure-only probes to capture sufficient information to determine ear canal wave behavior—leading to sensitivity to probe positioning and the need for complex calibra- tion, and ultimately resulting in inaccuracy, unreliability, and poor usability. Our approach adds acoustic particle velocity sensing to conventional pressure measurement. This dual-sensing approach enables accurate charac- terization of ear canal acoustic waves in a single measurement, significantly improving consistency and reliability while simplifying calibration. Another challenge is that ear canal signals are often extremely faint—near the noise floor of today’s miniaturized microphones. Our method can detect otoacoustic emissions at least 10 dB quieter than state-of-the-art systems, reducing averaging time required to extract these signals from noise and enabling detection of even quieter signals. This capability is especially valuable in hearing diagnostics and research. This work builds on our recent discovery that the orb-weaving spider uses its web as an external auditory sen- sor, capable of detecting acoustic particle motion with mechanical sensitivity that surpasses all known eardrums. Inspired by this remarkable natural mechanism, we propose to engineer a transformative acoustic velocity sens- ing technology that directly addresses the physical limitations of existing pressure-based ear canal probes. In Aim 1, we will create a bioinspired mechanical sensing element that detects acoustic particle velocity, uniquely com- bining ultrahigh mechanical sensitivity—approaching the maximum physical efficiency—with ultra-low thermome- chanical noise, beyond the reach of conventional pressure sensing. In Aim 2, we will innovate an ultra-low-noise optomechanical velocity sensor by transducing the motion of the mechanical element using laser interferometry, renowned for its unmatched sensitivity. This new class of velocity sensor will then be integrated with a minia- ture pressure microphone to produce a compact, first-of-its-kind velocity/pressure dual-sensing probe. In Aim 3, we will rigorously validate the dual-sensing probe performance through comprehensive ear canal acoustic measurements in individuals with normal and impaired hearing. By simultaneously measuring both acoustic particle velocity and pressure, the proposed dual-sensing probe will set a new benchmark for accuracy, sensitivity, speed, and clinical utility in ear canal acoustic measurements. This novel tool has the potential to transform auditory research, enhance hearing diagnostics, and improve the evaluation of auditory treatments—marking a significant advancement in the field.

Up to $387K
2031-04-30
health research

Free to search & build · $99 one-time to unlock the application pack · No subscription

Ventilated Rodent Caging to Support the University of Delaware's Life Sciences

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OD - NIH Office of the Director

The Life Sciences Research Facility (LSRF) at the University of Delaware is the institution’s centralized laboratory animal facility, supporting over 30 Principal Investigators and multiple NIH-funded programs. Since its opening in 2013, the facility has experienced sustained growth in animal housing demand, with a 70% increase over the past five years. Despite recent expansions, much of the LSRF still relies on outdated open-top rodent caging systems, which pose significant risks to biosecurity and personnel safety. This proposal seeks funding to modernize the LSRF by replacing legacy open- top rodent cages with individually ventilated caging (IVC) systems and installing filtered animal handling transfer cabinets. These upgrades will significantly reduce airborne pathogen transmission, minimize allergen exposure for personnel, and improve overall animal welfare. The proposed improvements will also enhance operational efficiency and align with best practices outlined in the Guide for the Care and Use of Laboratory Animals. By leveraging existing infrastructure, this renovation avoids the cost and complexity of constructing a new facility while meeting the growing needs of the University’s biomedical research community. The modernization will support emerging transgenic rodent research, health sciences, and engineering projects, ensuring continuity of research and positioning the LSRF as a state-of-the-art, high-performance vivarium. This strategic investment will strengthen the University’s research infrastructure, enhance the rigor of its ongoing NIH-funded research, improve safety and compliance, and enhance its competitiveness for future funding.

