16 results match your criteria: "University of California Berkeley and San Francisco[Affiliation]"

Purpose: Parent engagement and involvement is essential for the successful implementation of augmentative and alternative communication (AAC) systems in the home. The purpose of the current study is to gain a deeper understanding of caregivers' experiences with AAC systems and their collaboration with school professionals during the implementation of AAC, which may have led to subsequent abandonment.

Method: This review intentionally included qualitative studies that employed semistructured interviews, focus groups, and ethnographic investigations that documented the experiences and perceptions of families implementing AAC at home.

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Article Synopsis
  • QSM is a promising biomarker for diseases due to its ability to measure tissue susceptibility linked to iron, myelin, and hemorrhage from MRI phase signals, but it faces challenges like weak tissue signals and complicated data processing.
  • The study aimed to analyze how different background field removal and dipole inversion algorithms impact noise, image uniformity, and structural contrast in quantifying cerebral microbleeds (CMBs) using both 3T and 7T MRI scanners.
  • Results showed that 7T MRI produced lower noise and better contrast for white matter and CMBs compared to 3T, with specific algorithms (QSIP and VSHARP + iLSQR) performing best in aligning with ground truth QSM references, offering
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Targeted Diversification in the Genome with CRISPR-Guided DNA Polymerase I.

ACS Synth Biol

July 2020

Department of Bioengineering, University of California, Berkeley, California 94720, United States.

New technologies to target nucleotide diversification are promising enabling strategies to perform directed evolution for engineering applications and forward genetics for addressing biological questions. Recently, we reported EvolvR-a system that employs CRISPR-guided Cas9 nickases fused to nick-translating, error-prone DNA polymerases to diversify targeted genomic loci-in . As CRISPR-Cas9 has shown activity across diverse cell types, EvolvR has the potential to be ported into other organisms, including eukaryotes, if nick-translating polymerases can be active across species.

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Background: Chlamydia trachomatis is the most common bacterial sexually transmitted infection worldwide with some of the highest prevalence rates among Pacific Island Countries where syndromic management is practiced. However, little is known about the true prevalence and risk indicators for infection among neglected populations in these countries that suffer from health disparities.

Methodology/principal Findings: Consecutive sampling was used to enroll sexually active females, aged 18-40 years, attending 12 Fijian Ministry of Health and Medical Services Health Centers and outreach locations from February to December, 2018.

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The capacity to diversify genetic codes advances our ability to understand and engineer biological systems. A method for continuously diversifying user-defined regions of a genome would enable forward genetic approaches in systems that are not amenable to efficient homology-directed oligonucleotide integration. It would also facilitate the rapid evolution of biotechnologically useful phenotypes through accelerated and parallelized rounds of mutagenesis and selection, as well as cell-lineage tracking through barcode mutagenesis.

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Human Superior Temporal Gyrus Organization of Spectrotemporal Modulation Tuning Derived from Speech Stimuli.

J Neurosci

February 2016

University of California Berkeley and San Francisco Joint Graduate Group in Bioengineering, Center for Integrative Neuroscience, Department of Neurological Surgery, School of Medicine, University of California, San Francisco, San Francisco, California 94158

Unlabelled: The human superior temporal gyrus (STG) is critical for speech perception, yet the organization of spectrotemporal processing of speech within the STG is not well understood. Here, to characterize the spatial organization of spectrotemporal processing of speech across human STG, we use high-density cortical surface field potential recordings while participants listened to natural continuous speech. While synthetic broad-band stimuli did not yield sustained activation of the STG, spectrotemporal receptive fields could be reconstructed from vigorous responses to speech stimuli.

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A clinical treatment delivery platform has been developed and is being evaluated in a clinical pilot study for providing 3D controlled hyperthermia with catheter-based ultrasound applicators in conjunction with high dose rate (HDR) brachytherapy. Catheter-based ultrasound applicators are capable of 3D spatial control of heating in both angle and length of the devices, with enhanced radial penetration of heating compared to other hyperthermia technologies. Interstitial and endocavity ultrasound devices have been developed specifically for applying hyperthermia within HDR brachytherapy implants during radiation therapy in the treatment of cervix and prostate.

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Laminar diversity of dynamic sound processing in cat primary auditory cortex.

J Neurophysiol

January 2010

University of California-Berkeley and San Francisco Joint Graduate Group in Bioengineering, University of California-San Francisco, 513 Parnassus Avenue, San Francisco, CA 94143-0732, USA.

For primary auditory cortex (AI) laminae, there is little evidence of functional specificity despite clearly expressed cellular and connectional differences. Natural sounds are dominated by dynamic temporal and spectral modulations and we used these properties to evaluate local functional differences or constancies across laminae. To examine the layer-specific processing of acoustic modulation information, we simultaneously recorded from multiple AI laminae in the anesthetized cat.

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Cardiovascular disease is a major public health problem in the United States. In many survivors, extensive tissue damage from myocardial infarction leads to the development of congestive heart failure. Unfortunately, thus far, heart transplantation has remained the only viable treatment for end-stage congestive heart failure.

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Pleiotrophin (PTN) is a heparin-binding growth/differentiation inducing cytokine that shares 50% amino acid sequence identity and striking domain homology with Midkine (MK), the only other member of the Ptn/Mk developmental gene family. The Ptn gene is expressed in sites of early vascular development in embryos and in healing wounds and its constitutive expression in many human tumors is associated with an angiogenic phenotype, suggesting that PTN has an important role in angiogenesis during development and in wound repair and advanced malignancies. To directly test whether PTN is angiogenic in vivo, we injected a plasmid to express PTN into ischemic myocardium in rats.

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Coronary heart disease is currently the leading killer in the western world. Therapeutic angiogenic agents are currently being examined for treatment of this disease. We have recently demonstrated the effective use of Pleiotrophin (PTN) as a therapeutic agent for treatment of ischemic myocardium.

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Objectives: In this study, we determined whether fibrin glue improves cell transplant retention and survival, reduces infarct expansion, and induces neovasculature formation.

Background: Current efforts in restoring the myocardium after myocardial infarction (MI) include the delivery of viable cells to replace necrotic cardiomyocytes. Cellular transplantation techniques are, however, limited by transplanted cell retention and survival within the ischemic tissue.

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Current efforts in cardiac tissue engineering center around the use of scaffolds that deliver cells to the epicardial surface. In this study, we examined the effects of fibrin glue as an injectable scaffold and wall support in ischemic myocardium. The left coronary artery of rats was occluded for 17 min, followed by reperfusion.

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We have developed a high-resolution, compact semiconductor camera for nuclear medicine applications. The modular unit has been used to obtain tomographic images of phantoms and mice. The system consists of a 64 x 64 CdZnTe detector array and a parallel-hole tungsten collimator mounted inside a 17 cm x 5.

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