• Mashup Score: 0

    Henry Ford Health, 1st Annual Pituitary Symposium, 10/14/2023 7:00:00 AM – 10/14/2023 3:00:00 PM, At the end of this activity, the learner should be able to recommend the appropriate diagnostic modalities for patients with pituitary disorders with subtle clinical findings to ensure early diagnosis and intervention by pituitary specialists, describe the appropriate treatment algorithms for patients with various types of pituitary tumors, select the appropriate medical/hormonal treatment options for pituitary disorders before and after surgery as well as in lieu of surgical intervention, and recognize the importance of accurate performance of critical diagnostic testing for post-operative hormonal and electrolyte dysfunction.

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    • Join us for our first-ever pituitary #symposium on Oct. 14! Top experts in the field will discuss ongoing clinical trials, surgical outcomes, complications & risk management for #pituitary & skull base #tumors and more. AMA credits available. Register now: https://t.co/qNy6wXkpVo https://t.co/kOadlsr61v

  • Mashup Score: 1

    A microdevice has been designed that can be implanted into tumors to conduct dozens of experiments at once to study the effects of new treatments on some of the hardest-to-treat brain cancers.

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    • WOW: #Microdevices implanted into #tumors offer new way to treat #braincancer https://t.co/z877OzCnsq via @Harvard Intratumoral drug-releasing microdevices allow in situ high-throughput pharmaco #phenotyping in patients with #gliomas https://t.co/nRD1Ik0KM6 @ScienceTM #glioma… https://t.co/0XvN7kwCxv https://t.co/Pparl9R3cX

  • Mashup Score: 5

    The rapid advancement in ‘omics’ technologies and integration of data science in preclinical, translational and clinical research have enabled the characterisation of tumour landscapes at a spatial, temporal, local and systemic level, with unprecedented resolution. The combination of big data, sophisticated computational approaches, including artificial intelligence, and state-of-the-art…

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    • RT @NatureConf: Deadline: Aug 28 Submit at: https://t.co/z25FZIS1gj Topics: #MappingTumours #Tumors #microenvironment #SystemicEnvironment…

  • Mashup Score: 0

    Background The axons of ganglion cells in the nasal retina decussate at the optic chiasm. It is unclear why tumours cause more injury to crossing nasal fibres, thereby giving rise to temporal visual field loss in each eye. To address this issue, the course of fibres through the optic chiasm was examined following injection of a different fluorescent tracer into each eye of a monkey. Methods…

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    • Why do #sellar #tumors tend to lead to temporal visual field loss? A study by #USCF #ophthalmology proposes that compressed decussating axons within the #optic #chiasm by these tumors may provide an explanation in primates. Read more: https://t.co/MJcvAnXv1L #neurology #ophtho https://t.co/iBJBAIxWM7