Up to $350K
2027-08-14
health research

Free to search & build · $99 one-time to unlock the application pack · No subscription

Virtual Care Consortium of Research (VC CORE) - COR-20-199

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NIH

Background: Virtual care, now a mainstay in the Veterans Health Administration (VA), facilitates access to critical clinical and social services for millions of Veterans. The term “virtual care” encompasses a suite of technologies that include VA’s video visit platform, the MyHealtheVet patient portal, mobile apps, remote monitoring devices and tools to collect patient-generated health data. Collectively, these technologies have potential to enhance Veteran care and improve the workflow and workload of VA clinical teams. Yet for many clinical scenarios, evidence regarding the effectiveness, quality, safety and cost implications of virtual care is still in early stages. Understanding factors associated with access to and engagement with virtual care are important for this to be an effective, equitable mode of care delivery within VA. Significance: The Virtual Care Consortium of Research (VC CORE) was established in 2020 to address pressing needs for virtual care evidence within VA. In close partnership with VA’s Office of Connected Care and Digital Health Office, the VC CORE has grown to a diverse network of >380 investigators, clinicians and staff. The VC CORE addresses VA Health Systems Research priority areas for 2026 and is responsive to national legislation pertaining to VA virtual care, including the Cleland-Dole Act of 2022. Foundational VC CORE accomplishments include an extensive portfolio review of VA virtual care projects, an online research and implementation resource library, establishment of a cyberseminar series and monthly newsletter, a State- of-the-Art conference to identify virtual care research priorities and facilitation of > 50 OCC-funded quality improvement and evaluation projects. Innovation and Impact: The VA has been an early innovator in virtual care, with routine use of video visit capabilities, remote patient monitoring platforms, a web-based patient portal, and other technologies for several decades. VC CORE innovations that support virtual care implementation and evaluation include development of a comprehensive database of VA virtual care research, creation of a novel program to support operations-funded virtual care evaluations, and contributions to two Congressionally-mandated reports. Specific Aims: In the proposed VC CORE renewal, we will pursue four Impact Goals (IGs): In IG1, we will strengthen the VC CORE network through targeted growth, enhanced collaboration and partnerships. In IG2, we will foster rapid, rigorous and innovative research and QI activities focused on virtual care. In IG3, we will support VA in its efforts to implement and disseminate virtual care across the enterprise. In IG4, we will generate and synthesize evidence to advance VA practice and policy. Methodology: In IG1, we will grow our network and build more connections between network members and clinical operations partners, support requests for subject matter expertise from Office of Research and Development (ORD) and other VA leaders and support the next generation of investigators through early- career development opportunities. In IG2, we will foster virtual care research by updating VC CORE’s portfolio review, working with existing ORD entities to develop and disseminate data measures relevant to virtual care research and establishing a Veteran Engagement Panel. In IG3, we will identify innovative programs through communication with the VC CORE network and support the dissemination of implementation resources using a SharePoint repository. In IG4, we will track requests from operational and ORD partners (e.g., literature or reporting requests), continue to orchestrate requests for applications for projects funded by OCC and other partners, and synthesize evidence about the value and impact of project findings. Next Steps/Implementation: The VC CORE has emerged as a critical supportive structure that facilitates high- impact virtual care research and evaluation activities within VA. Renewal of the VC CORE will help sustain these achievements and further enhance the impact of virtual care research to support VA as a learning health system.

2030-09-30
health research

Free to search & build · $99 one-time to unlock the application pack · No subscription

Vitamin A metabolism in hair cycle regulation

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NIAMS - National Institute of Arthritis and Musculoskeletal and Skin Diseases

