Showing 111,421 - 111,440 results of 113,423 for search '(( 50 ((we decrease) OR (a decrease)) ) OR ( 5 ((we decrease) OR (a decrease)) ))', query time: 1.93s Refine Results
  1. 111421

    Table_2_Changes in Metabolism and Proteostasis Drive Aging Phenotype in Aplysia californica Sensory Neurons.xlsx by Nicholas S. Kron (9377615)

    Published 2020
    “…The marine mollusk Aplysia californica (Aplysia) is a premier model for the nervous system uniquely suited to investigation of neuronal aging due to uniquely identifiable neurons and molecular techniques available in this model. …”
  2. 111422

    Data_Sheet_4_Changes in Metabolism and Proteostasis Drive Aging Phenotype in Aplysia californica Sensory Neurons.XLSX by Nicholas S. Kron (9377615)

    Published 2020
    “…The marine mollusk Aplysia californica (Aplysia) is a premier model for the nervous system uniquely suited to investigation of neuronal aging due to uniquely identifiable neurons and molecular techniques available in this model. …”
  3. 111423

    Data_Sheet_6_Changes in Metabolism and Proteostasis Drive Aging Phenotype in Aplysia californica Sensory Neurons.PDF by Nicholas S. Kron (9377615)

    Published 2020
    “…The marine mollusk Aplysia californica (Aplysia) is a premier model for the nervous system uniquely suited to investigation of neuronal aging due to uniquely identifiable neurons and molecular techniques available in this model. …”
  4. 111424

    Table_4_Changes in Metabolism and Proteostasis Drive Aging Phenotype in Aplysia californica Sensory Neurons.xlsx by Nicholas S. Kron (9377615)

    Published 2020
    “…The marine mollusk Aplysia californica (Aplysia) is a premier model for the nervous system uniquely suited to investigation of neuronal aging due to uniquely identifiable neurons and molecular techniques available in this model. …”
  5. 111425

    Table_7_Changes in Metabolism and Proteostasis Drive Aging Phenotype in Aplysia californica Sensory Neurons.xlsx by Nicholas S. Kron (9377615)

    Published 2020
    “…The marine mollusk Aplysia californica (Aplysia) is a premier model for the nervous system uniquely suited to investigation of neuronal aging due to uniquely identifiable neurons and molecular techniques available in this model. …”
  6. 111426

    Data_Sheet_1_Changes in Metabolism and Proteostasis Drive Aging Phenotype in Aplysia californica Sensory Neurons.PDF by Nicholas S. Kron (9377615)

    Published 2020
    “…The marine mollusk Aplysia californica (Aplysia) is a premier model for the nervous system uniquely suited to investigation of neuronal aging due to uniquely identifiable neurons and molecular techniques available in this model. …”
  7. 111427

    Data_Sheet_3_Changes in Metabolism and Proteostasis Drive Aging Phenotype in Aplysia californica Sensory Neurons.XLSX by Nicholas S. Kron (9377615)

    Published 2020
    “…The marine mollusk Aplysia californica (Aplysia) is a premier model for the nervous system uniquely suited to investigation of neuronal aging due to uniquely identifiable neurons and molecular techniques available in this model. …”
  8. 111428

    Influence of sampling accuracy on augmented reality for laparoscopic image-guided surgery by Andrea Teatini (9540508)

    Published 2020
    “…</p> <p> The study was conducted in three different scenarios in which the accuracy of sampling targets for PBR decreases: using an assessment phantom with machined divot holes, a patient-specific liver phantom with markers visible in computed tomography (CT) scans and <i>in vivo</i>, relying on the surgeon’s anatomical understanding to perform annotations. …”
  9. 111429
  10. 111430
  11. 111431
  12. 111432
  13. 111433
  14. 111434
  15. 111435
  16. 111436
  17. 111437
  18. 111438

    TAK-242 reverses the visceral hypersensitivity phenotype in DIO mice. by Mónica Tramullas (2736064)

    Published 2016
    “…<p>Administration of the selective TLR4 antagonist TAK-242 (i.v. 10mg/kg) significantly reduces visceral pain responses in DIO (A) but not in lean mice (B). …”
  19. 111439
  20. 111440

    RTSS-Voice: Application to everyday clinical care (Wolfberg et al., 2023) by Jeremy Wolfberg (17623466)

    Published 2023
    “…There were two frequent targets: (a) increased volition and (b) decreased strained voice quality. …”