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Biology subjects

Bortz, E.

Publications and source records attributed to Bortz, E..

3 recordsLinked to original sources

Subthreshold membrane depolarization powerfully engages intracellular calcium dynamics in the brain

Membrane voltage (Vm) regulates spike timing and intracellular signaling. While Vm is extensively modulated by behavior, it is unclear how subthreshold Vm dynamics engage intracellular signaling in the awake mammalian brain. We developed a bicistronic viral vector to express genetically encoded and color compatible voltage and calcium (Ca2+) indicators in the same neuron, and simultaneously recorded cellular Vm and Ca2+ dynamics in awake mice. We report that prolonged subthreshold Vm depolarization is closely accompanied by prominent large amplitude Ca2+ elevation, whereas isolated spikes are coupled with weak Ca2+ rise. Additionally, individual spikes differentially engage intracellular Ca2+ dynamics depending on post-spiking Vm depolarization, consistent with a prominent role of slow Vm depolarization in regulating cellular signaling. While brief intracranial electrical stimulation consistently leads to Vm depolarization and Ca2+ increase, longer stimulation disrupts Vm and Ca2+ coupling, highlighting a tightly regulated cellular mechanism that relays slow Vm depolarization to intracellular signaling.

neuroscience↗

Ultrasound pulse repetition frequency preferentially activates different neuron populations independent of cell type

Transcranial ultrasound activates mechanosensitive cellular signaling and modulates neural dynamics. Given that intrinsic neuronal activity is limited to a couple hundred hertz and often exhibits frequency preference, we examined whether pulsing ultrasound at physiologic pulse repetition frequencies (PRFs) could selectively influence neuronal activity in the mammalian brain. We performed calcium imaging of individual motor cortex neurons, while delivering 0.35 MHz ultrasound at PRFs of 10, 40, and 140 Hz in awake mice. We found that most neurons were preferentially activated by only one of the three PRFs, highlighting unique cellular effects of physiologic PRFs. Further, ultrasound evoked responses were similar between excitatory neurons and parvalbumin positive interneurons regardless of PRFs, indicating that individual cell sensitivity dominates ultrasound-evoked effects, consistent with the heterogeneous mechanosensitive channel expression we found across single neurons in mice and humans. These results highlight the feasibility of tuning ultrasound neuromodulation effects through varying PRFs.

neuroscience↗

Human influenza A virus H1N1 1 in marine mammals in California, 2019

From 2011-2018, we conducted surveillance in marine mammals along the California coast for influenza A virus (IAV), frequently detecting anti-influenza antibodies and intermittently detecting IAV. In spring 2019, this pattern changed. Despite no change in surveillance intensity, we detected IAV RNA in 10 samples in March and April, mostly in nasal and rectal swabs from northern elephant seals (Mirounga angustirostris). Although virus isolation was unsuccessful, IAV sequenced from one northern elephant seal nasal swab showed close genetic identity with pandemic H1N1 IAV subclade 6B.1A.1 that was concurrently circulating in humans in the 2018/19 influenza season. This represents the first report of human A(H1N1)pdm09 IAV in northern elephant seals since 2010, suggesting IAV continues to spill over from humans to pinnipeds.

microbiology↗