7. Project Summary/Abstract: Studying the hair cycle provides an in vivo model for studying stem cell regulation that can be easily accessed, manipulated, and visualized. Loss of hair follicle stem cells (HFSCs) leads to hair aging and hair loss, while aberrant regulation of these HFSCs contributes to cutaneous squamous cell carcinoma (cSCC). cSCC is costly to treat and leads to metastasis and death. Hair loss leads to significant stigmatization, low self-esteem, anxiety, and reduced quality of life, which are worse in women. HFSC quiescence is essential for their self- renewal. HFSC quiescence is greater in females than males. Estrogen regulates HFSC quiescence in a sex dependent manner. However, we do not understand the complete mechanisms for these sex differences. Retinoids are a family of vitamin A derived compounds, which includes vitamin A (retinol) and its active metabolite retinoic acid (RA). RA regulated HFSC quiescence dose-dependently in vitro. Importantly, our data shows that dietary vitamin A and loss of RA synthesis also regulates HFSCs in vivo. Retinoids prevented or worsened the development of cSCC and hair loss in humans and mouse models, but few of these studies examined an effect of sex. We and others found that sex hormones regulated expression of RA synthesis and signaling genes and RA responses in a sex dependent manner. RA, in turn, affects sex hormone synthesis and signaling, suggesting the existence of an interaction between sex hormones and RA signaling. The objectives in this application are to identify how sex hormones and exogenous retinoids alter endogenous RA synthesis within the HFSC niche to maintain HFSC quiescence and determine how this affects HFSCs and hair loss during aging. Our central hypothesis is that sex hormones regulate RA synthesis to maintain HFSC quiescence to prevent hair aging. The specific aims are to: 1) Identify the vitamin A metabolism and signaling cross talk with sex hormone signaling to maintain quiescent HFSCs in a sex dependent manner; and 2) Identify the role of Sdr16c5 and Sdr16c6 in hair aging in a sex dependent manner. The approach is to treat whole body Sdr16c5-/-/Sdr16c6-/- double knockout mice with sex hormone receptor agonists and antagonists and examine HFSC quiescence. We will also rescue these transgenic mice with synthetic retinoids. In addition, we will analyze hair cycling as these mice age. Understanding how sex hormones and vitamin A metabolism interact in a sex-dependent manner to regulate hair follicle stem cells in vivo is significant because it will lead to the development of alternative sex specific retinoid treatments with more specificity and fewer side effects than current retinoid therapies. Once we identify which vitamin A metabolism enzymes and RARs are involved, we can target therapies to regulate endogenous RA synthesis and/or specific RARs. The proposed research is innovative because it will identify how endogenous RA synthesis is regulated in a sex dependent manner using state of the art retinoid analysis technology.

Up to $475K
2029-07-31
health research

Free to search & build · $99 one-time to unlock the application pack · No subscription

Waisman Center Intellectual and Developmental Disabilities Research Center

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NICHD - Eunice Kennedy Shriver National Institute of Child Health and Human Development

We seek continued support of the Waisman Center Intellectual and Developmental Disabilities Research Center, a comprehensive interdisciplinary program focused on IDD spanning the biological, behavioral, and biomedical sciences. The Waisman IDDRC brings together 61 PIs from 24 academic departments from the UW-Madison’s Schools of Medicine and Public Health, Veterinary Medicine, Agriculture and Life Sciences, Letters and Science, Education, Engineering, Social Work, and Human Ecology. This application requests support for an Administrative Core (Core A), providing scientific leadership, program and faculty development, facilitation of interdisciplinary collaboration, oversight of training programs, biostatistical and bioinformatics expertise; and dissemination of knowledges and best practices; and three innovative scientific core services: Clinical Translational (Core B), providing services, resources, and training in the recruitment of human participants, clinical research coordination/navigation, clinical assessment, behavioral methods development, and production of clinical grade biotherapeutics for use in clinical trials; Brain Imaging (Core C), providing access to state-of- the-art neuroimaging instrumentation for both human and animal studies (3T MRI, PET, and microPET scanners for human, non-human primate, and rodent scanning, an fNIRS, and an EEG recording system), as well as expertise and tools for image acquisition and analysis; and IDD Models (Core D), providing resources, expertise, and technical services in cellular and molecular neuroscience, the generation and manipulation of human pluripotent stem cell (hPSC) lines from humans with IDD conditions, as well as the generation and behavioral phenotyping of mutant or genetically engineered strains of mice and rats as models of IDD conditions. In addition, we request support for a Research Project that addresses a fundamental question on the emergence of ADHD symptoms in children with ASD, using a multidisciplinary approach that combines the power of neurobehavioral, brain imaging, statistical genomics, and machine learning analyses. We propose to provide core support to 59 research projects headed by 42 PIs addressing three broad themes relevant to IDD: 1) neurodevelopment and mechanisms, 2) disorders of the nervous system, and 3) assessments and interventions. Collectively the core services and the research project of the Waisman Center IDDRC will stimulate new interdisciplinary IDD research and enhance existing IDD investigations, with a sharp focus on discovery, prevention, and treatment for IDD conditions, and improvement of the quality of life of individuals with IDD and their families.

Up to $1.2M
2027-05-31
health research

Free to search & build · $99 one-time to unlock the application pack · No subscription

WASHINGTON CROSSING FKA WASHINGTON ARTS COLLECTIVE (SITE 2)

open

WAC, L.P.

NEW CONSTRUCTION

Up to $2.1M
Rolling
artsinfrastructure

Free to search & build · $99 one-time to unlock the application pack · No subscription

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